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authorSashi202020-04-21 12:43:41 +0550
committerSashi202020-04-21 12:43:41 +0550
commitc0e052d626cd1023e3961f095f0e123b3c03f6fe (patch)
tree2b73b6d7332d7692d0a51a61d4d020525669546d /Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha
parentd17becccc51cf9ee20bfb0d0097c8d72d69d678b (diff)
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Added(A)/Deleted(D) following Flowsheet file
A A_Simple_De-Humidification_System_By_Mr_Kaushik_Datta/Abstract_A_Simple_Dehumidification_System.pdf A A_Simple_De-Humidification_System_By_Mr_Kaushik_Datta/README.txt A A_Simple_De-Humidification_System_By_Mr_Kaushik_Datta/dehumidification.mo A Conversion_Of_N-Butane_To_Isobutane_By_Mr_Neel_Pulin_Modi/Abstract.pdf A Conversion_Of_N-Butane_To_Isobutane_By_Mr_Neel_Pulin_Modi/IsobutaneNew.mo A Conversion_Of_N-Butane_To_Isobutane_By_Mr_Neel_Pulin_Modi/README.txt A Dehydration_Of_Ethanol_Using_Glycerol_As_Entrainer_By_Mr_Neel_Pulin_Modi/Abstract.pdf A Dehydration_Of_Ethanol_Using_Glycerol_As_Entrainer_By_Mr_Neel_Pulin_Modi/EthanolDehydrationNew.mo A Dehydration_Of_Ethanol_Using_Glycerol_As_Entrainer_By_Mr_Neel_Pulin_Modi/README.txt A Effect_Of_Column_Sequence_On_The_Separation_Of_Compounds_By_Mr_Akshay_Kumar_Mehta/Abstract_EffectOfDistillationColumnSequenceOnSeparationOfCompounds.pdf A Effect_Of_Column_Sequence_On_The_Separation_Of_Compounds_By_Mr_Akshay_Kumar_Mehta/Flowsheet_EffectOfDistillationColumnSequenceOnSeparationOfCompounds.mo A Effect_Of_Column_Sequence_On_The_Separation_Of_Compounds_By_Mr_Akshay_Kumar_Mehta/README.txt A Effect_Of_Column_Sequence_On_The_Separation_Of_Compounds_By_Mr_Malapati_Sree_Harsha/AbstractFlowsheet.pdf A Effect_Of_Column_Sequence_On_The_Separation_Of_Compounds_By_Mr_Malapati_Sree_Harsha/README.txt A Effect_Of_Column_Sequence_On_The_Separation_Of_Compounds_By_Mr_Malapati_Sree_Harsha/flowsheet3.mo D Effect_Of_Thermodynamic_Models_On_Separation_Of_Aromatic_Compounds_By_Mr_Amarnath/Abstract.pdf D Effect_Of_Thermodynamic_Models_On_Separation_Of_Aromatic_Compounds_By_Mr_Amarnath/SeparationOfBenzene.mo A Effect_Of_Thermodynamic_Models_On_Separation_Of_Aromatics_By_Mr_Malapati_Sree_Harsha/Abstract.pdf A Effect_Of_Thermodynamic_Models_On_Separation_Of_Aromatics_By_Mr_Malapati_Sree_Harsha/README.txt A Effect_Of_Thermodynamic_Models_On_Separation_Of_Aromatics_By_Mr_Malapati_Sree_Harsha/thermodynamic.mo A Extractive_Distillation_Of_Thf_And_Ethanol_Using_Ethylene_Glycol_By_Mr_Akshay_Kumar_Mehta/Abstract_ExtractiveDistillationofTHFandEthanol.pdf A Extractive_Distillation_Of_Thf_And_Ethanol_Using_Ethylene_Glycol_By_Mr_Akshay_Kumar_Mehta/Flowsheet_extractive_distillation_of_ethylene_glycol.mo A Extractive_Distillation_Of_Thf_And_Ethanol_Using_Ethylene_Glycol_By_Mr_Akshay_Kumar_Mehta/README.txt A Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/Abstract.pdf A Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/README.txt A Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/openloopturbine.mo A Pressure_Swing_Azeotropic_Distillation_Of_Methanol_And_Acetone_By_Mr_Neel_Pulin_Modi/Abstract.pdf A Pressure_Swing_Azeotropic_Distillation_Of_Methanol_And_Acetone_By_Mr_Neel_Pulin_Modi/PSD.mo A Pressure_Swing_Azeotropic_Distillation_Of_Methanol_And_Acetone_By_Mr_Neel_Pulin_Modi/README.txt A "Pressure_Swing_Distillation_For_Separating_A_Minimum_Boiling_Azeotrope_Of_Ethyl_Acetate_And_Ethanol\t_By_Mr_Neel_Pulin_Modi/Abstract.pdf" A "Pressure_Swing_Distillation_For_Separating_A_Minimum_Boiling_Azeotrope_Of_Ethyl_Acetate_And_Ethanol\t_By_Mr_Neel_Pulin_Modi/PSD_EA_EO.mo" A "Pressure_Swing_Distillation_For_Separating_A_Minimum_Boiling_Azeotrope_Of_Ethyl_Acetate_And_Ethanol\t_By_Mr_Neel_Pulin_Modi/README.txt" A Pressure_Swing_Distillation_Of_Acetonitrile-Water_System_By_Mr_Neel_Pulin_Modi/Abstract.pdf A Pressure_Swing_Distillation_Of_Acetonitrile-Water_System_By_Mr_Neel_Pulin_Modi/PSDwithRecycle.mo A Pressure_Swing_Distillation_Of_Acetonitrile-Water_System_By_Mr_Neel_Pulin_Modi/README.txt D Pressure_Swing_Distillation_Of_Toluene_-_Ethanol_By_Mr_Kaushik_Datta/Abstract.pdf D Pressure_Swing_Distillation_Of_Toluene_-_Ethanol_By_Mr_Kaushik_Datta/Flowsheet_PSDEthanol.mo A Pressure_Swing_Distillation_Of_Toluene_And_Ethanol_By_Mr_Kaushik_Datta/Abstract_PSD_Toluene_Ethanol.pdf A Pressure_Swing_Distillation_Of_Toluene_And_Ethanol_By_Mr_Kaushik_Datta/PSD.mo A Pressure_Swing_Distillation_Of_Toluene_And_Ethanol_By_Mr_Kaushik_Datta/README.txt A Pressure_Swing_Distillation_System_For_Methylal_methanol_By_Mr_Sandeep_Kumar_Samanta/PSD_Abstract.pdf A Pressure_Swing_Distillation_System_For_Methylal_methanol_By_Mr_Sandeep_Kumar_Samanta/PresSwingDist.mo A Pressure_Swing_Distillation_System_For_Methylal_methanol_By_Mr_Sandeep_Kumar_Samanta/README.txt A Pressure_Swing_Distillation_To_Separate_Isobutyl_Acetate_And_Isobutyl_Alcohol_By_Mr_Akshay_Kumar_Mehta/Abstract_PSD.pdf A Pressure_Swing_Distillation_To_Separate_Isobutyl_Acetate_And_Isobutyl_Alcohol_By_Mr_Akshay_Kumar_Mehta/Flowsheet_PSD.mo A Pressure_Swing_Distillation_To_Separate_Isobutyl_Acetate_And_Isobutyl_Alcohol_By_Mr_Akshay_Kumar_Mehta/README.txt A Pressure_Swing_Of_Thf_And_Water_By_Mr_Avss.praneeth/PS_THF_WATER.mo A Pressure_Swing_Of_Thf_And_Water_By_Mr_Avss.praneeth/PS_THF_WATER.pdf A Production_Of_Acetic_Acid_By_Mr_Malapati_Sree_Harsha/AceticAcidAbstract.pdf A Production_Of_Acetic_Acid_By_Mr_Malapati_Sree_Harsha/README.txt A Production_Of_Acetic_Acid_By_Mr_Malapati_Sree_Harsha/aceticacid.mo A Production_Of_Acetic_Acid_Using_Acetaldehyde_By_Mr_Sandeep_Kumar_Samanta/Aceticacid.mo A Production_Of_Acetic_Acid_Using_Acetaldehyde_By_Mr_Sandeep_Kumar_Samanta/Aceticacid_Abstract.pdf A Production_Of_Acetic_Acid_Using_Acetaldehyde_By_Mr_Sandeep_Kumar_Samanta/README.txt A Production_Of_Ammonia_By_Mr_Malapati_Sree_Harsha/Ammonia.mo A Production_Of_Ammonia_By_Mr_Malapati_Sree_Harsha/AmmoniaAbs.pdf A Production_Of_Ammonia_By_Mr_Malapati_Sree_Harsha/README.txt A Production_Of_Cumene_From_Benzene_And_Propylene_By_Mr_Neel_Pulin_Modi/Abstract.pdf A Production_Of_Cumene_From_Benzene_And_Propylene_By_Mr_Neel_Pulin_Modi/Cumenewithrecycle.mo A Production_Of_Cumene_From_Benzene_And_Propylene_By_Mr_Neel_Pulin_Modi/README.txt A Production_Of_Diethyl_Ether_From_Ethanol_By_Dehydration_By_Mr_Malapati_Sree_Harsha/Diethyl.mo A Production_Of_Diethyl_Ether_From_Ethanol_By_Dehydration_By_Mr_Malapati_Sree_Harsha/README.txt A Production_Of_Diethyl_Ether_From_Ethanol_By_Dehydration_By_Mr_Malapati_Sree_Harsha/abstract_diethylether.pdf A Production_Of_Dimethyl_Ether_By_Ms_Ayushi_Sinha/Dimethylether_Production_Abstract.pdf A Production_Of_Dimethyl_Ether_By_Ms_Ayushi_Sinha/Dimethylether_Production_Flowsheet.mo A Production_Of_Dimethyl_Ether_By_Ms_Ayushi_Sinha/README.txt A Production_Of_Ethyl_Chloride_From_Ethylene_Involving_Recycle_Stream_By_Mr_Malapati_Sree_Harsha/README.txt A Production_Of_Ethyl_Chloride_From_Ethylene_Involving_Recycle_Stream_By_Mr_Malapati_Sree_Harsha/abstract.pdf A Production_Of_Ethyl_Chloride_From_Ethylene_Involving_Recycle_Stream_By_Mr_Malapati_Sree_Harsha/ethylchloride.mo A Production_Of_Ethylene_Oxide_By_Mr_Malapati_Sree_Harsha/Abstract.pdf A Production_Of_Ethylene_Oxide_By_Mr_Malapati_Sree_Harsha/README.txt A Production_Of_Ethylene_Oxide_By_Mr_Malapati_Sree_Harsha/ethyleneOxide.mo A Production_Of_Methane_From_Carbon_Monoxide_And_Hydrogen_By_Mr_Aradhyula_Venkata_Sri_Surya_Praneeth/Methanation_System.pdf A Production_Of_Methane_From_Carbon_Monoxide_And_Hydrogen_By_Mr_Aradhyula_Venkata_Sri_Surya_Praneeth/Methanation_system.mo A Production_Of_Methane_From_Carbon_Monoxide_And_Hydrogen_By_Mr_Aradhyula_Venkata_Sri_Surya_Praneeth/README.txt A Production_Of_Methanol_By_Mr_Neel_Pulin_Modi/Abstract.pdf A Production_Of_Methanol_By_Mr_Neel_Pulin_Modi/README.txt A Production_Of_Methanol_By_Mr_Neel_Pulin_Modi/methanolNew.mo A Production_Of_P-Xylene_By_Mr_Malapati_Sree_Harsha/Flowsheet_ProductionOfParaxylene.mo A Production_Of_P-Xylene_By_Mr_Malapati_Sree_Harsha/README.txt A Production_Of_P-Xylene_By_Mr_Malapati_Sree_Harsha/abstract.pdf A Production_Of_Vinyl_Chloride_Monomer_Via_Acetylene-Hcl_Reaction_By_Ms_Ayushi_Sinha/README.txt A Production_Of_Vinyl_Chloride_Monomer_Via_Acetylene-Hcl_Reaction_By_Ms_Ayushi_Sinha/VinylChloride_Production_Abstract.pdf A Production_Of_Vinyl_Chloride_Monomer_Via_Acetylene-Hcl_Reaction_By_Ms_Ayushi_Sinha/VinylChloride_Production_Flowsheet.mo A Psd_For_Methanol-Toluene_Separation_Using_Light_Entrainer_Chloroform_By_Mr_Neel_Pulin_Modi/Abstract.pdf A Psd_For_Methanol-Toluene_Separation_Using_Light_Entrainer_Chloroform_By_Mr_Neel_Pulin_Modi/MethanolTolueneExtractiveNew.mo A Psd_For_Methanol-Toluene_Separation_Using_Light_Entrainer_Chloroform_By_Mr_Neel_Pulin_Modi/README.txt A Simulation_Of_Pressure_Swing_Distillation_For_Separation_Of_Ethyl_Acetate-Ethanol-Water_By_Mr_Sarthak_Vaidya/PSD1.mo A Simulation_Of_Pressure_Swing_Distillation_For_Separation_Of_Ethyl_Acetate-Ethanol-Water_By_Mr_Sarthak_Vaidya/PSD_abstract.pdf A Simulation_Of_Pressure_Swing_Distillation_For_Separation_Of_Ethyl_Acetate-Ethanol-Water_By_Mr_Sarthak_Vaidya/README.txt A Synthesis_Of_Methanol_Using_Open_Modelica_By_Mr_Parimal_Patel/MethanolSynthesis.pdf A Synthesis_Of_Methanol_Using_Open_Modelica_By_Mr_Parimal_Patel/Methanol_Production.mo
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-rwxr-xr-xOpen_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/README.txt8
-rwxr-xr-xOpen_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/openloopturbine.mo99
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diff --git a/Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/Abstract.pdf b/Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/Abstract.pdf
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diff --git a/Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/README.txt b/Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/README.txt
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+About the flowsheet
+
+Title Of The Flowsheet Project: Open Cycle Steam Turbine
+Proposar Name: Mr Malapati Sree Harsha
+University: Sri Venkateswara University College of Engineering, Tirupati
+
+
+OpenModelica Flowsheet Project By FOSSEE, IIT Bombay
diff --git a/Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/openloopturbine.mo b/Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/openloopturbine.mo
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--- /dev/null
+++ b/Open_Cycle_Steam_Turbine_By_Mr_Malapati_Sree_Harsha/openloopturbine.mo
@@ -0,0 +1,99 @@
+package openloopturbine
+model ms
+ extends Simulator.Streams.MaterialStream;
+ extends Simulator.Files.ThermodynamicPackages.RaoultsLaw;
+end ms;
+model Exp
+ extends Simulator.UnitOperations.AdiabaticExpander;
+ extends Simulator.Files.ThermodynamicPackages.RaoultsLaw;
+end Exp;
+
+model Flowsheet
+ extends Modelica.Icons.Example;
+ import data = Simulator.Files.ChemsepDatabase;
+ parameter data.Water H2O;
+ parameter Integer Nc = 1;
+ parameter data.GeneralProperties C[Nc] = {H2O};
+ openloopturbine.ms Feed(C = C, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {-204, 44}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ Simulator.UnitOperations.CentrifugalPump Pump(C = C, Eff = 0.75, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {-162, 40}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ Simulator.Streams.EnergyStream E1 annotation(
+ Placement(visible = true, transformation(origin = {-196, -18}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ openloopturbine.ms PumpOutlet(C = C, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {-128, 48}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ Simulator.UnitOperations.Heater Boiler(C = C, Eff = 1, Nc = Nc, Pdel = 0) annotation(
+ Placement(visible = true, transformation(origin = {-72, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ Simulator.UnitOperations.Heater SuperHeater(C = C, Eff = 1, Nc = Nc, Pdel = 0) annotation(
+ Placement(visible = true, transformation(origin = {0, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ Simulator.Streams.EnergyStream E2 annotation(
+ Placement(visible = true, transformation(origin = {-92, -16}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ Simulator.Streams.EnergyStream E3 annotation(
+ Placement(visible = true, transformation(origin = {-22, -12}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ openloopturbine.ms SuperHeaterOutlet(C = C, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {46, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ openloopturbine.ms BoilerOutlet(C = C, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {-36, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ openloopturbine.Exp EXPANDER(C = C, Eff = 0.75, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {92, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ openloopturbine.ms SpentSteam(C = C, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {138, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ Simulator.Streams.EnergyStream E4 annotation(
+ Placement(visible = true, transformation(origin = {114, -30}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ openloopturbine.Exp EXPANDER1(C = C, Eff = 0.75, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {174, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ openloopturbine.ms SpentSteam1(C = C, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {210, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ Simulator.Streams.EnergyStream E5 annotation(
+ Placement(visible = true, transformation(origin = {192, -14}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ openloopturbine.ms SpentSteam2(C = C, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {276, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+ Simulator.UnitOperations.Valve valve(C = C, Nc = Nc) annotation(
+ Placement(visible = true, transformation(origin = {244, 50}, extent = {{-10, -10}, {10, 10}}, rotation = 0)));
+equation
+ Feed.P = 101325;
+ Feed.T = 291.483333;
+ Feed.F_p[1] = 13.988110;
+ Feed.x_pc[1, :] = {1};
+ Pump.Pdel = 1622333.5;
+ Boiler.Tout = 500;
+ SuperHeater.Tout = 560.93;
+ EXPANDER.Pdel = 1013250;
+ EXPANDER1.Pdel = 303975;
+ valve.Pout=101325;
+ connect(Feed.Out, Pump.In) annotation(
+ Line(points = {{-194, 44}, {-172, 44}, {-172, 42}, {-172, 42}}, color = {0, 70, 70}));
+ connect(E1.Out, Pump.En) annotation(
+ Line(points = {{-186, -18}, {-162, -18}, {-162, 34}, {-162, 34}}, color = {255, 0, 0}));
+ connect(Pump.Out, PumpOutlet.In) annotation(
+ Line(points = {{-152, 50}, {-138, 50}, {-138, 48}, {-138, 48}}, color = {0, 70, 70}));
+ connect(PumpOutlet.Out, Boiler.In) annotation(
+ Line(points = {{-118, 48}, {-82, 48}, {-82, 50}, {-82, 50}}, color = {0, 70, 70}));
+ connect(Boiler.Out, BoilerOutlet.In) annotation(
+ Line(points = {{-62, 50}, {-46, 50}}, color = {0, 70, 70}));
+ connect(BoilerOutlet.Out, SuperHeater.In) annotation(
+ Line(points = {{-26, 50}, {-10, 50}}, color = {0, 70, 70}));
+ connect(SuperHeater.Out, SuperHeaterOutlet.In) annotation(
+ Line(points = {{10, 50}, {36, 50}}, color = {0, 70, 70}));
+ connect(SuperHeater.En, E3.Out) annotation(
+ Line(points = {{-10, 40}, {-10, 14}, {-12, 14}, {-12, -12}}, color = {255, 0, 0}));
+ connect(Boiler.En, E2.Out) annotation(
+ Line(points = {{-82, 40}, {-82, -16}}, color = {255, 0, 0}));
+ connect(SuperHeaterOutlet.Out, EXPANDER.In) annotation(
+ Line(points = {{56, 50}, {82, 50}}, color = {0, 70, 70}));
+ connect(EXPANDER.Out, SpentSteam.In) annotation(
+ Line(points = {{102, 50}, {128, 50}}, color = {0, 70, 70}));
+ connect(EXPANDER.En, E4.In) annotation(
+ Line(points = {{92, 43}, {92, 1}, {104, 1}, {104, -30}}, color = {255, 0, 0}));
+ connect(SpentSteam.Out, EXPANDER1.In) annotation(
+ Line(points = {{148, 50}, {164, 50}}, color = {0, 70, 70}));
+ connect(EXPANDER1.Out, SpentSteam1.In) annotation(
+ Line(points = {{184, 50}, {200, 50}}, color = {0, 70, 70}));
+ connect(EXPANDER1.En, E5.In) annotation(
+ Line(points = {{174, 43}, {174, 8.5}, {182, 8.5}, {182, -14}}, color = {255, 0, 0}));
+ connect(SpentSteam1.Out, valve.In) annotation(
+ Line(points = {{220, 50}, {234, 50}}, color = {0, 70, 70}));
+ connect(valve.Out, SpentSteam2.In) annotation(
+ Line(points = {{254, 50}, {266, 50}}, color = {0, 70, 70}));
+ end Flowsheet;
+end openloopturbine;