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Inter-model, analytical, and experimental validation of a heat balance based residential cooling load calculation procedure.

机译:基于热平衡的住宅制冷负荷计算程序的模型间,分析和实验验证。

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Scope and method of study. A systematic validation of the ASHRAE heat balance based residential cooling load calculation procedure (RHB) has been performed with inter-model comparison, analytical verification and experimental validation. The inter-model validation was performed using ESP-r as the reference model. The testing process was automated through parametric generation and simulation of large sets of test cases for both RHB and ESP-r. The house prototypes covered include a simple Shoebox prototype and a real 4-bedroom house prototype. An analytical verification test suite for building fabric models of whole building energy simulation programs has been developed. The test suite consists of a series of sixteen tests covering convection, conduction, solar irradiation, long-wave radiation, infiltration and ground-coupled floors. Using the test suite, a total of twelve analytical tests have been done with the RHB procedure. The experimental validation has been conducted using experimental data collected from a Cardinal Project house located in Fort Wayne, Indiana. During the diagnostic process of the experimental validation, comparisons have also been made between ESP-r simulation results and experimental data.; Findings and conclusions. It is concluded RHB is acceptable as a design tool on a typical North American house. Analytical tests confirmed the underlying mechanisms for modeling basic heat transfer phenomena in building fabric. The inter-model comparison showed that the differences found between RHB and ESP-r can be traced to the differences in sub-models used by RHB and ESP-r. It also showed that the RHB-designed systems can meet the design criteria and that the RHB temperature swing option is helpful in reducing system over-sizing. The experimental validation demonstrated that the systems designed with the method will have adequate size to meet the room temperatures specified in the design, whether or not swing is utilized. However, actual system operation may cause deviations in the room temperatures, particularly in the slave rooms. For better prediction of these deviations, simulation or a better approximation for interzone airflows and heat transfers would be needed. The RHB procedure may be said to give cooling loads that are as accurate as the inputs and real-life uncertainties inputs will be more significant than errors that caused by the method.
机译:研究范围和方法。通过模型间比较,分析验证和实验验证,对基于ASHRAE热平衡的住宅制冷负荷计算程序(RHB)进行了系统验证。使用ESP-r作为参考模型进行模型间验证。通过对RHB和ESP-r的大量测试用例的参数生成和仿真,测试过程是自动化的。涵盖的房屋原型包括一个简单的Shoebox原型和一个真正的四居室房屋原型。已经开发了用于整个建筑能源模拟程序的建筑模型的分析验证测试套件。该测试套件包含一系列十六项测试,涵盖对流,传导,太阳辐射,长波辐射,渗透和地面耦合地板。使用该测试套件,通过RHB程序总共进行了十二项分析测试。实验验证是使用从印第安纳州韦恩堡市红衣主教项目房屋中收集的实验数据进行的。在实验验证的诊断过程中,还对ESP-r仿真结果和实验数据进行了比较。结论和结论。可以得出结论,RHB在典型的北美房屋中可以用作设计工具。分析测试证实了用于建模建筑织物中基本传热现象的基本机制。模型间的比较表明,RHB和ESP-r之间发现的差异可以追溯到RHB和ESP-r使用的子模型中的差异。它还表明,RHB设计的系统可以满足设计标准,并且RHB温摆选项有助于减少系统的尺寸过大。实验验证表明,使用该方法设计的系统将具有足够的尺寸,以满足设计中指定的室温,而无论是否使用摆幅。但是,实际的系统操作可能会导致房间温度的偏差,尤其是在从属房间中。为了更好地预测这些偏差,将需要对区域间气流和传热进行模拟或更好地近似。可以说,RHB程序可提供与输入一样精确的冷却负荷,而实际不确定性输入将比该方法引起的误差更为重要。

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