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Coupled Simulation of Air-conditioning System and CFD Analysis for an Office Building

机译:办公大楼空调系统仿真与CFD分析耦合

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The integrated energy simulation (ES) tool BEST enables comprehensive energy conservation performance evaluations and the evaluation of various energy-saving measures in Japan.However, because the indoor space is modeled with one node for every zone, there are issues in evaluating room comfort and reproducing the behavior of air-conditioning systems as well as prediction accuracy in the case of energy-saving air conditioning systems, or when the spatial distribution of physical quantities in the room covers a particularly large space.For this reason, several previous studies have been carried out on the coupled simulation of air-conditioning systems and computational fluid dynamics (CFD).In this paper, outline of coupled simulation focusing on air-conditioning system modules within BEST and CFD analysis was shown and as a case study using this technique, we carried out the analysis for an existing office building in Japan.As a results, a BEST-CFD coupled simulation made it possible to reproduce in detail the primary energy consumption of air-conditioning and other facility apparatus, along with the behavior of the indoor environment.The standalone BEST calculations could not accurately predict the transitions of heat/air between zones, a difference occurred in the processed heat volume for each zone and the behavior of the air-conditioners in comparison to the coupled simulation.The coupled simulation verified that both the indoor environment and the heat processed by air-conditioning change in response changing the region subject to air-conditioning control.
机译:集成的能源模拟(ES)工具BEST可以在日本进行全面的节能性能评估和各种节能措施的评估。但是,由于室内空间是每个区域一个节点的模型,因此在评估房间舒适度和舒适性方面存在一些问题。因此,在节能空调系统中,或者当房间中物理量的空间分布覆盖特别大的空间时,可以重现空调系统的行为以及预测精度。因此,以前的一些研究已经开展。在空调系统和计算流体动力学(CFD)的耦合仿真中进行了研究。本文介绍了以BEST和CFD分析为重点的空调系统模块的耦合仿真概述,并作为使用此技术的案例研究,我们对日本现有的办公楼进行了分析。结果,BEST-CFD耦合模拟使我们能够详细介绍了空调和其他设施设备的主要能源消耗以及室内环境的行为。独立的BEST计算无法准确预测区域之间的热/空气转换,所处理的热量存在差异耦合模拟验证了室内环境和空调处理的热量均随空调控制区域的变化而变化。

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