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Development of a Thermal Environment Analysis Method for a Dwelling Containing a Colonnade Space through Coupled Energy Simulation and Computational Fluid Dynamics

机译:通过耦合能量模拟和计算流体动力学的储存空间的热环境分析方法的研制

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摘要

In building design, several approaches have been proposed for coupling computational fluid dynamics (CFD) and energy simulation (ES) to perform analyses of thermal environments. The unsteady analysis of thermal environments within buildings containing offices and colonnade spaces is difficult to perform using an ES that represents the space with a single mass point, owing to excessive predictive heat loss; therefore, CFD has typically been used instead. Although it is possible to divide the space into zones using ES, it leads to excessive predicted heat loss and the prediction of heat movement due to the influence of strong air currents, such as those associated with air conditioners. This behavior is observed because these zones are not detailed mesh divisions. To solve these problems, we proposed a method for calculating the ratio of heat contribution to zones that were pre-divided using CFD followed by the distribution of the total thermal load calculated by ES. In this study, we proposed a method for coupling ES and CFD, which enabled the unsteady analysis of a thermal environment in a large space and verified its accuracy.
机译:在建筑设计中,已经提出了用于耦合计算流体动力学(CFD)和能量模拟的几种方法来执行热环境的分析。由于过度的预测热损失,难以使用代表单个质量点的空间的ES来执行含有办公室和柱形空间内的热环境的不稳定分析。因此,通常已使用CFD。尽管可以使用ES将空间划分为区域,但由于与空调相关的那些,它导致过度预测的热量损失和对热运动的预测。观察到这种行为,因为这些区域不是详细的网格划分。为了解决这些问题,我们提出了一种计算使用CFD预先分开的热贡献与区的热贡献比率的方法,然后通过ES计算的总热负荷分布。在这项研究中,我们提出了一种耦合ES和CFD的方法,这使得在大空间中的热环境不稳定分析并验证了其精度。

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