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Analytical and comparative testing of EnergyPlus using IEA HVAC BESTEST E100-E200 test suite

机译:使用IEA HVAC BESTEST E100-E200测试套件对EnergyPlus进行分析和比较测试

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The EnergyPlus building energy simulation software has been tested using the IEA HVAC BESTEST E100-E200 series of tests. The volume 1 final report for the International Energy Agency (IEA) solar heating and cooling programme task 22 building energy simulation test and diagnostic method for heating, ventilating, and air conditioning equipment models (HVAC BESTEST) was recently published in January 2002. HVAC BESTEST is a series of steady-state tests for a single-zone DX cooling system. Cases range from dry to wet coil, low to high part load, and low to high temperatures. This published test suite includes three sets of analytical solutions and results from several other simulation programs for comparison. This test suite was initially used to test EnergyPlus beginning with beta versions prior to its official public release, and it is also applied as an ongoing quality assurance test. The application of these tests proved to be very useful in several ways: 1. revealed input model shortcomings, which resulted in new user inputs being added; 2. revealed reporting errors which were fixed; 3. revealed algorithmic errors which were fixed; 4. revealed algorithmic shortcomings which were improved or eliminated through the use of more rigorous calculations for certain components; 5. in later versions, caught newly introduced bugs before public release of updates. Overall, the application of this test suite has been extremely useful in debugging and verifying the DX cooling algorithms in EnergyPlus. This paper summarizes the difficulties encountered and the benefits gained in applying the tests.
机译:EnergyPlus建筑能耗模拟软件已使用IEA HVAC BESTEST E100-E200系列测试进行了测试。国际能源机构(IEA)太阳能供热和制冷计划任务22建筑供热,通风和空调设备模型的能源模拟测试和诊断方法(HVAC BESTEST)的第1卷最终报告最近于2002年1月发布。HVAC BESTEST是针对单区域DX冷却系统的一系列稳态测试。情况从干线圈到湿线圈,部分负载从低到高以及从低温到高温不等。该发布的测试套件包括三套分析解决方案,以及来自其他几个模拟程序的结果以进行比较。该测试套件最初用于从官方发布之前的Beta版本开始测试EnergyPlus,并且还被用作正在进行的质量保证测试。这些测试的应用在几种方面被证明是非常有用的:1.揭示输入模型的缺点,这导致添加了新的用户输入; 2.揭示已修复的报告错误; 3.揭示固定的算法错误; 4.揭示了通过对某些组件使用更严格的计算可以改善或消除的算法缺陷; 5.在更高版本中,在公共发布更新之前捕获了新引入的错误。总体而言,该测试套件的应用对于在EnergyPlus中调试和验证DX冷却算法非常有用。本文总结了在应用测试中遇到的困难和获得的好处。

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