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MODELING THERMAL COMFORT IN STRATIFIED ENVIRONMENTS

机译:分层环境中的热舒适性

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Some HVAC systems save energy by creating stratified air temperature distributions in which the occupied lower regions are cooler and the upper regions warmer. Comfort standards prescribe a 3°C limit to vertical stratification,independent of where the mean temperature is relative to the comfort zone. This paper evaluates thermal comfort in stratified environments using a model developed to predict local thermal sensation and comfort. The results indicate that near the center of the comfort zone, acceptable stratification is up to 7°C, considerably larger than the 3°C limit imposed by standards. As the mean temperature moves from the center of the comfort zone, the acceptable stratification becomes smaller. At the lower and upper ends of the comfort zone, even a small amount of stratification causes cool feet or warm head discomfort. We briefly explore the potential of using local air motion to reduce local discomfort in highly stratified conditions.
机译:一些HVAC系统通过产生分层的空气温度分布来节省能量,其中占用的下部区域是冷却的,上部区域升温。舒适标准规定3°C限制垂直分层,与平均温度相对于舒适区的位置无关。本文使用开发的模型来评估分层环境中的热舒适性,以预测局部热敏和舒适性。结果表明,在舒适区的中心附近,可接受的分层高达7°C,比标准施加的3°C限制大得多。随着平均温度从舒适区的中心移动,可接受的分层变小。在舒适区的下端和上端,即使是少量分层也会导致凉爽的脚或温暖的头部不适。我们简要探讨了在高度分层条件下使用本地空气运动来减少局部不适的潜力。

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