Liu Shu-zhen, He Yong, Zhang Yu-bao, Miao Xiang-wen
School of Biosystems Engineering and Food Science, Zhejiang university, Hangzhou 310029, China.
J Zhejiang Univ Sci B. 2005 Jun;6(6):523-9. doi: 10.1631/jzus.2005.B0523.
The natural ventilation widely used in greenhouses has advantages of saving energy and reducing expense. In order to provide information for climate control of greenhouse, a model was developed to predict the variation of air temperature in the naturally ventilated greenhouse equipped with insect-proof screen. Roof ventilation and combined roof and sidewall ventilation were considered in the model. This model was validated against the results of experiments conducted in the greenhouse when the wind was parallel to the gutters. The model parameters were determined by the least squares method. In the used model, effects of wind speed and window opening height on the air temperature variation were analyzed. Comparison between two types of ventilation showed that there existed a necessary ventilation rate which results in air temperature decrease in natural ventilation under special climatic conditions. In our experiments when wind speed was less than 3.2 ms(-1), wind had a more gradual effect on greenhouse temperature for roof ventilation, compared with combined roof and sidewall ventilation, which had greater air temperature decrease than roof ventilation only.
温室中广泛使用的自然通风具有节能和降低成本的优点。为了给温室气候控制提供信息,开发了一个模型来预测配备防虫网的自然通风温室中的气温变化。该模型考虑了屋顶通风以及屋顶与侧壁组合通风。当风平行于檐沟时,该模型根据温室内进行的实验结果进行了验证。模型参数通过最小二乘法确定。在所使用的模型中,分析了风速和开窗高度对气温变化的影响。两种通风方式的比较表明,在特殊气候条件下,自然通风存在一个能使气温下降的必要通风率。在我们的实验中,当风速小于3.2米/秒时,与屋顶和侧壁组合通风相比,风对屋顶通风的温室温度影响更为平缓,屋顶和侧壁组合通风的气温下降幅度比仅屋顶通风更大。