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EVALUATION OF STORAGE CONFIGURATIONS WITH INTERNAL HEAT EXCHANGERS

机译:带有内部换热器的存储配置的评估

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An international standard, ISO/DP 9459-4A, 1996 has been proposed to establish a uniform standard of quality for small solar heating systems. In this proposal, system components are tested separately and total system performance is calculated using system simulations based on validated component model parameter values. Another approach is to test the whole system in operation under representative conditions, where the results can be used as a measure of the general system performance. Component testing and system simulation is flexible, but requires an accurate and reliable simulation model. The advantage of system testing is that it is not dependent on simulations and that it shows the actual system performance. Its disadvantage is that it is restricted to the boundary conditions for the test. The heat store is a key component concerning system performance. Thus, this work focuses on the storage system consisting of store, electrical auxiliary heater, internal heat exchangers (solar and load loops) and tempering valve. Four different storage system configurations with a volume of 7501 were tested in an indoor system test using a statistically generated six-day test sequence and a solar collector simulator. A store component test and system simulation was carried out on one of the four configurations, applying the proposed standard for stores, ISO/DP 9459-4A, 1996 and the MULTIPORT store model. Three test sequences for internal load side heat exchangers, not in the proposed ISO standard, were also carried out. This paper discusses the results of the indoor system test, the store component test, the validation of the store model parameter values and the system simulations.
机译:已经提出了国际标准ISO / DP 9459-4A,1996,以为小型太阳能采暖系统建立统一的质量标准。在此建议中,将分别测试系统组件,并使用基于已验证组件模型参数值的系统仿真来计算系统的总体性能。另一种方法是在有代表性的条件下测试整个系统的运行状况,其中的结果可以用作衡量总体系统性能的指标。组件测试和系统仿真很灵活,但是需要一个准确而可靠的仿真模型。系统测试的优点是它不依赖于仿真,并且可以显示实际的系统性能。它的缺点是它仅限于测试的边界条件。热量存储是有关系统性能的关键组件。因此,这项工作的重点是存储系统,包括存储,辅助电加热器,内部热交换器(太阳能和负载回路)和回火阀。在室内系统测试中,使用统计生成的六天测试序列和太阳能收集器模拟器,对容量为7501的四种不同存储系统配置进行了测试。对商店的四个组成部分之一进行了商店组件测试和系统仿真,应用了商店建议的标准ISO / DP 9459-4A,1996和MULTIPORT商店模型。还对内部负载侧热交换器进行了三个测试程序,这些程序不在建议的ISO标准中。本文讨论了室内系统测试,商店组成部分测试,商店模型参数值的验证以及系统仿真的结果。

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