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Hourly Calculation Method of Air Source Heat Pump Behavior

机译:空气源热泵性能的每小时计算方法

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The paper describes an hourly simplified model for the evaluation of the energy performance of heat pumps in cooling mode maintaining a high accuracy and low computational cost. This approach differs from the methods used for the assessment of the overall energy consumption of the building, normally placed in the so-called white or black box models, where the transient conduction equation is deterministically and stochastically solved, respectively. The present method wants to be the expression of the grey box model, taking place between the previous approaches. The building envelope is defined using a building thermal model realized with a 3 Resistance 1 Capacitance (3R1C) thermal network based on the solution of the lumped capacitance method. The simplified model evaluates the energy efficiency ratio (EER) of a heat pump through the determination of the hourly second law efficiency of a reversed Carnot cycle. The results of the simplified method were finally compared with those provided by EnergyPlus, a dynamic building energy simulation program, and those collected from an outdoor test cell in real working conditions. The results are presented in temperatures and energy consumptions profiles and are validated using the Bland-Altman test.
机译:本文描述了一个每小时简化的模型,用于评估冷却模式下热泵的能量性能,并保持较高的准确性和较低的计算成本。该方法不同于通常用于所谓的白盒模型或黑盒模型的评估建筑物总体能耗的方法,在该模型中,分别确定性地和随机地求解了瞬态传导方程。本方法希望是灰盒模型的表达,发生在先前的方法之间。根据集总电容法的解决方案,使用通过3电阻1电容(3R1C)热网络实现的建筑物热模型来定义建筑物围护结构。简化模型通过确定反向卡诺循环的每小时第二定律效率来评估热泵的能效比(EER)。最后,将简化方法的结果与动态建筑能源模拟程序EnergyPlus提供的结果以及在实际工作条件下从室外测试单元收集的结果进行了比较。结果显示在温度和能耗曲线中,并使用Bland-Altman测试进行了验证。

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