138 lines
4.1 KiB
Dart
138 lines
4.1 KiB
Dart
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import 'dart:math';
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import 'package:energy/models/CalculateModels.dart';
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import 'package:flutter_test/flutter_test.dart';
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void main() {
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CalculateModels model = CalculateModels();
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const double startHeight = 10;
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const double endHeight = 20;
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const double startVelocity = 0;
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const double endVelocity = 100;
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const double weight = 50;
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const double gravity = 9.81;
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const double waterHeatCapacity = 4.181; //unit: J / (g * C°)
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const double ironHeatCapacity = 0.439; //unit: J / (g * C°)
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resetModel() {
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model.setWeight(0);
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model.setStartVelocity(0);
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model.setEndVelocity(0);
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model.setStartHeight(0);
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model.setEndHeight(0);
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}
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group("Testing EnergyBilanceModel", () {
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test("initial calculations", () {
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expect(0, model.potentialEnergy);
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expect(0, model.kineticEnergy);
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expect(0, model.deltaVelocity);
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expect(0, model.deltaHeight);
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expect(0, model.amountOfGlowingIronInKg);
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expect(0, model.amountOfBoilingWaterInL);
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resetModel();
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});
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test("deltaHeight", () {
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model.setStartHeight(startHeight);
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model.setEndHeight(endHeight);
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expect(endHeight - startHeight, model.deltaHeight);
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resetModel();
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});
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test("deltaVelocity", () {
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model.setStartVelocity(startVelocity);
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model.setEndVelocity(endVelocity);
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expect(endVelocity - startVelocity, model.deltaVelocity);
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resetModel();
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});
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test("potentialEnergy", () {
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model.setStartHeight(startHeight);
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model.setEndHeight(endHeight);
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//without weight
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expect(0, model.potentialEnergy);
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model.setWeight(weight);
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expect(weight * gravity * model.deltaHeight, model.potentialEnergy);
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//kinetic energy should still be zero
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expect(0, model.kineticEnergy);
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resetModel();
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});
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test("kineticEnergy", () {
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resetModel();
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model.setStartVelocity(startVelocity);
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model.setEndVelocity(endVelocity);
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//without weight
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expect(0, model.kineticEnergy);
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model.setWeight(weight);
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expect(weight * pow(model.deltaVelocity, 2) / 2, model.kineticEnergy);
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//kinetic energy should still be zero
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expect(0, model.potentialEnergy);
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resetModel();
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});
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test("amountOfBoilingWaterInL", () {
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model.setWeight(weight);
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model.setStartVelocity(startVelocity);
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model.setEndVelocity(endVelocity);
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double shouldAmountWithKineticEnergy = (model.potentialEnergy + model.kineticEnergy) / waterHeatCapacity / 80 / 1000;
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expect(shouldAmountWithKineticEnergy, model.amountOfBoilingWaterInL);
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resetModel();
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model.setWeight(weight);
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model.setStartHeight(startHeight);
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model.setEndHeight(endHeight);
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double shouldAmountWithPotentialEnergy = (model.potentialEnergy + model.kineticEnergy) / waterHeatCapacity / 80 / 1000;
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expect(shouldAmountWithPotentialEnergy, model.amountOfBoilingWaterInL);
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model.setStartVelocity(startVelocity);
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model.setEndVelocity(endVelocity);
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double shouldAmountWithBoth = (model.potentialEnergy + model.kineticEnergy) / waterHeatCapacity / 80 / 1000;
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expect(shouldAmountWithBoth, model.amountOfBoilingWaterInL);
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resetModel();
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});
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test("amountOfGlowingIronInKg", () {
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model.setWeight(weight);
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model.setStartVelocity(startVelocity);
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model.setEndVelocity(endVelocity);
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double shouldAmountWithKineticEnergy = (model.potentialEnergy + model.kineticEnergy) / ironHeatCapacity / 680 / 1000;
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expect(shouldAmountWithKineticEnergy, model.amountOfGlowingIronInKg);
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resetModel();
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model.setWeight(weight);
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model.setStartHeight(startHeight);
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model.setEndHeight(endHeight);
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double shouldAmountWithPotentialEnergy = (model.potentialEnergy + model.kineticEnergy) / ironHeatCapacity / 680 / 1000;
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expect(shouldAmountWithPotentialEnergy, model.amountOfGlowingIronInKg);
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model.setStartVelocity(startVelocity);
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model.setEndVelocity(endVelocity);
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double shouldAmountWithBoth = (model.potentialEnergy + model.kineticEnergy) / ironHeatCapacity / 680 / 1000;
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expect(shouldAmountWithBoth, model.amountOfGlowingIronInKg);
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resetModel();
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});
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});
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}
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