论文标题
大型模拟以定义自然通风流量的特定建筑物相似性关系
Large-eddy simulations to define building-specific similarity relationships for natural ventilation flow rates
论文作者
论文摘要
自然通气可以在防止空气传播疾病在室内环境中的传播中发挥重要作用。但是,量化自然通风流量是一项艰巨的任务,因为在驱动流动的边界条件下有很大的变化。在当前的研究中,我们提出并验证使用计算流体动力学(CFD)在可变条件下评估自然通风流量的有效策略,考虑到在茂密的城市贫民窟中的单室房屋的测试案例。该方法将无量纲通风速率表征与无量纲通风的函数Richardson数量和风向。首先,针对全尺度的通风率测量,高保真大型仿真预测得到了验证。接下来,比较具有相同的理查森数量但不同的风速和温度的模拟,以验证提出的相似性关系。最后,基于32 LES确定相似关系的功能形式。对全尺度测量结果的替代模型的验证表明,在复杂的城市环境中,提出的策略可以有效地为自然通风流量提供准确的特定建筑物相似性关系。
Natural ventilation can play an important role towards preventing the spread of airborne diseases in indoor environments. However, quantifying natural ventilation flow rates is a challenging task due to significant variability in the boundary conditions that drive the flow. In the current study, we propose and validate an efficient strategy for using computational fluid dynamics (CFD) to assess natural ventilation flow rates under variable conditions, considering the test case of a single-room home in a dense urban slum. The method characterizes the dimensionless ventilation rate as a function of the dimensionless ventilation Richardson number and the wind direction. First, the high-fidelity large-eddy simulation predictions are validated against full-scale ventilation rate measurements. Next, simulations with identical Richardson numbers, but varying dimensional wind speeds and temperatures, are compared to verify the proposed similarity relationship. Last, the functional form of the similarity relationship is determined based on 32 LES. Validation of the surrogate model against full-scale measurements demonstrates that the proposed strategy can efficiently inform accurate building-specific similarity relationships for natural ventilation flow rates in complex urban environments.