用粗网格投影方案加速快速流体动力学

Mingang Jin, W. Liu, Qingyan Chen
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引用次数: 21

摘要

快速流体动力学是一种中间模型,可以提供快速和信息丰富的建筑物气流模拟。虽然合理的模拟精度对快速流体动力学很重要,但计算效率是首要考虑的问题,进一步提高快速流体动力学速度是必要的。由于快速流体动力学中最耗时的部分是求解刚性压力方程,本研究提出了一种粗网格投影格式,该格式在细网格水平上求解动量方程,在粗网格水平上求解压力方程。因此,本研究探讨了在不同网格层之间绘制速度和压力信息的合适方法。为了评估粗网格投影快速流体动力学方法在模拟建筑物气流中的准确性和计算效率,本文以不同复杂性的建筑物气流为实验对象进行了实验。结果表明,粗网格投影方案不会对建筑物气流模拟中快速流体动力学的精度产生负面影响,并且可以显著降低模拟中出现的波动。粗网格投影方案能够将快速流体动力学的计算速度提高约1.5倍,因此采用粗网格投影方案的快速流体动力学的计算速度比计算流体动力学模型快30 ~ 50倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accelerating fast fluid dynamics with a coarse-grid projection scheme
Fast fluid dynamics is an intermediate model that can provide fast and informative building airflow simulations. Although reasonably good simulation accuracy is important for fast fluid dynamics, computational efficiency is the primary concern, and it is necessary to further increase fast fluid dynamics speed. Because the most time-consuming part of fast fluid dynamics is solving the stiff pressure equation, this study proposed the application of a coarse-grid projection scheme, which solves the momentum equation on the fine grid level and the pressure equation on the coarse grid level. Therefore, appropriate approaches for mapping velocity and pressure information between different grid levels were investigated in this study. To evaluate the accuracy and computational efficiency of fast fluid dynamics with the coarse-grid projection scheme in simulating building airflows, this study tested it with building airflows of varying complexity. The results showed that the coarse-grid projection scheme would not have a negative impact on the accuracy of fast fluid dynamics in the simulation of building airflows, and it could significantly reduce the fluctuations that occur within the simulations. The coarse-grid projection scheme was able to accelerate fast fluid dynamics by approximately 1.5 times, and thus fast fluid dynamics with the coarse-grid projection scheme achieved a computing speed that was 30 to 50 times faster than computational fluid dynamics models.
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来源期刊
HVAC&R Research
HVAC&R Research 工程技术-工程:机械
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