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Thermal modeling of double slope wick-type solar still with different thickness insulation absorption of wick surface

机译:具有不同厚度绝缘吸收芯吸的双斜率芯吸式太阳能蒸馏器的热模型

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A double slope wick-type solar still has been designed and fabricated with varying thickness of insulation beneath the tilted-wick portion and optimum thickness for effective distillation has been presented. Energy balance equations have been written for each element of the still including the climatic parameters such as solar radiation intensity and ambient temperature and design parameters of the proposed system, Theoretical equations have been developed for heat and mass transfer mechanisms inside the still. The efficiency of the still is found to be 41.25% for the insulation thickness of 0.05m beneath the tilted-wick portion and sides of the still. It is confirmed that the bottom and sides of the wick-type solar still should be thermally insulated with a minimum thickness of 0.05m for better production and performance.
机译:设计和制造了一种双斜度芯吸式太阳能蒸馏器,其倾斜芯吸部分下方的绝缘层厚度各不相同,并且提出了有效蒸馏的最佳厚度。已针对蒸馏器的每个元素编写了能量平衡方程,包括气候参数(例如太阳辐射强度和环境温度)以及拟议系统的设计参数。已针对蒸馏器内部的传热和传质机理开发了理论方程式。发现在倾斜芯部和蒸馏器侧面下方的0.05m绝缘厚度下,蒸馏器的效率为41.25%。已经确认,灯芯型太阳能蒸馏器的底部和侧面应进行热绝缘,最小厚度为0.05m,以提高生产和性能。

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