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Solar stills coupled with solar collectors and storage tank-analytical simulation and experimental validation of energy behavior

机译:太阳能蒸馏器与太阳能收集器和储罐耦合-能量行为的分析模拟和实验验证

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摘要

The behavior of a conventional greenhouse-type solar still coupled with hot water storage tank heated by a solar collector field is investigated by a series of extensive testing, on the base of which a simple and efficient mathematical model is theoretically and experimentally evaluated. The "input-output" model relates main climatic data and oper-ating conditions of the solar distillation system with distilled water output in daily and night base with linear equations using characteristic coefficients. Evaluation of the method is performed in three steps, the first being experimental determination of the coefficients followed by prediction of output, the second being calculation of coefficient values through analytical relations and the third being the use of the model in a continuous way. The agreement between the predicted and experimental water production and also between experimental and theoretical values of the characteristic parameters reveals the validity and suitability of the developed method. Furthermore, the validity of the method is also proved for the case of the theoretical and experimental variation of the depth of still basin water. The results of the investigation show that this method can be a valuable tool used during the design of similar solar distillation systems for their optimization and also for evaluation of test results of such existing installations in order to further improve it.
机译:通过一系列广泛的测试,研究了常规温室式太阳能仍然与由集热器场加热的热水储罐耦合的行为,在此基础上,对简单有效的数学模型进行了理论和实验评估。 “输入-输出”模型将太阳能蒸馏系统的主要气候数据和运行条件与日,夜基础上的蒸馏水输出进行了关联,并使用了具有特征系数的线性方程式。该方法的评估分三个步骤进行,第一步是实验确定系数,然后预测输出,第二步是通过分析关系计算系数值,第三步是以连续方式使用模型。预测的和实验的产水量之间以及特征参数的实验和理论值之间的一致性揭示了所开发方法的有效性和适用性。此外,该方法的有效性在静盆水深度的理论和实验变化情况下也得到了证明。调查结果表明,该方法可以是在类似的太阳能蒸馏系统的设计过程中使用的一种有价值的工具,可以优化它们,并可以评估此​​类现有设备的测试结果,以进一步改进它。

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