159 lines
4.5 KiB
Swift
159 lines
4.5 KiB
Swift
import CoreModels
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import Foundation
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import Logging
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import Routes
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public extension HeatingBalancePoint.Request {
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func respond(logger: Logger) async throws -> HeatingBalancePoint.Response {
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switch self {
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case let .thermal(request):
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logger.debug("Calculating thermal balance point: \(request)")
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return try await request.respond(logger: logger)
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}
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}
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}
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private extension HeatingBalancePoint.Request.Thermal {
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static let heatPumpDeratingFactor = 0.014
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func respond(logger: Logger) async throws -> HeatingBalancePoint.Response {
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try validate()
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let (at47, at17) = getCapacities()
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let heatingDesignTemperature = getHeatingDesignTemperature()
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let buildingHeatLoss = getBuildingHeatLoss(designTemperature: heatingDesignTemperature)
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let balancePoint = await thermalBalancePoint(
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heatLoss: buildingHeatLoss,
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at47: at47,
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at17: at17,
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designTemperature: heatingDesignTemperature
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)
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let warnings = getWarnings()
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return .thermal(.init(
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capacityAt47: at47,
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capacityAt17: at17,
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balancePointTemperature: balancePoint,
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heatLoss: buildingHeatLoss,
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heatLossMode: self.buildingHeatLoss.mode,
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heatingDesignTemperature: heatingDesignTemperature,
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warnings: warnings
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))
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}
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func getWarnings() -> [String] {
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var warnings = [String]()
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if capacityAt17 == nil || capacityAt47 == nil {
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warnings.append(
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"Heat pump capacities are estimated based on system size - include actual capacities for higher accuracy."
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)
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}
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if case .estimated = buildingHeatLoss {
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warnings.append(
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"Building heat loss is estimated based on climate zone - include actual heat loss for higher accuracy"
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)
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}
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if heatingDesignTemperature == nil {
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warnings.append(
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"""
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Heating outdoor design temperature is based on average for climate zone - include outdoor design temperature
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for higher accuracy.
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"""
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)
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}
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return warnings
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}
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func getBuildingHeatLoss(designTemperature: Double) -> Double {
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switch buildingHeatLoss {
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case let .known(btu: btu): return btu
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case let .estimated(squareFeet: squareFeet):
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return squareFeet * climateZone!.averageHeatLossPerSquareFoot * (70 - designTemperature)
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}
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}
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func getCapacities() -> (at47: Double, at17: Double) {
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let at47 = capacityAt47 ?? systemSize * 12000
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let at17 = capacityAt17 ?? at47 * (1 - Self.heatPumpDeratingFactor * (47 - 17))
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return (at47, at17)
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}
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func getHeatingDesignTemperature() -> Double {
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guard let heatingDesignTemperature else {
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return climateZone!.averageHeatingDesignTemperature
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}
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return heatingDesignTemperature
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}
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func validate() throws {
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guard systemSize > 0 else {
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throw ValidationError(message: "System size should be greater than 0.")
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}
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switch buildingHeatLoss {
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case let .known(btu: btu):
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guard btu > 0 else {
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throw ValidationError(message: "Building heat loss btu's should be greater than 0.")
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}
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case let .estimated(squareFeet: squareFeet):
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guard squareFeet > 0 else {
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throw ValidationError(message: "Building squareFeet should be greater than 0.")
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}
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guard climateZone != nil else {
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throw ValidationError(message: "Climate zone is required when estimating heat loss.")
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}
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}
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if let capacityAt47 {
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guard capacityAt47 > 0 else {
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throw ValidationError(message: "Heat pump capacity @ 47 should be greater than 0.")
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}
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}
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if let capacityAt17 {
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guard capacityAt17 > 0 else {
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throw ValidationError(message: "Heat pump capacity @ 17 should be greater than 0.")
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}
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}
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}
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}
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extension ClimateZone {
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var averageHeatLossPerSquareFoot: Double {
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switch self {
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case .one: return 0.08
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case .two: return 0.1
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case .three: return 0.125
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case .four: return 0.15
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case .five: return 0.19
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case .six: return 0.25
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case .seven: return 0.3
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}
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}
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var averageHeatingDesignTemperature: Double {
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switch self {
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case .one: return 45
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case .two: return 35
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case .three: return 27
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case .four: return 17
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case .five: return 7
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case .six: return -5
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case .seven: return -15
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}
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}
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}
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private func thermalBalancePoint(
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heatLoss: Double,
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at47: Double,
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at17: Double,
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designTemperature: Double
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) async -> Double {
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(30.0 * (((designTemperature - 65.0) * at47) + (65.0 * heatLoss))
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- ((designTemperature - 65.0) * (at47 - at17) * 47.0))
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/ ((30.0 * heatLoss) - ((designTemperature - 65.0) * (at47 - at17)))
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}
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