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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >A methodology to design and predict operation of a solar collector for a solar-powered desalination unit using the SMCEC principle
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A methodology to design and predict operation of a solar collector for a solar-powered desalination unit using the SMCEC principle

机译:使用SMCEC原理设计和预测太阳能淡化装置的太阳能集热器运行的方法

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摘要

A methodology is proposed to design and predict operation of a solar collector for the desalination unit using the SMCEC principle. The corresponding dynamic model developed from the thermal energy and mass balances is based in the double infinite temperature hypothesis for the fluid and the absorber. This model represents an extension of the one-temperature model presented in a previous paper [1]. Two numerical methods are used for solving the corresponding model. The first method uses the well-known finite difference method, while the second solves the equations by using the functional approximation method. Experimental validation is carried out on the solar collector and the whole desalination unit to determine which of the two methods is most suited for theses studies. The good results confirm that the new theoretical model resolved with the orthogonal collocation method represents better the real behavior of the system and can be used to investigate the effect of various parameters on the performance of the collector and the production of the desalination unit.
机译:提出了一种使用SMCEC原理设计和预测用于海水淡化装置的太阳能集热器运行的方法。由热能和质量平衡建立的相应动力学模型基于流体和吸收器的双重无限温度假说。该模型代表了先前论文[1]中提出的单温度模型的扩展。使用两种数值方法求解相应的模型。第一种方法使用众所周知的有限差分法,第二种方法使用泛函逼近法求解方程。在太阳能收集器和整个脱盐装置上进行了实验验证,以确定这两种方法中最适合这些研究的方法。良好的结果证明,用正交配置法解决的新理论模型更好地代表了系统的真实行为,可用于研究各种参数对收集器性能和脱盐装置生产的影响。

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