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Uniform segment-wise body parametric convection heat transfer coefficient model for sitting posture in vehicles

机译:车辆姿势均匀分段 - 方便体参数传热系数模型

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摘要

In many industrial multi-physics engineering applications, models need to capture the heat transfer effects of spatial and temporal changes in conditions around the human body. For thermal comfort assessment, convection heat transfer coefficients (h(c)) form part of the heat balance equation of the human body. In many non-uniform flow conditions, due to the turbulently mixed or stratified environment, convection heat transfer varies significantly on the human body. Parametric, segment-wise applicable convection heat transfer correlations are seen as an alternative in order to bridge these scales and levels in space and time. Therefore, robust reduced-order convective heat transfer models are needed for predicting heat transfer between the human body and its surroundings. The main goal of this research is to develop a reduced order model database that provides the segment-wise convective heat transfer coefficients (h(c)) for typical indoor flow responses in multiple applications. In this article, a new parametric approach was detailed for estimating segment-wise body convection heat transfer coefficients for sitting posture in vehicles. The methodology follows a new strategy, i.e., in this application domain, here a car cabin, primarily relevant parameters are identified which affect the convective heat exchange. Following the sensitivity analysis of numerous computational fluid dynamics simulations with varying conditions, we identify relevant primary variables and heat transfer coefficients correlations and test the model robustness accordingly. A database-driven approach is developed in order to make correlations accessible during simulations, for example addressing energy performance. Finally, the experimentally investigated heat transfer analysis around the human body is presented and later compared with numerically reproduced data.
机译:在许多工业多物理工程应用中,模型需要捕获人体周围条件的空间和时间变化的传热效应。对于热舒适性评估,对流传热系数(H(c))形成人体的热平衡方程的一部分。在许多不均匀的流动条件下,由于湍流混合或分层的环境,对流热传递在人体上显着变化。参数,分段适用的对流传热相关性被视为替代,以便在空间和时间内弥合这些尺度和水平。因此,需要稳健的减少的对流传热模型来预测人体和周围环境之间的热传递。本研究的主要目标是开发一种减少的订单模型数据库,该数据库提供了多种应用中的典型室内流量响应的段明智的对流传热系数(H(C))。在本文中,详细介绍了一种新的参数方法,用于估计车辆姿势的分段型体对流传热系数。该方法遵循一个新的策略,即,在本申请领域中,这里识别出基于相关参数的汽车舱,这影响了对流热交换。在具有变化条件的许多计算流体动力学模拟的敏感性分析之后,我们识别相关的主要变量和传热系数相关性并相应地测试模型鲁棒性。开发了一种数据库驱动的方法,以便在仿真期间进行相关性,例如寻址能量性能。最后,与数值转载的数据相比,呈现了人体周围的实验研究的传热分析。

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