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A Numerical Study of Refrigerant Dispersion in Single and Multiple Connected Spaces

机译:单连通空间和多连通空间中制冷剂扩散的数值研究

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摘要

While the possible impact of refrigerant leaks and subsequent dispersion in an occupied space pertains to a wide variety of applications, dynamic models that accurately describe dispersion phenomena in the built environment have not been extensively explored in the literature. This paper builds on previously published work (Laughman et al. 2015) by assessing the performance of well-mixed models via a comparison to computational fluid dynamics simulations and studying the behavior of refrigerant dispersion in multiple connected spaces. Results indicate that the well-mixed models are not able to capture variation in the geometric parameters accurately and should be used cautiously. The studies of the dynamics in multiple spaces highlight the importance of the location of ventilation sources and sinks.
机译:尽管制冷剂泄漏和随后在占用空间中扩散的可能影响涉及广泛的应用,但在文献中尚未广泛探索能准确描述建筑环境中扩散现象的动态模型。本文是基于先前发表的工作(Laughman等人,2015年),通过与计算流体动力学模拟进行比较并评估制冷剂在多个连通空间中的扩散行为,评估了充分混合模型的性能。结果表明,充分混合的模型不能准确地捕获几何参数的变化,应谨慎使用。对多个空间中动力学的研究突出了通风源和水槽位置的重要性。

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  • 来源
    《ASHRAE Transactions》 |2016年第1期|210-222|共13页
  • 作者单位

    Mitsubishi Electric Research Laboratories, Cambridge, MA;

    Mitsubishi Electric Research Laboratories, Cambridge, MA;

    Mitsubishi Electric Research Laboratories, Cambridge, MA;

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  • 正文语种 eng
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