Mathematical modeling of the heat exchange in a stepped solar still

Nourhan Badawy
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Abstract

A mathematical model for investigating warm performance of the ventured sunlight based still which is not performed in most of the previous studies. is developed in this study. Based on the proposed model, a computer program (using Pascal language) is carried out. A stepped solar still consists of five small steps(0.002 m depth, 0.2 m width and 1.0 m length). The effect of configuration parameters on the stepped productivity and efficiency such as the still width (b_s), depth of water (d_w), tray width (W) and the height of tray (H) is considered. Comparing thermal performance of the stepped solar still with that of the conventional one shows that the stepped solar still is more efficient. Correlations of the got results with those introduced in the past investigations have been done, prompt an approving the proposed mathematical model. The outcomes show that, the every day productivities for the traditional and ventured sun based stills are discovered to be 4.0 and 4.51 (kg/m2day); separately. The Daily productivity of the regular and ventured sunlight based stills are 61.48% and 81.85%, individually.
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阶梯式太阳能蒸馏器热交换的数学建模
建立了一个数学模型,用于研究基于冒险阳光的蒸馏器的温暖性能,这在以前的大多数研究中没有得到实现。在本研究中得到发展。在此基础上,用Pascal语言编写了相应的计算机程序。阶梯式太阳能仍然由五个小台阶组成(0.002米深,0.2米宽,1.0米长)。考虑了静液宽度(b_s)、水深(d_w)、托盘宽度(W)和托盘高度(H)等配置参数对阶梯生产率和效率的影响。将阶梯式太阳能蒸馏器与传统太阳能蒸馏器的热性能进行比较,结果表明阶梯式太阳能蒸馏器效率更高。将所得到的结果与以往的研究结果进行了比较,并对所提出的数学模型进行了验证。结果表明,传统和冒险的太阳蒸馏器的日生产率分别为4.0和4.51 (kg/m2day);分开。常规和冒险的阳光蒸馏器的日生产率分别为61.48%和81.85%。
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