Decoupled pressure units from the flow unit system
Decoupled pressure units from the flow unit system, allowing them to be set independently to support mixed-unit conventions (e.g., using LPS for flow and PSI for pressure).
This commit is contained in:
@@ -42,6 +42,8 @@ This document describes the changes and updates that have been made in version 2
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- `EN_PRESS_UNITS` can now be used with `EN_getoption` and `EN_setoption` to get or set the pressure unit used in EPANET.
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- Decoupled pressure units from the flow unit system, allowing them to be set independently to support mixed-unit conventions (e.g., using LPS for flow and PSI for pressure).
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- The following constants can be used with EN_getnodevalue to retrieve the components of a node's total demand at a given point in time:
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- `EN_FULLDEMAND` - the consumer demand requested
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- `EN_DEMANDFLOW` - the consumer demand delivered
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@@ -1411,8 +1411,6 @@ int DLLEXPORT EN_setoption(EN_Project p, int option, double value)
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case EN_PRESS_UNITS:
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unit = ROUND(value);
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if (unit < 0 || unit > METERS) return 205;
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if (p->parser.Unitsflag == US && unit > PSI) return 0;
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if (p->parser.Unitsflag == SI && unit == PSI) return 0;
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p->parser.Pressflag = unit;
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dfactor = Ucf[DEMAND];
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22
src/input1.c
22
src/input1.c
@@ -103,7 +103,7 @@ void setdefaults(Project *pr)
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pr->Warnflag = FALSE; // Warning flag is off
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parser->Unitsflag = US; // US unit system
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parser->Flowflag = GPM; // Flow units are gpm
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parser->Pressflag = PSI; // Pressure units are psi
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parser->Pressflag = UNITDEFAULT; // Pressure units set based on unit system
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out->Hydflag = SCRATCH; // No external hydraulics file
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rpt->Tstatflag = SERIES; // Generate time series output
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@@ -269,8 +269,11 @@ void adjustdata(Project *pr)
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}
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// Revise pressure units depending on flow units
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if (parser->Unitsflag != SI) parser->Pressflag = PSI;
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else if (parser->Pressflag == PSI) parser->Pressflag = METERS;
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if (parser->Pressflag == UNITDEFAULT)
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{
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if (parser->Unitsflag == SI) parser->Pressflag = METERS;
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else parser->Pressflag = PSI;
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}
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// Store value of viscosity & diffusivity
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ucf = 1.0;
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@@ -404,8 +407,6 @@ void initunits(Project *pr)
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strcpy(rpt->Field[DEMAND].Units, RptFlowUnitsTxt[parser->Flowflag]);
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strcpy(rpt->Field[ELEV].Units, u_METERS);
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strcpy(rpt->Field[HEAD].Units, u_METERS);
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if (parser->Pressflag == METERS) strcpy(rpt->Field[PRESSURE].Units, u_METERS);
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else strcpy(rpt->Field[PRESSURE].Units, u_KPA);
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strcpy(rpt->Field[LENGTH].Units, u_METERS);
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strcpy(rpt->Field[DIAM].Units, u_MMETERS);
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strcpy(rpt->Field[FLOW].Units, RptFlowUnitsTxt[parser->Flowflag]);
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@@ -423,8 +424,6 @@ void initunits(Project *pr)
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if (parser->Flowflag == CMS) qcf = CMSperCFS;
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hcf = MperFT;
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if (parser->Pressflag == METERS) pcf = MperFT * hyd->SpGrav;
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else pcf = KPAperPSI * PSIperFT * hyd->SpGrav;
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wcf = KWperHP;
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}
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else // US units
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@@ -448,10 +447,17 @@ void initunits(Project *pr)
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if (parser->Flowflag == IMGD) qcf = IMGDperCFS;
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if (parser->Flowflag == AFD) qcf = AFDperCFS;
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hcf = 1.0;
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pcf = PSIperFT * hyd->SpGrav;
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wcf = 1.0;
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}
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if (parser->Pressflag == METERS) strcpy(rpt->Field[PRESSURE].Units, u_METERS);
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else if (parser->Pressflag == KPA) strcpy(rpt->Field[PRESSURE].Units, u_KPA);
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else strcpy(rpt->Field[PRESSURE].Units, u_PSI);
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if (parser->Pressflag == METERS) pcf = MperFT * hyd->SpGrav;
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else if (parser->Pressflag == KPA) pcf = KPAperPSI * PSIperFT * hyd->SpGrav;
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else pcf = PSIperFT * hyd->SpGrav;
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strcpy(rpt->Field[QUALITY].Units, "");
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ccf = 1.0;
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if (qual->Qualflag == CHEM)
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@@ -238,7 +238,8 @@ typedef enum {
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typedef enum {
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PSI, // pounds per square inch
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KPA, // kiloPascals
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METERS // meters
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METERS, // meters
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UNITDEFAULT // default based on unit system (SI or US)
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} PressureUnitsType;
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typedef enum {
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@@ -74,13 +74,13 @@ BOOST_FIXTURE_TEST_CASE(test_pressure_units, FixtureInitClose)
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(units == EN_PSI);
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// Change to pressure from PSI to meters and check it's still PSI
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// Change to pressure from PSI to meters and check it is meters
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error = EN_setoption(ph, EN_PRESS_UNITS, EN_METERS);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(units == EN_PSI);
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BOOST_CHECK(units == EN_METERS);
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// Change flow units to LPS to change to metric units and rerun simulation
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error = EN_setflowunits(ph, EN_LPS);
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@@ -108,12 +108,12 @@ BOOST_FIXTURE_TEST_CASE(test_pressure_units, FixtureInitClose)
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(abs(p - 298.76035) < 1.e-5);
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// Set pressure to PSI and check that it remains in kPa
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// Set pressure to PSI and check that it has changed to PSI
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error = EN_setoption(ph, EN_PRESS_UNITS, EN_PSI);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(units == EN_KPA);
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BOOST_CHECK(units == EN_PSI);
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error = EN_closeH(ph);
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BOOST_REQUIRE(error == 0);
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@@ -264,4 +264,197 @@ BOOST_FIXTURE_TEST_CASE(test_rule_unit_change, FixtureOpenClose)
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}
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BOOST_FIXTURE_TEST_CASE(test_decoupled_pressure_units, FixtureInitClose)
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{
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int index;
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long t;
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double p, units;
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// Create basic network
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error = EN_addnode(ph, "R1", EN_RESERVOIR, &index);
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BOOST_REQUIRE(error == 0);
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error = EN_setnodevalue(ph, index, EN_ELEVATION, 100);
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BOOST_REQUIRE(error == 0);
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error = EN_addnode(ph, "J1", EN_JUNCTION, &index);
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BOOST_REQUIRE(error == 0);
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error = EN_addlink(ph, "P1", EN_PIPE, "R1", "J1", &index);
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BOOST_REQUIRE(error == 0);
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// Test 1: Start with US flow units (GPM) and change to PSI
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error = EN_setflowunits(ph, EN_GPM);
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BOOST_REQUIRE(error == 0);
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// Should succeed in setting PSI pressure units
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error = EN_setoption(ph, EN_PRESS_UNITS, EN_PSI);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(units == EN_PSI);
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// Test 2: With US flow units, set pressure to meters (should now work)
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error = EN_setoption(ph, EN_PRESS_UNITS, EN_METERS);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(units == EN_METERS);
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// Test 3: With US flow units, set pressure to kPa (should now work)
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error = EN_setoption(ph, EN_PRESS_UNITS, EN_KPA);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(units == EN_KPA);
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// Test 4: Change to SI flow units (LPS) but keep kPa pressure
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error = EN_setflowunits(ph, EN_LPS);
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BOOST_REQUIRE(error == 0);
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// Pressure units should remain kPa (not auto-changed to meters)
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error = EN_getoption(ph, EN_PRESS_UNITS, &units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(units == EN_KPA);
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// Test 5: With SI flow units, set pressure to PSI (should now work)
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error = EN_setoption(ph, EN_PRESS_UNITS, EN_PSI);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(units == EN_PSI);
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// Test 6: Run simulation and check pressure values are correctly converted
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error = EN_openH(ph);
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BOOST_REQUIRE(error == 0);
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error = EN_initH(ph, EN_NOSAVE);
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BOOST_REQUIRE(error == 0);
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error = EN_runH(ph, &t);
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BOOST_REQUIRE(error == 0);
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// Get pressure in PSI (should be ~43.33 PSI for 100 ft head)
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error = EN_getnodevalue(ph, 1, EN_PRESSURE, &p);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(abs(p - 43.33) < 1.e-5);
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// Change pressure units to meters during simulation
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error = EN_setoption(ph, EN_PRESS_UNITS, EN_METERS);
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BOOST_REQUIRE(error == 0);
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// Pressure should now be in meters (~30.48 m for 100 ft head)
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error = EN_getnodevalue(ph, 1, EN_PRESSURE, &p);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(abs(p - 30.48) < 1.e-5);
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error = EN_closeH(ph);
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BOOST_REQUIRE(error == 0);
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}
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BOOST_FIXTURE_TEST_CASE(test_automatic_pressure_unit_switching, FixtureInitClose)
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{
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int index;
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double pressure_units;
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// Create basic network
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error = EN_addnode(ph, "R1", EN_RESERVOIR, &index);
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BOOST_REQUIRE(error == 0);
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error = EN_setnodevalue(ph, index, EN_ELEVATION, 100);
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BOOST_REQUIRE(error == 0);
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error = EN_addnode(ph, "J1", EN_JUNCTION, &index);
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BOOST_REQUIRE(error == 0);
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error = EN_addlink(ph, "P1", EN_PIPE, "R1", "J1", &index);
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BOOST_REQUIRE(error == 0);
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// Test 1: Start with US flow units (CFS) - should have PSI pressure units
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error = EN_setflowunits(ph, EN_CFS);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_PSI);
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// Test 2: Change from US flow units (CFS) to metric flow units (LPS)
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// Pressure units should automatically change from PSI to METERS
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error = EN_setflowunits(ph, EN_LPS);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_METERS);
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// Test 3: Change from metric flow units (LPS) back to US flow units (GPM)
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// Pressure units should automatically change from METERS to PSI
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error = EN_setflowunits(ph, EN_GPM);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_PSI);
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// Test 4: Change from US flow units (GPM) to another metric flow unit (MLD)
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// Pressure units should automatically change from PSI to METERS
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error = EN_setflowunits(ph, EN_MLD);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_METERS);
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// Test 5: Manually set pressure units to kPa while using metric flow units
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error = EN_setoption(ph, EN_PRESS_UNITS, EN_KPA);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_KPA);
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// Test 6: Change from metric flow units (MLD) to US flow units (MGD)
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// Pressure units should automatically change from kPa to PSI
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error = EN_setflowunits(ph, EN_MGD);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_PSI);
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// Test 7: Change from US flow units (MGD) to metric flow units (CMH)
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// Pressure units should automatically change from PSI to METERS
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error = EN_setflowunits(ph, EN_CMH);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_METERS);
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// Test 8: Set pressure to kPa again with metric flow units
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error = EN_setoption(ph, EN_PRESS_UNITS, EN_KPA);
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BOOST_REQUIRE(error == 0);
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// Test 9: Change between metric flow units (CMH to CMD)
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// Pressure units should remain kPa (not changed to METERS since not switching from PSI)
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error = EN_setflowunits(ph, EN_CMD);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_KPA);
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// Test 10: Change from metric flow units (CMD) to US flow units (AFD)
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// Pressure units should automatically change from kPa to PSI
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error = EN_setflowunits(ph, EN_AFD);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_PSI);
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// Test 11: Change between US flow units (AFD to IMGD)
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// Pressure units should remain PSI
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error = EN_setflowunits(ph, EN_IMGD);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_PSI);
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// Test 12: Final test - metric flow units (CMS) should change PSI to METERS
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error = EN_setflowunits(ph, EN_CMS);
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BOOST_REQUIRE(error == 0);
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error = EN_getoption(ph, EN_PRESS_UNITS, &pressure_units);
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BOOST_REQUIRE(error == 0);
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BOOST_CHECK(pressure_units == EN_METERS);
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}
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BOOST_AUTO_TEST_SUITE_END()
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