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"simplified_bf", + "condenser_type": "air", + "compressor_type": "scroll", + "compressor_speed": "constant/variable", + "ref_cap": 128951.257028, + "ref_cap_unit": "W", + "full_eff": 10.1, + "full_eff_unit": "cop", + "sim_engine": "energyplus", + "full_eff_ref_std": "ahri_340/360", + "full_eff_ref_std_alt": null, + "part_eff": 13.9, + "part_eff_ref_std": "ahri_340/360", + "part_eff_ref_std_alt": null, + "min_outdoor_fan_power": 746.0, + "max_outdoor_fan_power": 746.0, + "fan_power_unit": "si", + "set_of_curves": { "eir-f-t": { "out_var": "eir-f-t", "type": "bi_quad", - "coeff1": -0.1635113, - "coeff2": 0.1222397, - "coeff3": -0.0037107, - "coeff4": -0.0070372, - "coeff5": 0.0005052, - "coeff6": -0.0002069, - "x_min": 13.89, - "x_max": 22.22, - "y_min": 23.89, - "y_max": 51.67, + "coeff1": 0.4709557586813028, + "coeff2": 0.028392185953363742, + "coeff3": -0.00011076975474567322, + "coeff4": -0.001230763287000332, + "coeff5": 0.0008180178548593264, + "coeff6": -0.0014115666910603526, + "x_min": 14.038888888888891, + "x_max": 24.03888888888889, + "y_min": 24.03888888888889, + "y_max": 46.26111111111112, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9974196483116204 + }, + "cap-f-t": { + "out_var": "cap-f-t", + "type": "bi_quad", + "coeff1": 0.8647540870117313, + "coeff2": -0.010911520075175424, + "coeff3": 0.0011348947604120792, + "coeff4": 0.004728071800153216, + "coeff5": -0.00012097402597405042, + "coeff6": -9.014582977999192e-05, + "x_min": 14.038888888888891, + "x_max": 24.03888888888889, + "y_min": 24.03888888888889, + "y_max": 46.26111111111112, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9989219992353233 + }, + "eir-f-ff": { + "out_var": "eir-f-ff", + "type": "cubic", + "coeff1": 1.365504478570421, + "coeff2": -0.7593020832806349, + "coeff3": 0.47463775788925405, + "coeff4": -0.10534316684878409, + "coeff5": 0, + "coeff6": 0, + "x_min": 0.6666666666666666, + "x_max": 1.6666666666666667, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9987984601577456 + }, + "cap-f-ff": { + "out_var": "cap-f-ff", + "type": "cubic", + "coeff1": 0.5551948051948042, + "coeff2": 0.9248376623376641, + "coeff3": -0.5551948051948064, + "coeff4": 0.12272727272727302, + "coeff5": 0, + "coeff6": 0, + "x_min": 0.6666666666666666, + "x_max": 1.6666666666666667, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9999530170125136 + }, + "plf-f-plr": { + "out_var": "plf-f-plr", + "type": "quad", + "coeff1": 0, + "coeff2": 0, + "coeff3": 1.0, + "x_min": 0.0, + "x_max": 1.0, "out_min": null, "out_max": null, - "coeff7": 0.0, - "coeff8": 0.0, - "coeff9": 0.0, - "coeff10": 0.0, "ref_ect": 35, "units": "si" + } + }, + "fan_control_mode": null, + "fan_power": null, + "ref_gross_cap": 18101.22, + "ref_net_cap": null, + "ref_gross_cap_unit": "si", + "ref_net_cap_unit": "si" + }, + "48_50P090": { + "eqp_type": "UnitaryDirectExpansion", + "source": "Carrier", + "model": "simplified_bf", + "condenser_type": "air", + "compressor_type": "scroll", + "compressor_speed": "constant/variable", + "ref_cap": 271300.0472495276, + "ref_cap_unit": "W", + "full_eff": 9.8, + "full_eff_unit": "cop", + "sim_engine": "energyplus", + "full_eff_ref_std": "ahri_340/360", + "full_eff_ref_std_alt": null, + "part_eff": 14.225, + "part_eff_ref_std": "ahri_340/360", + "part_eff_ref_std_alt": null, + "min_outdoor_fan_power": 746.0, + "max_outdoor_fan_power": 746.0, + "fan_power_unit": "si", + "set_of_curves": { + "eir-f-t": { + "out_var": "eir-f-t", + "type": "bi_quad", + "coeff1": 0.5468231663825215, + "coeff2": 0.006280524576549846, + "coeff3": 8.01344225818503e-05, + "coeff4": 0.006288801452616652, + "coeff5": 0.0005725672241121121, + "coeff6": -0.0009484762178044934, + "x_min": 14.038888888888891, + "x_max": 24.03888888888889, + "y_min": 24.03888888888889, + "y_max": 46.26111111111112, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9992855579762162 + }, + "cap-f-t": { + "out_var": "cap-f-t", + "type": "bi_quad", + "coeff1": 0.745898467898534, + "coeff2": 0.010311057563792215, + "coeff3": 0.0007115172413903665, + "coeff4": 0.001525634323560622, + "coeff5": -6.600000000103398e-05, + "coeff6": -0.0002298968105101367, + "x_min": 14.038888888888891, + "x_max": 24.03888888888889, + "y_min": 24.03888888888889, + "y_max": 46.26111111111112, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9994414769473897 }, "eir-f-ff": { "out_var": "eir-f-ff", + "type": "cubic", + "coeff1": 1.305220641889475, + "coeff2": -0.598168140419201, + "coeff3": 0.33421206270776244, + "coeff4": -0.0672554093004229, + "coeff5": 0, + "coeff6": 0, + "x_min": 0.8, + "x_max": 1.6, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9999627587380864 + }, + "cap-f-ff": { + "out_var": "cap-f-ff", + "type": "cubic", + "coeff1": 0.6140586419847779, + "coeff2": 0.7406764403406699, + "coeff3": -0.39544753087032036, + "coeff4": 0.0787680041164478, + "coeff5": 0, + "coeff6": 0, + "x_min": 0.8, + "x_max": 1.6, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9999990099710763 + }, + "plf-f-plr": { + "out_var": "plf-f-plr", "type": "quad", - "coeff1": 1.5272381, - "coeff2": -0.965285, - "coeff3": 0.4418485, - "x_min": 0.75, - "x_max": 1.175, + "coeff1": 0, + "coeff2": 0, + "coeff3": 1.0, + "x_min": 0.0, + "x_max": 1.0, "out_min": null, "out_max": null, - "coeff7": 0.0, - "coeff8": 0.0, - "coeff9": 0.0, - "coeff10": 0.0, "ref_ect": 35, "units": "si" + } + }, + "fan_control_mode": null, + "fan_power": null, + "ref_gross_cap": 18101.22, + "ref_net_cap": null, + "ref_gross_cap_unit": "si", + "ref_net_cap_unit": "si" + }, + "48_50P075HC": { + "eqp_type": "UnitaryDirectExpansion", + "source": "Carrier", + "model": "simplified_bf", + "condenser_type": "air", + "compressor_type": "scroll", + "compressor_speed": "constant/variable", + "ref_cap": 226083.3727030551, + "ref_cap_unit": "W", + "full_eff": 9.8, + "full_eff_unit": "cop", + "sim_engine": "energyplus", + "full_eff_ref_std": "ahri_340/360", + "full_eff_ref_std_alt": null, + "part_eff": 14.225, + "part_eff_ref_std": "ahri_340/360", + "part_eff_ref_std_alt": null, + "min_outdoor_fan_power": 746.0, + "max_outdoor_fan_power": 746.0, + "fan_power_unit": "si", + "set_of_curves": { + "eir-f-t": { + "out_var": "eir-f-t", + "type": "bi_quad", + "coeff1": 0.6671143720310171, + "coeff2": 0.009084366330596285, + "coeff3": -7.444246111081888e-05, + "coeff4": -0.0024286898882957537, + "coeff5": 0.0006034075405606668, + "coeff6": -0.0007066668572601534, + "x_min": 14.038888888888891, + "x_max": 24.03888888888889, + "y_min": 24.03888888888889, + "y_max": 46.26111111111112, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9990799994343172 + }, + "cap-f-t": { + "out_var": "cap-f-t", + "type": "bi_quad", + "coeff1": 0.777249534982342, + "coeff2": 0.0014028145535460842, + "coeff3": 0.0009224958258055572, + "coeff4": 0.003190254515442016, + "coeff5": -6.060000000226496e-05, + "coeff6": -0.0002461294559190719, + "x_min": 14.038888888888891, + "x_max": 24.03888888888889, + "y_min": 24.03888888888889, + "y_max": 46.26111111111112, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9993299575198348 + }, + "eir-f-ff": { + "out_var": "eir-f-ff", + "type": "cubic", + "coeff1": 1.2469156934884889, + "coeff2": -0.4614578901909252, + "coeff3": 0.23613331969607554, + "coeff4": -0.04160040018995609, + "coeff5": 0, + "coeff6": 0, + "x_min": 0.7466666666666667, + "x_max": 1.6, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9995717025188156 + }, + "cap-f-ff": { + "out_var": "cap-f-ff", + "type": "cubic", + "coeff1": 0.686696345530009, + "coeff2": 0.5257924956188318, + "coeff3": -0.18449267247829548, + "coeff4": 0.016427302320270176, + "coeff5": 0, + "coeff6": 0, + "x_min": 0.7466666666666667, + "x_max": 1.6, + "out_min": null, + "out_max": null, + "ref_ect": 35, + "units": "si", + "rho": 0.9995445573140064 }, "plf-f-plr": { "out_var": "plf-f-plr", "type": "quad", - "coeff1": 0.85, - "coeff2": 0.15, - "coeff3": 0.0, + "coeff1": 0, + "coeff2": 0, + "coeff3": 1.0, "x_min": 0.0, "x_max": 1.0, "out_min": null, "out_max": null, - "coeff7": 0.0, - "coeff8": 0.0, - "coeff9": 0.0, - "coeff10": 0.0, "ref_ect": 35, "units": "si" } @@ -2317,6 +3985,8 @@ "fan_control_mode": null, "fan_power": null, "ref_gross_cap": 18101.22, - "ref_net_cap": null + "ref_net_cap": null, + "ref_gross_cap_unit": "si", + "ref_net_cap_unit": "si" } } \ No newline at end of file diff --git a/copper/unitarydirectexpansion.py b/copper/unitarydirectexpansion.py index f9d4fa6..6cfc704 100644 --- a/copper/unitarydirectexpansion.py +++ b/copper/unitarydirectexpansion.py @@ -3,7 +3,6 @@ ==================================== This is the unitary direct expansion (DX) HVAC equipment module of Copper. The module handles all calculations and data manipulation related to unitary DX equipment. """ - import CoolProp.CoolProp as CP from copper.generator import * from copper.units import * @@ -17,6 +16,7 @@ equipment_references = json.load( open(os.path.join(location, "data", "equipment_references.json"), "r") ) +log_fan = False class UnitaryDirectExpansion(Equipment): @@ -25,7 +25,8 @@ def __init__( full_eff, full_eff_unit, compressor_type, - compressor_speed, + compressor_speed="constant", + ref_cap_unit="si", fan_power=None, part_eff=0, ref_gross_cap=None, @@ -39,6 +40,7 @@ def __init__( condenser_type="air", fan_control_mode="constant_speed", ): + global log_fan self.type = "UnitaryDirectExpansion" if model != "simplified_bf": logging.error("Model must be 'simplified_bf'") @@ -51,7 +53,9 @@ def __init__( if fan_power == None: fan_power = 0.28434517 * ref_net_cap * 400 * 0.365 / 1000 # This is 400 cfm/ton and 0.365 W/cfm. Equation 11.1 from AHRI 210/240. - logging.info(f"Default fan power used: {fan_power} kW") + if not log_fan: + logging.info(f"Default fan power used: {fan_power} kW") + log_fan = True ref_gross_cap = ref_net_cap + fan_power else: if ref_net_cap != None: @@ -65,10 +69,19 @@ def __init__( * (ref_gross_cap / 1000) / (1 + 0.28434517 * 400 * 0.365) ) - logging.info(f"Default fan power used: {fan_power} kW") + if not log_fan: + logging.info(f"Default fan power used: {fan_power} kW") + log_fan = True ref_net_cap = ref_gross_cap - fan_power - self.ref_net_cap = ref_net_cap - self.ref_gross_cap = ref_gross_cap + self.ref_cap_unit = ref_cap_unit + if self.ref_cap_unit != "si": + ref_net_cap_ton = Units(value=ref_net_cap, unit=self.ref_cap_unit) + self.ref_net_cap = ref_net_cap_ton.conversion(new_unit="kW") + ref_gross_cap_ton = Units(value=ref_gross_cap, unit=self.ref_cap_unit) + self.ref_gross_cap = ref_gross_cap_ton.conversion(new_unit="kW") + else: + self.ref_net_cap = ref_net_cap + self.ref_gross_cap = ref_gross_cap self.fan_power = fan_power self.full_eff = full_eff self.full_eff_unit = full_eff_unit @@ -82,6 +95,8 @@ def __init__( self.part_eff_ref_std_alt = part_eff_ref_std_alt self.condenser_type = condenser_type self.fan_control_mode = fan_control_mode + self.compressor_speed = compressor_speed + self.ref_cap_unit = ref_cap_unit # Define rated temperatures # air entering drybulb,air entering wetbulb, outdoor enter, outdoor leaving aed, aew, ect, lct = self.get_rated_temperatures() diff --git a/tests/test_unitarydirectexpansion.py b/tests/test_unitarydirectexpansion.py index f589a52..9b8593f 100644 --- a/tests/test_unitarydirectexpansion.py +++ b/tests/test_unitarydirectexpansion.py @@ -17,34 +17,61 @@ def test_calc_eff_ect(self): compressor_type="scroll", condenser_type="air", compressor_speed="constant", + ref_cap_unit="si", ref_gross_cap=471000, full_eff=5.89, full_eff_unit="cop", part_eff_ref_std="ahri_340/360", model="simplified_bf", sim_engine="energyplus", - set_of_curves=lib.get_set_of_curves_by_name("0").curves, + set_of_curves=lib.get_set_of_curves_by_name("D208122216").curves, fan_control_mode="constant_speed", ) - cop_1 = 7.16 + cop_1 = 7.4 cop_2 = round(DX.calc_rated_eff(), 2) self.assertTrue(cop_1 == cop_2, f"{cop_1} is different than {cop_2}") - def test_calc_eff_ect_error(self): - ############## - # Todo test case for error outputs - pass + def test_model_type_error(self): + lib = cp.Library(path=DX_lib) + with self.assertLogs(level="ERROR") as log: + with self.assertRaises(ValueError) as cm: + DX = cp.UnitaryDirectExpansion( + compressor_type="scroll", + condenser_type="air", + compressor_speed="constant", + ref_gross_cap=471000, + full_eff=5.89, + full_eff_unit="cop", + part_eff_ref_std="ahri_340/360", + model="simplified", + sim_engine="energyplus", + set_of_curves=lib.get_set_of_curves_by_name("D208122216").curves, + fan_control_mode="constant_speed", + ) + self.assertEqual(str(cm.exception), "Model must be 'simplified_bf'") + self.assertIn("ERROR", log.output[0]) + self.assertIn("Model must be 'simplified_bf'", log.output[0]) - ## Test case for ieer_to_eer function: - def test_ieer_to_eer(self): + def test_both_capacity_inputs_provided(self): lib = cp.Library(path=DX_lib) - DX = cp.UnitaryDirectExpansion( - compressor_type="scroll", - compressor_speed="constant", - full_eff=5.89, - full_eff_unit="cop", - ref_net_cap=50000.0, - ) - ieer = 15.0 - eer = DX.ieer_to_eer(ieer) - self.assertTrue(round(eer, 0) == 12, f"{eer} is within a reasonable range") + with self.assertLogs(level="ERROR") as log: + with self.assertRaises(ValueError) as cm: + DX = cp.UnitaryDirectExpansion( + compressor_type="scroll", + condenser_type="air", + compressor_speed="constant", + ref_gross_cap=471000, + ref_net_cap=471000, + full_eff=5.89, + full_eff_unit="cop", + part_eff_ref_std="ahri_340/360", + model="simplified_bf", + sim_engine="energyplus", + set_of_curves=lib.get_set_of_curves_by_name("D208122216").curves, + fan_control_mode="constant_speed", + ) + self.assertEqual( + str(cm.exception), "Input must be one and only one capacity input" + ) + self.assertIn("ERROR", log.output[0]) + self.assertIn("Input must be one and only one capacity input", log.output[0])