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Effect of furniture and partitions on the surface temperatures in an office under forced flow

机译:强制流动下家具和隔板对办公室表面温度的影响

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Computational Fluid Dynamics (CFD) simulations were performed to study the effects of surfaces typically found in an office, such as partitions and desks, on the temperatures of the surfaces surrounding the occupants. An accurate estimation of these temperatures is needed to assess the thermal comfort conditions in a space, thus ensuring that the occupants are satisfied with their thermal environment. A parameter quantifying the area available to convect heat to the air was proposed to account for the effect of surfaces of different sizes and positions. A higher amount of available convective area was found to decrease the temperatures of the surfaces in the room, and vice versa. Although the air temperature also increased with additional available convective area, this change was found to be small (typically below 15%). Moreover, the shape of the air temperature profile far from the surfaces remained unchanged when changing the amount of available convective area. Therefore, the operative temperature that the occupants experience is lower in spaces with a large amount of available convective area. Expressions to estimate the temperatures of the surfaces, generally within +/- 10% of the air temperature rise in the space, were proposed. These expressions can be useful during the early stages of the design process, when CFD simulations are impractical and the exact location and type of furniture in a space are not well known. Together with a model to predict the air temperature profile, these correlations can improve the accuracy of thermal comfort assessment. (C) 2017 Elsevier B.V. All rights reserved.
机译:进行了计算流体动力学(CFD)模拟,以研究通常在办公室(例如隔板和书桌)中发现的表面对乘员周围表面温度的影响。需要精确估算这些温度,以评估空间中的热舒适条件,从而确保乘员对他们的热环境感到满意。为了解决不同尺寸和位置的表面的影响,提出了一个参数,该参数量化了可用于将空气对流的对流区域。发现大量可用的对流区域会降低房间表面的温度,反之亦然。尽管空气温度也随着对流面积的增加而增加,但发现这种变化很小(通常低于15%)。此外,当改变可用对流区域的量时,远离表面的空气温度分布图的形状保持不变。因此,在具有大量可用对流区域的空间中,乘员所经历的工作温度较低。提出了用于估计表面温度的表达式,通常在空间中空气温度上升的+/- 10%之内。这些表达式在设计过程的早期阶段很有用,当CFD模拟不切实际并且空间中家具的确切位置和类型未知时。这些相关性与预测空气温度曲线的模型一起可以提高热舒适性评估的准确性。 (C)2017 Elsevier B.V.保留所有权利。

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