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Assessment of Transient CFD Techniques for Virtual Thermal Manikins' Breathing Simulations

机译:虚拟热人体屏幕呼吸模拟的瞬态CFD技术评估

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摘要

A qualitative cross-analysis of three different computational fluid dynamics transient modelling techniques ("Unsteady Reynolds Averaged Navier Stokes - URANS", "Detached Eddies Simulations - DES" and "Large Eddies Simulations - LES") for flow simulation with virtual thermal manikins is presented. The interaction between the free convection flow, resulting from the heated manikin's surface, and the exhalation/inhalation flow is modelled, under controlled room conditions. It has been shown in recent studies of the authors, that the steady-state simulations lead to over-prediction of the resultant velocity and temperature fields. For this reason, the implementation of transient simulation methods is recommended and implemented in the presented study, however, without validation with measured data. The comparison of temperature and velocity fields is the basis for the qualitative analyses made between the different simulation techniques. The achieved results in this qualitative assessment provide novel and valuable information on the integration of numerous simulation techniques. This is supported by the fact that these virtual thermal manikins represent complex assessment tools for virtual design of the human thermal comfort, as well as for virtual analyses of indoor air quality. In general, the numerical results showed a good correlation between the different techniques, especially for the exhalation stage from the breathing cycle, in the breathing zone of the manikin. Furthennore, in both DES and LES methods, significant flow similarities were demonstrated in the zones dominated by the manikin's free convection, while, for the URANS simulations, a sensible refraction of the thermal plume was observed in the zone above the head with shifting of almost 0.4 m.
机译:提出了三种不同计算流体动力学的定性交叉分析。由加热的Manikin的表面产生的自由对流流程之间的相互作用,并在受控室条件下进行建模和呼气/吸入流。在最近对作者的研究中显示出,稳态模拟导致由所得速度和温度场的过度预测。因此,建议使用瞬态仿真方法的实现,并在呈现的研究中实现,而不使用测量数据验证。温度和速度场的比较是不同仿真技术之间的定性分析的基础。在这种定性评估中实现的结果提供了关于众多模拟技术的集成的新颖和有价值的信息。这些虚拟热马尼克斯代表了用于虚拟设计的人类热舒适性的复杂评估工具,以及室内空气质量的虚拟分析,这得到了支持。通常,数值结果表明,不同技术与来自呼吸循环的呼气阶段之间的呼气阶段之间的良好相关性,在Manikin的呼吸区中。在Des和Les方法中,在Manikin的自由对流主导地位的区域中证明了重大流动相似之处,而对于乌兰斯模拟,在头部上方的区域中观察到热羽流的明智折射0.4米。

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