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Study of air movement and temperature distribution in a greenhouse used as a dryer

机译:研究用作干燥机的温室中的空气流动和温度分布

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Sun drying is the oldest way to preserve but also to valorize and store surplus agricultural production. Nowadays, several types of dryers have been developed, but the solar greenhouse dryer is an ideal solution in our tropical countries because of its implicit and higher load capacity. The greenhouse climate depends on several factors, namely the outdoor climatic conditions (air temperature, wind speed, radiation, etc.) but also on the type of materials used to cover the greenhouse. The study was carried out on a parabolic greenhouse covered by a polyethylene film with a concrete base (absorber) which in turn is placed on the ground and will be tested under the climatic conditions of Dakar, Senegal. It is in this context of sustainable development that this work is carried out. The goal is to determine the distribution of temperatures and wind speeds in the greenhouse. The simulation was carried out using the three-dimensional computer fluid dynamics software (CFD). The turbulence method (k-ε) was used and to solve the radiation transfer equation (RTE) we introduce the discrete ordered method DO. We also add the “Solar Load Model” which gives the position of the sun and its radiations in relation to the layout of the greenhouse according to the date and time of the simulation. The simulation is carried out in a closed greenhouse and the results found can be used to improve the design and control of the greenhouse climate. Air temperatures and velocities simulation give an average of 325.95 K and 0.114 m/s respectively.
机译:晒太阳既是最古老的保存方式,又是平衡和存储剩余农业生产的方式。如今,已经开发了几种类型的干衣机,但是由于其隐性和更高的负载能力,日光温室干衣机在我们的热带国家是理想的解决方案。温室气候取决于几个因素,即室外气候条件(气温,风速,辐射等),还取决于用于覆盖温室的材料类型。这项研究是在一个抛物面温室上进行的,该温室由聚乙烯薄膜覆盖,上面有一个混凝土基底(吸收剂),然后将其放在地面上,并将在塞内加尔达喀尔的气候条件下进行测试。正是在这种可持续发展的背景下开展这项工作。目的是确定温室中温度和风速的分布。使用三维计算机流体动力学软件(CFD)进行了模拟。使用了湍流方法(k-ε),并且为了解决辐射传递方程(RTE),我们引入了离散有序方法DO。我们还添加了“太阳能负载模型”,该模型根据模拟的日期和时间给出了太阳及其辐射相对于温室布局的位置。模拟是在封闭的温室中进行的,发现的结果可用于改善温室气候的设计和控制。空气温度和速度模拟分别得出平均325.95 K和0.114 m / s。

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