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Co-simulation strategy of transient CFD and heat transfer in building thermal envelope based on calibrated heat transfer coefficients

机译:基于校准传热系数的建筑物热包层瞬态CFD和传热的联合仿真策略

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The paper presents a strategy to develop a fully transient numerical model of a heat transfer in building, using a transient CFD model of indoor air and a thermal envelope model, running in a co-simulation. The strategy relies on the utilization of RANS with a high-Re turbulence model and a wall function, which enables to use a coarse computational mesh limiting the computational time. Since wall functions give invalid heat transfer coefficients in thermally developing indoor air regions and the exact location of these regions is not known in indoor spaces, a new air-wall heat transfer calibration procedure is adopted in the co-simulation. It is assumed that there is a uniform surface-averaged and time-dependent heat transfer coefficient per surface, extracted from the CFD solution. The calibration procedure is based on the near-wall mesh density adjustment to obtain surface-average heat transfer coefficients close to those calculated from empirical relationships for natural and forced convection. No local heat transfer coefficients are checked and no dimensionless wall distances y~+ are monitored during the simulation. Due to the calibration it is ensured that the average air-wall heat transfer rate is accurate despite the use of wall functions. The capabilities of the model developed based on the strategy are presented in the case study: the analysis of the influence of wall thermal capacitance on indoor environment in a single well-ventilated room.
机译:本文提出了一种策略,该方法使用室内空气的瞬态CFD模型和热包络模型在联合仿真中运行,从而开发出建筑物中传热的全瞬态数值模型。该策略依赖于具有高Re湍流模型和墙函数的RANS的利用,这使得能够使用粗糙的计算网格来限制计算时间。由于壁函数会在热发展的室内空气区域中给出无效的传热系数,并且这些区域的确切位置在室内空间中未知,因此在联合仿真中采用了新的气壁传热校准程序。假定从CFD解决方案中提取出的每个表面具有均匀的表面平均和时间相关的传热系数。校准程序基于近壁网格密度调整,以获取与通过自然对流和强制对流的经验关系式计算得出的表面平均传热系数相近的表面平均传热系数。在仿真过程中,没有检查局部传热系数,也没有监测无量纲的壁距y〜+。由于进行了校准,因此即使使用了壁功能,也可以确保平均空气壁传热速率是准确的。在案例研究中介绍了基于该策略开发的模型的功能:分析壁热电容对单个通风良好房间内室内环境的影响。

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