自然通风温室热行为的数值模拟

IF 1.4 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
Yassine Slatni, M. Djezzar, Tarek Messai, Mahfoud Brahim
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引用次数: 1

摘要

在温室里,白天,温度上升得很快,而植物必须面对超过35摄氏度的温度。这种植物关闭毛孔以限制出汗并停止生长。因此,一旦天气变热,就必须给温室通风。在这种背景下,本研究旨在研究自然通风对隧道温室内部气候的影响,隧道温室在屋顶上有两个开口。考虑了开口位置对传热的影响,从而促进光合作用和植物生长。采用有限体积法离散了涡度输运方程、泊松方程和能量方程。对稳态层流进行了二维模拟。研究了一系列参数的流量:瑞利数Ra、[公式:见正文]和三个开启通风位置。结果表明,通过顶部开口位置的通风可以在温室内的空气和大气之间产生最佳的热交换,这有助于在有利的气候下保护植物,使其生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of thermal behavior in a naturally ventilated greenhouse
Inside a greenhouse, during the day, the temperature rises very quickly, while the plants have to face temperatures that rise to more than 35[Formula: see text]C. The plant closes its pores to limit sweating and stops growing. As soon as it gets hot, it is therefore necessary to ventilate the greenhouse. In this context, this research aims to investigate the behavior of the natural ventilation on the internal climate of the tunnel greenhouse, which contains two openings in the roof. The effect of the position of the openings on heat transfer is considered, thus promoting photosynthesis and plant growth. The vorticity transport equation, the Poisson equation and the energy equation are discretized by using the finite volume method. Two-dimensional simulations that described laminar flows in a steady state were carried out. Flows are studied for a range of parameters: the Rayleigh number, Ra, [Formula: see text], and three positions of opening ventilation. The results reveal that the ventilation through the top opening position allows the best creation of heat exchanges between the air inside the greenhouse and its atmosphere, which serves to conserve the plant under a favorable climate that allows its growth.
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来源期刊
CiteScore
2.10
自引率
15.40%
发文量
27
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