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Experimental Investigation of Natural Convection in Trombe Wall Systems

机译:Trombe墙系统中自然对流的实验研究

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摘要

In this paper, experiments with a passive solar building with Trombe wall in the north cold climate are carried out and discussed, and the natural convection heat transfer process has been investigated. The relativity of the factors affecting indoor air temperature is analyzed with the stepwise regression method. The results indicate that thermo-circulation induced by the stack effect is the dominant factor. The natural convection in the channel is fairly complex; it changes from the laminar flow to the turbulent flow and the turbulent flow covers at least half the height of massive wall during the normal circulation. The flow in the channel is considered as natural convection between vertical plates. Analyzing the natural convection heat transfer process with the Rayleigh number and the mean Nusselt number, the thermo-circulation can be divided into three periods in the daytime: coast up, maintenance and weaken. During the maintenance period, the changes of the solar radiation intensity and surface temperatures have little effect on Nu number.
机译:本文对北方寒冷气候下的带有Trombe墙的被动式太阳能建筑物进行了实验和讨论,并研究了自然对流换热过程。采用逐步回归方法分析影响室内空气温度的因素的相关性。结果表明,烟囱效应引起的热循环是主导因素。通道中的自然对流相当复杂。它从层流变为湍流,在正常循环期间,湍流至少覆盖了块状壁的一半高度。通道中的流动被认为是垂直板之间的自然对流。用瑞利数和平均努塞尔数分析自然对流传热过程,白天的热循环可分为三个阶段:惯性上升,维持和减弱。在维护期间,太阳辐射强度和表面温度的变化对Nu的影响很小。

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