Esempio n. 1
0
    public void RadonDeg()
    {
      var rn =ChemicalFactory.Instance.GetChemical(ChemicalNames.Radon);
      var cl =ChemicalFactory.Instance.GetChemical(ChemicalNames.Cl);

      DateTime Start = new DateTime(2005,1,1);
      Lake L = new Lake("test", 10);
      L.SetState("Initial", Start, new WaterPacket(0));
      SinkSourceBoundary sb = new SinkSourceBoundary(10.0 / 86400);
      ((WaterPacket)sb.WaterSample).AddChemical(rn, 2.3);
      ((WaterPacket)sb.WaterSample).AddChemical(cl, 2.3);
      L.Sources.Add(sb);
      L.Output.LogAllChemicals = true;
      L.Output.LogComposition = true;

      Model M = new Model();
      M._waterBodies.Add(L);
      M.Save("temp.xml");

      L.Update(Start.AddDays(1));

      Assert.AreEqual(2.3, L.Output.ChemicalsToLog[cl].GetSiValue(L.CurrentTime),1e-5);
      Assert.AreNotEqual(2.3, L.Output.ChemicalsToLog[rn].GetSiValue(L.CurrentTime), 1e-5);

      var M2 = ModelFactory.GetModel("temp.xml");
      Lake L2 = M2._waterBodies.First() as Lake;

      L2.Update(Start.AddDays(1));

      Assert.AreEqual(2.3, L2.Output.ChemicalsToLog[cl].GetSiValue(L2.CurrentTime), 1e-5);
      Assert.AreNotEqual(2.3, L2.Output.ChemicalsToLog[rn].GetSiValue(L2.CurrentTime), 1e-5);
    
    
    }
 public void MyTestInitialize()
 {
   hydraulicConductivity = 0.0001; //m/s
   area = 2.5; //m2
   distance = 34; //m
   head = 22; // m
   s = new Lake("s",100);
  target = new GroundWaterBoundary(s, hydraulicConductivity, distance, head, XYPolygon.GetSquare(2.5));
  target.WaterSample = new WaterPacket(1, 150);
 }
    public void ModelSaveTest()
    {
      Model M = new Model();
      M._waterBodies.Add(new Stream("S", 100, 1, 1));

      Model M2 = (Model)ReadWrite(M);

      Assert.AreEqual(M._waterBodies.Count, M2._waterBodies.Count);

      IWaterBody  L = new Lake("L", 1);
      
      

    }
Esempio n. 4
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 public static Lake GetLake(string Name)
 {
   ShapeReader psp = new ShapeReader(@"soervp1.shp");
   foreach (var l in psp.GeoData)
   {
     Lake L = new Lake((string)l.Data[0], (XYPolygon)l.Geometry);
     
     if (L.Name.ToLower().Equals(Name.ToLower()))
     {
       psp.Dispose();
       return L;
     }
   }
   psp.Dispose();
   return null;
 }
Esempio n. 5
0
        public static Lake GetLake(string Name)
        {
            ShapeReader psp = new ShapeReader(@"soervp1.shp");

            foreach (var l in psp.GeoData)
            {
                Lake L = new Lake((string)l.Data[0], (XYPolygon)l.Geometry);

                if (L.Name.ToLower().Equals(Name.ToLower()))
                {
                    psp.Dispose();
                    return(L);
                }
            }
            psp.Dispose();
            return(null);
        }
Esempio n. 6
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 public SimpleLake(Lake L)
   : base(L)
 {
   _l = L;
 }
Esempio n. 7
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    public void RoutingOfGroundwaterTest()
    {

      Lake S = new Lake("L",100);

      S.SetState("Initial", DateTime.Now, new WaterPacket(100));

      Lake storage = new Lake("Storage",10000);
      S.AddDownStreamWaterBody(storage);

      TimeSpan ts = new TimeSpan(1,0,0);

      int Id = 2;
      IWaterPacket expected = new WaterPacket(Id, 200);
      IWaterPacket actual;

      S.WaterLevel = 8;
      GroundWaterBoundary b = new GroundWaterBoundary(S, 0.001, 100, 10, XYPolygon.GetSquare(2.5));
      b.WaterSample = expected;
      S.GroundwaterBoundaries.Add(b);
      S.Update(S.CurrentTime.Add(ts));

      actual = storage.CurrentStoredWater;
      double ExpectedVolume = b.GetSourceWater(DateTime.Now, ts).Volume;

      Assert.AreEqual(expected.Composition.Keys.First(), actual.Composition.Keys.First());
      Assert.AreEqual(ExpectedVolume, actual.Volume, 0.000001);

      S.Update(S.CurrentTime.Add(new TimeSpan(2,0,0)));

      actual = storage.CurrentStoredWater;
      Assert.AreEqual(expected.Composition.Keys.First(), actual.Composition.Keys.First());
      Assert.AreEqual(0.54, actual.Volume, 0.000001);

      S.AddWaterPacket(DateTime.Now, DateTime.Now, expected);
      S.Update(S.CurrentTime.Add(new TimeSpan(2, 0, 0)));
      actual = storage.CurrentStoredWater;

      Assert.AreEqual(200.9, actual.Volume, 0.000001);


    }
Esempio n. 8
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    public void RoutingOfRecievedWaterTest()
    {
      Lake S = new Lake("L",100);

      DateTime Start = new DateTime(2000, 1, 1);

      S.SetState("Initial", Start, new WaterPacket(100));
      Lake storage = new Lake("storage", 10000);
      S.AddDownStreamWaterBody(storage);

      TimeSpan ts = new TimeSpan(1,0,0);

      WaterPacket WaterProvider = new WaterPacket(2, 200);
      
      IWaterPacket actual;
      S.AddWaterPacket(DateTime.Now, DateTime.Now, WaterProvider.DeepClone(200));

      S.Update(S.CurrentTime.Add(ts));

      actual = S.CurrentStoredWater;
      Assert.AreEqual(100, actual.Volume);

      Assert.AreEqual(200, storage.CurrentStoredWater.Volume);
      Assert.AreEqual(200.0/300.0, storage.CurrentStoredWater.Composition[2],0.000001);

      //In the next timestep there will be no water to route
      S.Update(S.CurrentTime.Add(ts));
      Assert.AreEqual(200, storage.CurrentStoredWater.Volume);
      Assert.AreEqual(200.0 / 300.0, storage.CurrentStoredWater.Composition[2], 0.000001);

      Assert.AreEqual(1, S.Output.GetStorageTime(Start, Start.AddHours(2)).TotalHours,0.001);

    }
Esempio n. 9
0
 public LakeViewModel(Lake L)
   : base(L)
 {
   _lake = L;
 }
Esempio n. 10
0
    public void KrabbenhoftExample()
    {
      Lake L = new Lake("Sparkling Lake", XYPolygon.GetSquare(0.81e6));
      L.Depth = 8.84e6 / L.Area;
      L.Output.LogAllChemicals = true;

      IsotopeWater LakeWater = new IsotopeWater(1);
      LakeWater.SetIsotopeRatio(5.75);
      TimestampSeries EvapoConcentrations = new TimestampSeries();
      EvapoConcentrations.AddSiValue(new DateTime(1985, 4, 1), 3.95);
      EvapoConcentrations.AddSiValue(new DateTime(1985, 5, 1), 13.9);
      EvapoConcentrations.AddSiValue(new DateTime(1985, 6, 1), 25.24);
      EvapoConcentrations.AddSiValue(new DateTime(1985, 7, 1), 23.97);
      EvapoConcentrations.AddSiValue(new DateTime(1985, 8, 1), 17.13);
      EvapoConcentrations.AddSiValue(new DateTime(1985, 9, 1), 10.40);
      EvapoConcentrations.AddSiValue(new DateTime(1985, 10, 1), 6.12);
      EvapoConcentrations.AddSiValue(new DateTime(1985, 10, 1), 33.24);
      EvapoConcentrations.AllowExtrapolation = true;
      EvapoConcentrations.ExtrapolationMethod = ExtrapolationMethods.RecycleYear;
      LakeWater.EvaporationConcentration = EvapoConcentrations;

      TimestampSeries PrecipConcentrations = new TimestampSeries();
      PrecipConcentrations.AddSiValue(new DateTime(1985, 1, 1), 22.8);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 2, 1), 22.8);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 3, 1), 22.8);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 4, 1), 14.8);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 5, 1), 10.7);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 6, 1), 6.3);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 7, 1), 5.1);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 8, 1), 8.4);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 9, 1), 11.1);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 10, 1), 13.8);
      PrecipConcentrations.AddSiValue(new DateTime(1985, 10, 1), 21.9);
      PrecipConcentrations.AllowExtrapolation = true;
      PrecipConcentrations.ExtrapolationMethod = ExtrapolationMethods.RecycleYear;

      TimespanSeries Precipitation = new TimespanSeries();
      Precipitation.Unit = new HydroNumerics.Core.Unit("cm/month", 1.0 / 100.0 / (86400.0 * 30.0), 0);
      Precipitation.AddValue(new DateTime(1985, 1, 1), new DateTime(1985, 3, 1), 0);
      Precipitation.AddValue(new DateTime(1985, 3, 1), new DateTime(1985, 3, 31), 12.5);
      Precipitation.AddValue(new DateTime(1985, 4, 1), new DateTime(1985, 4, 30), 7.1);
      Precipitation.AddValue(new DateTime(1985, 5, 1), new DateTime(1985, 5, 31), 7.6);
      Precipitation.AddValue(new DateTime(1985, 6, 1), new DateTime(1985, 6, 30), 8.8);
      Precipitation.AddValue(new DateTime(1985, 7, 1), new DateTime(1985, 7, 31), 8.6);
      Precipitation.AddValue(new DateTime(1985, 8, 1), new DateTime(1985, 8, 31), 12.7);
      Precipitation.AddValue(new DateTime(1985, 9, 1), new DateTime(1985, 9, 30), 11);
      Precipitation.AddValue(new DateTime(1985, 10, 1), new DateTime(1985, 10, 31), 6.2);
      Precipitation.AddValue(new DateTime(1985, 11, 1), new DateTime(1985, 11, 30), 4.8);
      Precipitation.AddValue(new DateTime(1985, 11, 30), new DateTime(1985, 12, 31), 0);
      Precipitation.AllowExtrapolation = true;
      Precipitation.ExtrapolationMethod = ExtrapolationMethods.RecycleYear;

      Assert.AreEqual(79, 12*Precipitation.GetValue(new DateTime(1985,1,1), new DateTime(1985,12,31)),3);

      SourceBoundary Precip = new SourceBoundary(Precipitation);
      Precip.WaterSample = new IsotopeWater(1);
      Precip.AddChemicalConcentrationSeries(ChemicalFactory.Instance.GetChemical(ChemicalNames.IsotopeFraction), PrecipConcentrations);

      TimespanSeries Evaporation = new TimespanSeries();
      Evaporation.Unit = new HydroNumerics.Core.Unit("cm/month", 1.0 / 100.0 / (86400.0 * 30.0), 0);
      Evaporation.AddValue(new DateTime(1985, 1, 1), new DateTime(1985, 4, 1), 0);
      Evaporation.AddValue(new DateTime(1985, 4, 1), new DateTime(1985, 4, 30), 2.8);
      Evaporation.AddValue(new DateTime(1985, 5, 1), new DateTime(1985, 5, 31), 7.0);
      Evaporation.AddValue(new DateTime(1985, 6, 1), new DateTime(1985, 6, 30), 10.5);
      Evaporation.AddValue(new DateTime(1985, 7, 1), new DateTime(1985, 7, 31), 11.1);
      Evaporation.AddValue(new DateTime(1985, 8, 1), new DateTime(1985, 8, 31), 10.0);
      Evaporation.AddValue(new DateTime(1985, 9, 1), new DateTime(1985, 9, 30), 7.0);
      Evaporation.AddValue(new DateTime(1985, 10, 1), new DateTime(1985, 10, 31), 4.7);
      Evaporation.AddValue(new DateTime(1985, 11, 1), new DateTime(1985, 11, 30), 0.6);
      Evaporation.AddValue(new DateTime(1985, 11, 30), new DateTime(1985, 12, 31), 0);
      Evaporation.AllowExtrapolation = true;
      Evaporation.ExtrapolationMethod = ExtrapolationMethods.RecycleYear;
      EvaporationRateBoundary erb = new EvaporationRateBoundary(Evaporation);

      Assert.AreEqual(54, 12*Evaporation.GetValue(new DateTime(1985,1,1), new DateTime(1985,12,31)),3);

      
      GroundWaterBoundary grb = new GroundWaterBoundary(L, 1e-7, 1, 1, (XYPolygon) L.Geometry);
      grb.FlowType = GWType.Flow;
      grb.WaterFlow = new TimespanSeries();
      grb.WaterFlow.AddSiValue(DateTime.MinValue,DateTime.MaxValue, Evaporation.Unit.ToSiUnit(29/12) * L.Area);
      IsotopeWater gwsp25 = new IsotopeWater(1);
      gwsp25.SetIsotopeRatio(11.5);
      grb.WaterSample = gwsp25;

      GroundWaterBoundary gout = new GroundWaterBoundary(L, 1e-7, 1, -1, (XYPolygon)L.Geometry);
      gout.FlowType = GWType.Flow;
      gout.WaterFlow = new TimespanSeries();
      gout.WaterFlow.AddSiValue(DateTime.MinValue, DateTime.MaxValue, - Evaporation.Unit.ToSiUnit(54/12) * L.Area);
      
      DateTime Start = new DateTime(1985,1,1);
      L.Precipitation.Add(Precip);
      Precip.ContactGeometry = L.Geometry;
      L.EvaporationBoundaries.Add(erb);
      erb.ContactGeometry = L.Geometry;
      L.GroundwaterBoundaries.Add(grb);
      L.GroundwaterBoundaries.Add(gout);

      Model M = new Model();
      M.WaterBodies.Add(L);
      M.SetState("Initial", Start, LakeWater);

      L.Depth *= 1.5;
      ((IsotopeWater)L.CurrentStoredWater).CurrentTime = Start;
      M.MoveInTime(new DateTime(1985, 12, 31), TimeSpan.FromDays(10));

      M.Save(@"..\..\..\TestData\Krabbenhoft.xml");
    }
Esempio n. 11
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        private Model CreateHydroNetModel()
        {
            
            DateTime startTime = new DateTime(2000, 1, 1);
          

            // -------------------- Polygons --------------------------------------
            HydroNumerics.Geometry.XYPolygon upperLakeGeometry = new HydroNumerics.Geometry.XYPolygon();
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(535.836, 2269.625));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(675.768, 2187.713));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(771.331, 2177.474));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(887.372, 2184.300));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(935.154, 2255.973));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(945.392, 2385.666));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(931.741, 2505.119));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(877.133, 2546.075));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(812.287, 2638.225));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(696.246, 2675.768));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(638.225, 2627.986));
            upperLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(573.379, 2587.031));

            HydroNumerics.Geometry.XYPolygon lowerLakeGeometry = new HydroNumerics.Geometry.XYPolygon();
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1935.154, 1150.171));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1901.024, 1058.020));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1877.133, 965.870));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1894.198, 897.611));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1938.567, 808.874));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(2023.891, 761.092));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(2116.041, 740.614));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(2232.082, 747.440));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(2327.645, 808.874));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(2389.078, 969.283));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(2372.014, 1109.215));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(2262.799, 1218.430));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(2105.802, 1235.495));
            lowerLakeGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1982.935, 1225.256));

            HydroNumerics.Geometry.XYPolygon upperStreamGeometry = new HydroNumerics.Geometry.XYPolygon();
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(863.481, 2177.474));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(914.676, 2129.693));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(965.870, 2071.672));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(976.109, 2027.304));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(976.109, 1989.761));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1006.826, 1959.044));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1051.195, 1918.089));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1095.563, 1877.133));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1126.280, 1808.874));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1187.713, 1781.570));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1228.669, 1730.375));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1262.799, 1665.529));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1283.276, 1597.270));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1317.406, 1535.836));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1341.297, 1484.642));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1389.078, 1457.338));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1423.208, 1440.273));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1477.816, 1402.730));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1511.945, 1358.362));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1539.249, 1327.645));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1566.553, 1354.949));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1535.836, 1406.143));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1508.532, 1457.338));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1440.273, 1522.184));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1368.601, 1580.205));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1327.645, 1631.399));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1307.167, 1696.246));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1269.625, 1767.918));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1221.843, 1819.113));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1191.126, 1843.003));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1136.519, 1894.198));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1088.737, 1935.154));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1061.433, 1976.109));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1030.717, 2040.956));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1013.652, 2105.802));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(972.696, 2177.474));
            upperStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(918.089, 2228.669));

            HydroNumerics.Geometry.XYPolygon lowerStreamGeometry = new HydroNumerics.Geometry.XYPolygon();
            lowerStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1904.437, 1081.911));
            lowerStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1921.502, 1153.584));
            lowerStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1771.331, 1255.973));
            lowerStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1573.379, 1354.949));
            lowerStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1542.662, 1324.232));
            lowerStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1597.270, 1273.038));
            lowerStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1709.898, 1215.017));
            lowerStreamGeometry.Points.Add(new HydroNumerics.Geometry.XYPoint(1839.590, 1143.345));

            // --- precipitation --------------------------------------------------

            const int numberOfTimesteps = 2190;
            double[] precipitation = new double[numberOfTimesteps] { 0.0000, 0.0000, 2.3000, 0.2000, 0.0000, 0.1000, 0.1000, 0.0000, 0.3000, 0.4000, 0.1000, 0.1000, 1.0000, 0.0000, 0.5000, 5.3000, 1.9000, 0.1000, 0.0000, 0.4000, 1.1000, 1.2000, 2.6000, 0.0000, 1.5000, 3.4000, 6.0000, 0.7000, 4.0000, 0.1000, 0.6000, 2.0000, 0.4000, 0.1000, 0.0000, 0.0000, 0.0000, 4.1000, 0.2000, 4.0000, 0.3000, 0.6000, 3.1000, 14.1000, 3.9000, 0.1000, 3.7000, 2.4000, 4.3000, 0.0000, 0.0000, 0.0000, 0.0000, 2.7000, 1.0000, 0.1000, 0.3000, 0.2000, 0.0000, 0.2000, 8.7000, 2.0000, 1.8000, 0.9000, 0.1000, 0.2000, 0.1000, 0.1000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.1000, 0.1000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.6000, 1.8000, 0.0000, 1.1000, 4.7000, 2.4000, 0.0000, 0.1000, 8.2000, 4.6000, 1.0000, 0.1000, 0.0000, 0.0000, 7.8000, 2.0000, 0.3000, 0.0000, 0.1000, 0.1000, 0.0000, 0.0000, 0.3000, 0.1000, 2.2000, 2.0000, 0.0000, 0.0000, 0.0000, 0.0000, 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1.3000, 10.0000, 0.6000, 0.7000, 0.0000, 0.0000, 0.0000, 0.9000, 0.0000, 0.0000, 0.1000, 2.6000, 6.3000, 4.7000, 0.7000, 0.1000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.2000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 2.3000, 2.0000, 0.0000, 3.1000, 0.9000, 0.1000, 0.0000, 0.0000, 0.0000, 0.0000, 0.0000, 0.3000, 0.4000, 7.5000, 12.4000, 2.9000, 0.5000, 7.6000, 1.6000, 2.3000, 0.0000, 0.0000, 2.1000, 2.3000, 8.0000, 2.1000, 1.7000, 0.0000, 0.0000, 17.9000, 4.5000, 0.5000, 0.7000, 0.3000, 0.0000, 1.1000, 0.1000, 0.0000, 0.0000, 1.1000, 0.1000, 0.0000, 1.2000, 0.0000, 1.2000, 0.8000, 0.7000, 0.0000, 0.1000, 0.2000, 0.2000, 0.0000, 0.4000, 1.3000, 0.0000, 0.0000, 0.0000, 0.1000, 1.4000 };
            HydroNumerics.Time.Core.TimestampSeries precipitationTs = new HydroNumerics.Time.Core.TimestampSeries("PrecipitationTS", startTime, numberOfTimesteps, 1, HydroNumerics.Time.Core.TimestepUnit.Days, -99999, new HydroNumerics.Core.Unit("m3PrSec", 1, 0));
            //HydroNumerics.Time.Core.TimestampSeries precipitationTs = new HydroNumerics.Time.Core.TimestampSeries("PrecipitationTS", startTime, numberOfTimesteps, 1, HydroNumerics.Time.Core.TimestepUnit.Days, -99999, new HydroNumerics.Core.Unit("mmPrDay", 1.0/(1000*24*3600), 0));
            for (int i = 0; i < numberOfTimesteps; i++)
            {
                precipitationTs.Items[i].Value = precipitation[i]  / (24 * 3600 * 1000);
                //precipitationTs.Items[i].Value = precipitation[i];
            }
            // --------------------------------------------------------------------


            // Upper Lake configuration
            //Lake upperLake = new Lake("Upper Lake", 2 * upperLakeGeometry.GetArea());
            Lake upperLake = new Lake("Upper Lake", upperLakeGeometry);
            upperLake.WaterLevel = 6.1;
            upperLake.Depth = 2;
            upperLake.Output.LogAllChemicals = true;
            

            //Lake lowerLake = new Lake("lower Lake", 2 * lowerLakeGeometry.GetArea());
            Lake lowerLake = new Lake("lower Lake", lowerLakeGeometry);
            lowerLake.Depth = 2;
            lowerLake.WaterLevel = 6.0;
            lowerLake.Output.LogAllChemicals = true;

            HydroNet.Core.Stream upperStream = new HydroNet.Core.Stream("The stream", 2000, 2, 1);
            upperStream.WaterLevel = 6.0;
            upperStream.Output.LogAllChemicals = true;
            
            HydroNet.Core.Stream lowerStream = new HydroNet.Core.Stream("Lower Stream", 1000, 2, 1);
            lowerStream.WaterLevel = 6.0;
            lowerStream.Output.LogAllChemicals = true;

            //SinkSourceBoundary upperLakePrecipitation = new SinkSourceBoundary(0.002 * contactPolygonUpperLake.GetArea() / (24 * 3600));
            SinkSourceBoundary upperLakePrecipitation = new SinkSourceBoundary(precipitationTs);
            upperLakePrecipitation.ContactGeometry = upperLakeGeometry;
            
            upperLakePrecipitation.Name = "Inflow to upperlake";


            //SinkSourceBoundary lowerLakePrecipitation = new SinkSourceBoundary(0.002 * contactPolygonLowerLake.GetArea()/ (24 * 3600));
            SinkSourceBoundary lowerLakePrecipitation = new SinkSourceBoundary(precipitationTs);
            lowerLakePrecipitation.ContactGeometry = lowerLakeGeometry;
            upperLakePrecipitation.Name = "Inflow to lowerlake";

            // -------- Groundwater boundary under upper lake ----------
            GroundWaterBoundary groundWaterBoundaryUpperLake = new GroundWaterBoundary();
            groundWaterBoundaryUpperLake.Connection = upperLake;
            groundWaterBoundaryUpperLake.ContactGeometry = upperLakeGeometry;
            groundWaterBoundaryUpperLake.Distance = 2.3;
            groundWaterBoundaryUpperLake.HydraulicConductivity = 1e-9;
            groundWaterBoundaryUpperLake.GroundwaterHead = 5.0;
            groundWaterBoundaryUpperLake.Name = "Groundwater boundary under UpperLake";
            groundWaterBoundaryUpperLake.Name = "UpperGWBoundary";
            ((WaterPacket)groundWaterBoundaryUpperLake.WaterSample).AddChemical(ChemicalFactory.Instance.GetChemical(ChemicalNames.Radon), 2.3);
            ((WaterPacket)groundWaterBoundaryUpperLake.WaterSample).AddChemical(ChemicalFactory.Instance.GetChemical(ChemicalNames.Cl), 2.3);

            // -------- Groundwater boundary under lower lake ----------
            GroundWaterBoundary groundWaterBoundaryLowerLake = new GroundWaterBoundary();
            groundWaterBoundaryLowerLake.Connection = lowerLake;
            groundWaterBoundaryLowerLake.ContactGeometry = lowerLakeGeometry;
            groundWaterBoundaryLowerLake.Distance = 2.3;
            groundWaterBoundaryLowerLake.HydraulicConductivity = 1e-12;
            groundWaterBoundaryLowerLake.GroundwaterHead = 5.0;
            groundWaterBoundaryLowerLake.Name = "Groundwater boundary under LowerLake";
            groundWaterBoundaryLowerLake.Name = "LowerGWBoundary";

            //--- Ground water boundary upper Stream ------
            GroundWaterBoundary groundWaterBoundaryUpperStream = new GroundWaterBoundary();
            groundWaterBoundaryUpperStream.Connection = upperStream;
            groundWaterBoundaryUpperStream.ContactGeometry = upperStreamGeometry;
            groundWaterBoundaryUpperStream.Distance = 2.3;
            groundWaterBoundaryUpperStream.HydraulicConductivity = 1e-12;
            groundWaterBoundaryUpperStream.GroundwaterHead = 5.0;
            groundWaterBoundaryUpperStream.Name = "Groundwater boundary Upper Stream";
            groundWaterBoundaryUpperStream.Name = "UpperStreamGWBoundary";
            
            // ---------  Ground water boundary lower stream ------------------------------------------
            GroundWaterBoundary groundWaterBoundaryLowerStream = new GroundWaterBoundary();
            groundWaterBoundaryLowerStream.Connection = lowerStream;
            groundWaterBoundaryLowerStream.ContactGeometry = lowerStreamGeometry;
            groundWaterBoundaryLowerStream.Distance = 2.3;
            groundWaterBoundaryLowerStream.HydraulicConductivity = 1e-12;
            groundWaterBoundaryLowerStream.GroundwaterHead = 5.0;
            groundWaterBoundaryLowerStream.Name = "Groundwater boundary Lower Stream";
            groundWaterBoundaryLowerStream.Name = "LowerStreamGWBoundary";
            // ------------------------------------------------------------------------------

            upperLake.SurfaceArea = upperLakeGeometry;
            lowerLake.SurfaceArea = lowerLakeGeometry;
            upperLake.Precipitation.Add(upperLakePrecipitation);
            lowerLake.Precipitation.Add(lowerLakePrecipitation);

            upperLake.GroundwaterBoundaries.Add(groundWaterBoundaryUpperLake);
            upperStream.GroundwaterBoundaries.Add(groundWaterBoundaryUpperStream);
            lowerStream.GroundwaterBoundaries.Add(groundWaterBoundaryLowerStream);
            lowerLake.GroundwaterBoundaries.Add(groundWaterBoundaryLowerLake);

 
            upperLake.DownStreamConnections.Add(upperStream);
            upperStream.DownStreamConnections.Add(lowerStream);
            lowerStream.DownStreamConnections.Add(lowerLake);

            //Creating the model
            Model model = new Model();
            model._waterBodies.Add(upperLake);
            model._waterBodies.Add(upperStream);
            model._waterBodies.Add(lowerStream);
            model._waterBodies.Add(lowerLake);
            

            WaterPacket waterPacket = new WaterPacket(1000);
            waterPacket.AddChemical(ChemicalFactory.Instance.GetChemical(ChemicalNames.Cl), 9.2);

            WaterPacket waterpacketLowerLake = new WaterPacket(lowerLake.Volume);
            waterpacketLowerLake.AddChemical(ChemicalFactory.Instance.GetChemical(ChemicalNames.Cl), 4.2);


            model.SetState("MyState", startTime, waterPacket);
            lowerLake.SetState("MyState", startTime, waterpacketLowerLake);
            
            //model.SetState("kkk", startTime, new 
            //upperLake.SetState("MyState", startTime, new WaterPacket(2));
            model.Name = "Lake model";
            model.Initialize();
            //model.Update(new DateTime(2001, 1, 1));
            return model;
        }
        private Model CreateHydroNetModel()
        {
            // Upper Lake configuration
            Lake lake = new Lake("The Lake", 1000);
            lake.WaterLevel = 5.1;
            
            SinkSourceBoundary inflow = new SinkSourceBoundary(2);
            inflow.Name = "Inflow to lake";

            HydroNumerics.Geometry.XYPolygon contactPolygon = new HydroNumerics.Geometry.XYPolygon();



            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(350, 625));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(447, 451));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(715, 433));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(863, 671));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(787, 823));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(447, 809));
            GroundWaterBoundary groundWaterBoundary = new GroundWaterBoundary();
            groundWaterBoundary.Connection = lake;
            groundWaterBoundary.ContactGeometry = contactPolygon;
            groundWaterBoundary.Distance = 2.3;
            groundWaterBoundary.HydraulicConductivity = 1e-9;
            groundWaterBoundary.GroundwaterHead = 5.0;
            groundWaterBoundary.Name = "Groundwater boundary under Lake";
            groundWaterBoundary.Name = "MyGWBoundary";

            lake.Sources.Add(inflow);
            lake.GroundwaterBoundaries.Add(groundWaterBoundary);

            //Creating the model
            Model model = new Model();
            model._waterBodies.Add(lake);

            DateTime startTime = new DateTime(2000, 1, 1);
            model.SetState("MyState", startTime, new WaterPacket(1000));
            lake.SetState("MyState", startTime, new WaterPacket(2));
            model.Name = "Lake model";
            model.Initialize();
            model.Update(new DateTime(2001, 1, 1));
            return model;
        }
    public void LakeTest()
    {
      Lake l = new Lake("L", 10000);
      l.ID = 3;

      GroundWaterBoundary gwb = new GroundWaterBoundary(l, 2, 4, 5, XYPolygon.GetSquare(23));
      gwb.WaterSample = new WaterPacket(1);
      l.GroundwaterBoundaries.Add(gwb);

      Lake l2 = (Lake)ReadWrite(l);

      Assert.AreEqual(l.Volume, l2.Volume);
      Assert.AreEqual(l.ID, l2.ID);
      Assert.AreEqual(l.Area, l2.Area);

      Assert.AreEqual(l.GroundwaterBoundaries.Count, l2.GroundwaterBoundaries.Count);

    }
Esempio n. 14
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    public void RoutingOfInflow()
    {
      Stream S = new Stream("S", 10,1,1);
      DateTime Start = DateTime.Now;
      S.SetState("Initial", Start, new WaterPacket(1, 10));

      Stream s2 = new Stream("s2", 10,1,1);


      Lake Storage = new Lake("storage", 100000);

      S.AddDownStreamWaterBody(s2);
      s2.AddDownStreamWaterBody(Storage);

      SinkSourceBoundary FB = new SinkSourceBoundary(5.0 / 60);
      FB.WaterSample = new WaterPacket(5, 5);

      S.Sources.Add(FB);
      
      TimeSpan ts = new TimeSpan(0, 1, 0);

      WaterPacket WaterProvider = new WaterPacket(2, 5);

      S.AddWaterPacket(Start, Start.AddDays(1), WaterProvider.DeepClone(15));
      S.Update(S.CurrentTime.Add(ts));
      s2.Update(S.CurrentTime.Add(ts));

      Assert.AreEqual(10, S.CurrentStoredWater.Volume, 0.00001);
      Assert.AreEqual(0.137, S.CurrentStoredWater.Composition[5], 0.001);
      Assert.AreEqual(0.863, S.CurrentStoredWater.Composition[2], 0.001);   
      Assert.AreEqual(0.1309, s2.CurrentStoredWater.Composition[1], 0.001);

    }
 public void HydroNetExample01()
 {
     Lake lake = new Lake("L", 10000);
     SinkSourceBoundary flowBoundary = new SinkSourceBoundary(2);
     lake.Sources.Add(flowBoundary);
     Model model = new Model();
     model._waterBodies.Add(lake);
     model.SetState("Kurt", new DateTime(2010, 1, 1), new WaterPacket(1.2));
     
     for (int i = 0; i < 5; i++)
     {
         model.Update(model.CurrentTime.Add(new System.TimeSpan(0, 0, 1)));
     }
 }
        private Model CreateHydroNetModel()
        {
            // Upper Lake configuration
            Lake upperLake = new Lake("Upper Lake", 1000);

            //Simple inflow boundary
            SinkSourceBoundary inflow = new SinkSourceBoundary(2);
            inflow.Name = "Inflow to Upper lake";
            inflow.ContactGeometry = new HydroNumerics.Geometry.XYPoint(350, 625);
            upperLake.Sources.Add(inflow);

            //Ground water boundary
            HydroNumerics.Geometry.XYPolygon contactPolygon = new HydroNumerics.Geometry.XYPolygon();
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(350, 625));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(447, 451));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(715, 433));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(863, 671));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(787, 823));
            contactPolygon.Points.Add(new HydroNumerics.Geometry.XYPoint(447, 809));
            GroundWaterBoundary groundWaterBoundary = new GroundWaterBoundary();
            groundWaterBoundary.Connection = upperLake;
            groundWaterBoundary.ContactGeometry = contactPolygon;
            groundWaterBoundary.Distance = 2.3;
            groundWaterBoundary.HydraulicConductivity = 1e-4;
            groundWaterBoundary.GroundwaterHead = 3.4;
            groundWaterBoundary.Name = "Groundwater boundary under Upper Lake";
            upperLake.GroundwaterBoundaries.Add(groundWaterBoundary);

            //Stream between the lakes
            Stream stream = new Stream("stream", 2000, 2, 1.1);

            //Lower Lake configuration
            Lake lowerLake = new Lake("Lower Lake", 20);
 
            //Connecting the waterbodies.
            upperLake.AddDownStreamWaterBody(stream);
            stream.AddDownStreamWaterBody(lowerLake);

            //Creating the model
            Model model = new Model();          
            model._waterBodies.Add(upperLake);
            model._waterBodies.Add(stream);
            model._waterBodies.Add(lowerLake);

            DateTime startTime = new DateTime(2010, 1, 1);
            model.SetState("MyState", startTime, new WaterPacket(1000));
            upperLake.SetState("MyState", startTime, new WaterPacket(2));
            model.Name = "HydroNet test model";
            model.Initialize();

            return model;
        }
    public void RunOnstoredData()
    {
      Lake L = new Lake("Test", 1000);
      GroundWaterBoundary gwb = new GroundWaterBoundary(L, 14 - 5, 1, 10, (XYPolygon) L.Geometry);
      L.WaterLevel = 9;
      DateTime Start = new DateTime(2000, 1, 1);
      DateTime End = new DateTime(2000, 2, 1);
      L.GroundwaterBoundaries.Add(gwb);
      Model m = new Model();
      m._waterBodies.Add(L);
      m.SetState("Initial", Start, new WaterPacket(1));
      m.MoveInTime(End, TimeSpan.FromDays(1));

      DateTime Mid = new DateTime(2000,1,15);

      double flow = L.Output.GroundwaterInflow.GetValue(Mid);

      gwb.FlowType = GWType.Flow;
      gwb.HydraulicConductivity = 1;
      gwb.GroundwaterHead = 1;

      m.RestoreState("Initial");
      m.MoveInTime(End, TimeSpan.FromDays(1));
      Assert.AreEqual(flow, L.Output.GroundwaterInflow.GetValue(Mid));

    }
Esempio n. 18
0
        private Model CreateHydroNetModel()
        {
            // Upper Lake configuration
            Lake upperLake = new Lake("Upper Lake", 1000);
            upperLake.WaterLevel = 6.1;
            upperLake.Output.LogAllChemicals = true;

            Lake lowerLake = new Lake("lower Lake", 1000);
            lowerLake.WaterLevel = 6.0;
            lowerLake.Output.LogAllChemicals = true;

            Stream upperStream = new Stream("The stream", 2000, 2, 1);
            upperStream.WaterLevel = 6.0;
            upperStream.Output.LogAllChemicals = true;

            Stream lowerStream = new Stream("Lower Stream", 1000, 2, 1);
            lowerStream.WaterLevel = 6.0;
            lowerStream.Output.LogAllChemicals = true;

            SinkSourceBoundary upperLakeInflow = new SinkSourceBoundary(0.001);
            upperLakeInflow.Name = "Inflow to upperlake";


            SinkSourceBoundary lowerLakeInflow = new SinkSourceBoundary(0.001);
            upperLakeInflow.Name = "Inflow to lowerlake";

            // -------- Groundwater boundary under upper lake ----------
            HydroNumerics.Geometry.XYPolygon contactPolygonUpperLake = new HydroNumerics.Geometry.XYPolygon();
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(535.836, 2269.625));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(675.768, 2187.713));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(771.331, 2177.474));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(887.372, 2184.300));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(935.154, 2255.973));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(945.392, 2385.666));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(931.741, 2505.119));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(877.133, 2546.075));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(812.287, 2638.225));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(696.246, 2675.768));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(638.225, 2627.986));
            contactPolygonUpperLake.Points.Add(new HydroNumerics.Geometry.XYPoint(573.379, 2587.031));

            GroundWaterBoundary groundWaterBoundaryUpperLake = new GroundWaterBoundary();
            groundWaterBoundaryUpperLake.Connection = upperLake;
            groundWaterBoundaryUpperLake.ContactGeometry = contactPolygonUpperLake;
            groundWaterBoundaryUpperLake.Distance = 2.3;
            groundWaterBoundaryUpperLake.HydraulicConductivity = 1e-9;
            groundWaterBoundaryUpperLake.GroundwaterHead = 5.0;
            groundWaterBoundaryUpperLake.Name = "Groundwater boundary under UpperLake";
            groundWaterBoundaryUpperLake.Name = "UpperGWBoundary";
            ((WaterPacket)groundWaterBoundaryUpperLake.WaterSample).AddChemical(ChemicalFactory.Instance.GetChemical(ChemicalNames.Radon), 2.3);
            ((WaterPacket)groundWaterBoundaryUpperLake.WaterSample).AddChemical(ChemicalFactory.Instance.GetChemical(ChemicalNames.Cl), 2.3);

            // -------- Groundwater boundary under lower lake ----------
            HydroNumerics.Geometry.XYPolygon contactPolygonLowerLake = new HydroNumerics.Geometry.XYPolygon();
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(1935.154, 1150.171));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(1901.024, 1058.020));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(1877.133, 965.870));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(1894.198, 897.611));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(1938.567, 808.874));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(2023.891, 761.092));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(2116.041, 740.614));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(2232.082, 747.440));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(2327.645, 808.874));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(2389.078, 969.283));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(2372.014, 1109.215));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(2262.799, 1218.430));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(2105.802, 1235.495));
            contactPolygonLowerLake.Points.Add(new HydroNumerics.Geometry.XYPoint(1982.935, 1225.256));

            GroundWaterBoundary groundWaterBoundaryLowerLake = new GroundWaterBoundary();
            groundWaterBoundaryLowerLake.Connection = lowerLake;
            groundWaterBoundaryLowerLake.ContactGeometry = contactPolygonLowerLake;
            groundWaterBoundaryLowerLake.Distance = 2.3;
            groundWaterBoundaryLowerLake.HydraulicConductivity = 1e-9;
            groundWaterBoundaryLowerLake.GroundwaterHead = 5.0;
            groundWaterBoundaryLowerLake.Name = "Groundwater boundary under LowerLake";
            groundWaterBoundaryLowerLake.Name = "LowerGWBoundary";

            //--- Ground water boundary upper Stream ------
            HydroNumerics.Geometry.XYPolygon contactPolygonUpperStream = new HydroNumerics.Geometry.XYPolygon();
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(863.481, 2177.474));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(914.676, 2129.693));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(965.870, 2071.672));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(976.109, 2027.304));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(976.109, 1989.761));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1006.826, 1959.044));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1051.195, 1918.089));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1095.563, 1877.133));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1126.280, 1808.874));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1187.713, 1781.570));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1228.669, 1730.375));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1262.799, 1665.529));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1283.276, 1597.270));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1317.406, 1535.836));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1341.297, 1484.642));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1389.078, 1457.338));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1423.208, 1440.273));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1477.816, 1402.730));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1511.945, 1358.362));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1539.249, 1327.645));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1566.553, 1354.949));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1535.836, 1406.143));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1508.532, 1457.338));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1440.273, 1522.184));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1368.601, 1580.205));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1327.645, 1631.399));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1307.167, 1696.246));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1269.625, 1767.918));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1221.843, 1819.113));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1191.126, 1843.003));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1136.519, 1894.198));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1088.737, 1935.154));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1061.433, 1976.109));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1030.717, 2040.956));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1013.652, 2105.802));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(972.696, 2177.474));
            contactPolygonUpperStream.Points.Add(new HydroNumerics.Geometry.XYPoint(918.089, 2228.669));

            GroundWaterBoundary groundWaterBoundaryUpperStream = new GroundWaterBoundary();
            groundWaterBoundaryUpperStream.Connection = upperStream;
            groundWaterBoundaryUpperStream.ContactGeometry = contactPolygonUpperStream;
            groundWaterBoundaryUpperStream.Distance = 2.3;
            groundWaterBoundaryUpperStream.HydraulicConductivity = 1e-9;
            groundWaterBoundaryUpperStream.GroundwaterHead = 5.0;
            groundWaterBoundaryUpperStream.Name = "Groundwater boundary Upper Stream";
            groundWaterBoundaryUpperStream.Name = "UpperStreamGWBoundary";

            // ---------  Ground water boundary lower stream ------------------------------------------
            HydroNumerics.Geometry.XYPolygon contactPolygonLowerStream = new HydroNumerics.Geometry.XYPolygon();
            contactPolygonLowerStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1904.437, 1081.911));
            contactPolygonLowerStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1921.502, 1153.584));
            contactPolygonLowerStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1771.331, 1255.973));
            contactPolygonLowerStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1573.379, 1354.949));
            contactPolygonLowerStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1542.662, 1324.232));
            contactPolygonLowerStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1597.270, 1273.038));
            contactPolygonLowerStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1709.898, 1215.017));
            contactPolygonLowerStream.Points.Add(new HydroNumerics.Geometry.XYPoint(1839.590, 1143.345));

            GroundWaterBoundary groundWaterBoundaryLowerStream = new GroundWaterBoundary();
            groundWaterBoundaryLowerStream.Connection = lowerStream;
            groundWaterBoundaryLowerStream.ContactGeometry = contactPolygonLowerStream;
            groundWaterBoundaryLowerStream.Distance = 2.3;
            groundWaterBoundaryLowerStream.HydraulicConductivity = 1e-9;
            groundWaterBoundaryLowerStream.GroundwaterHead = 5.0;
            groundWaterBoundaryLowerStream.Name = "Groundwater boundary Lower Stream";
            groundWaterBoundaryLowerStream.Name = "LowerStreamGWBoundary";
            // ------------------------------------------------------------------------------

            //upperLake.Sources.Add(upperLakeInflow);
            //lowerLake.Sources.Add(lowerLakeInflow);

            upperLake.GroundwaterBoundaries.Add(groundWaterBoundaryUpperLake);
            upperStream.GroundwaterBoundaries.Add(groundWaterBoundaryUpperStream);
            lowerStream.GroundwaterBoundaries.Add(groundWaterBoundaryLowerStream);
            lowerLake.GroundwaterBoundaries.Add(groundWaterBoundaryLowerLake);



            upperLake.DownStreamConnections.Add(upperStream);
            upperStream.DownStreamConnections.Add(lowerStream);
            lowerStream.DownStreamConnections.Add(lowerLake);

            //Creating the model
            Model model = new Model();
            model._waterBodies.Add(upperLake);
            model._waterBodies.Add(upperStream);
            model._waterBodies.Add(lowerStream);
            model._waterBodies.Add(lowerLake);


            DateTime startTime = new DateTime(2000, 1, 1);
            model.SetState("MyState", startTime, new WaterPacket(1000));
            //upperLake.SetState("MyState", startTime, new WaterPacket(2));
            model.Name = "Lake model";
            model.Initialize();
            //model.Update(new DateTime(2001, 1, 1));
            return model;
        }
Esempio n. 19
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    public DemoViewModel(string Name, XYPolygon SurfaceArea, TimespanSeries Evaporation, TimespanSeries Precipitation)
    {
      Calibration = 1;
      _lake = new Lake(Name, SurfaceArea);
      _lake.Depth = 5;
      _lake.WaterLevel = 45.7;

      //Create and add precipitation boundary
      SinkSourceBoundary Precip = new SinkSourceBoundary(Precipitation);
      Precip.ContactGeometry = _lake.SurfaceArea;
      _lake.Sources.Add(Precip);

      //Create and add evaporation boundary
      EvaporationRateBoundary eva = new EvaporationRateBoundary(Evaporation);
      eva.ContactGeometry = _lake.SurfaceArea;
      _lake.EvaporationBoundaries.Add(eva);

      //Create and add a discharge boundary
      Discharge = new TimestampSeries();
      Discharge.AddSiValue(new DateTime(2007, 3, 12), 6986 / TimeSpan.FromDays(365).TotalSeconds);
      Discharge.AddSiValue(new DateTime(2007, 4, 3), 5894 / TimeSpan.FromDays(365).TotalSeconds);
      Discharge.AddSiValue(new DateTime(2007, 4, 25), 1205 / TimeSpan.FromDays(365).TotalSeconds);
      Discharge.RelaxationFactor = 1;
      Discharge.AllowExtrapolation = true;
      Discharge.Name = "Inflow";
      SinkSourceBoundary Kilde = new SinkSourceBoundary(Discharge);
      _lake.Sources.Add(Kilde);

      //Add a groundwater boundary
      GroundWaterBoundary gwb = new GroundWaterBoundary(_lake, 1e-7, 1, 46, (XYPolygon) _lake.Geometry);
      _lake.GroundwaterBoundaries.Add(gwb);

      DateTime Start = new DateTime(2007, 1, 1);
      //Add to an engine
      Engine = new Model();
      Engine._waterBodies.Add(_lake);

      //Set initial state
      Engine.SetState("Initial", Start, new WaterPacket(1));

      //Add the chemicals
      Chemical cl = ChemicalFactory.Instance.GetChemical(ChemicalNames.Cl);

      //Tell the lake to log the chemicals
      _lake.Output.LogChemicalConcentration(ChemicalFactory.Instance.GetChemical(ChemicalNames.IsotopeFraction));
      _lake.Output.LogChemicalConcentration(cl);

      IsotopeWater Iw = new IsotopeWater(1);
      Iw.SetIsotopeRatio(0.2);
      Iw.AddChemical(cl, 0.1);
      Precip.WaterSample = Iw.DeepClone();

      //Evaporate some of the water to get realistic initial conditions
      Iw.Evaporate(Iw.Volume / 2);
      _lake.SetState("Initial", Start, Iw.DeepClone(_lake.Volume));
      Kilde.WaterSample = Iw.DeepClone();

      Iw.Evaporate(Iw.Volume / 2);
      gwb.WaterSample = Iw.DeepClone();
    
    }