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Energy consumption analysis intended for real office space with energy recovery ventilator by integrating BES and CFD approaches

机译:通过结合BES和CFD方法,使用能量回收呼吸机对真实办公空间进行能耗分析

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摘要

This study aims to analyze the energy conservation performance of real office space with an energy recovery ventilator (ERV) and to investigate the effect of the arrangement of air supply and exhaust openings. Three types of ventilation systems were chosen for the analysis of coupling computational fluid dynamics (CFD) program with building energy simulation (BES) software. The adoption of mutually complementary boundary conditions for CFD and BES provides more accurate and complete information of air flow distribution and thermal performance in office space. Field measurement was also carried out in a typical office space situated in the middle story of a building to validate the numerical results by measurement data. The office space chosen for this analysis was equipped with air-conditioners on the ceiling with intake of fresh air directly via a heat recovery ventilation system. Its thermal performance and indoor air flow distribution predicted by the coupled method were compared under three types of ventilation system. When the supply and exhaust openings for ERV were arranged on the ceiling, there were no critical differences between the predictions of the CFD-BES coupled method and BES alone on the energy consumption of the HVAC system. On the other hand, discrepancy between the results simulated by the CFD -BES coupled method and BES alone could be clearly found in the case of under-floor-type ventilation system. The discrepancy emphasizes the effectiveness and impact of integrating CFD and BES approaches when non-uniform temrjerature distribution, that is. thermal stratification, is formed in snace.
机译:这项研究的目的是使用能量回收呼吸机(ERV)分析实际办公空间的节能性能,并研究供气和排气口布置的影响。选择了三种类型的通风系统,用于与建筑能耗模拟(BES)软件进行耦合计算流体动力学(CFD)程序的分析。 CFD和BES采用相互补充的边界条件,可提供有关办公空间中气流分布和热性能的更准确和完整的信息。还在建筑物中间层的典型办公空间中进行了现场测量,以通过测量数据验证数值结果。选择进行分析的办公室空间在天花板上装有空调,并通过热量回收通风系统直接吸入新鲜空气。在三种通风系统下,比较了用耦合方法预测的热性能和室内气流分布。当将ERV的供气和排气口布置在天花板上时,CFD-BES耦合方法的预测与单独的BES的预测在暖通空调系统的能耗之间没有关键差异。另一方面,在地板下式通风系统的情况下,可以清楚地发现通过CFD -BES耦合方法模拟的结果与单独使用BES的结果之间存在差异。差异强调当温度分布不均匀时,即将CFD和BES方法集成在一起的有效性和影响。热分层,形成网状。

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