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Thermodynamic analysis and improvement of a novel solar driven atmospheric water generator

机译:新型太阳能驱动大气水发生器的热力学分析与改进

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摘要

In this study, an improved novel solar driven atmospheric water generator device has been proposed to generate more water with less power usage. The system consisting of three parts: solar driven ammonia absorption refrigeration cycle, saline water desalination cycle and air dehumidification cycle. The system generates water from two great water sources simultaneously with equal power input to common AWG (Atmospheric Water Generator). Thermodynamic analysis of system has been done by parametric analysis of sub series cycles. The device performance curves have been introduced according to results. These curves can be used to determine the water generation of the improved novel AWG device in every place (or City) with having air relative humidity, and temperature of desired location. The performance of improved novel AWG device was analyzed in four cities of Iran. AWG water generation rate in case cities improved averagely about 165% by improvement process.
机译:在这项研究中,已经提出了一种改进的新颖的太阳能驱动的大气水产生器装置,其以更少的电力消耗产生更多的水。该系统由三部分组成:太阳能驱动的氨吸收制冷循环,盐水脱盐循环和空气除湿循环。该系统同时从两个主要水源中产生水,并以相等的功率输入到普通AWG(大气水生成器)中。系统的热力学分析已通过子系列循环的参数分析完成。根据结果​​介绍了器件性能曲线。这些曲线可用于确定具有空气相对湿度和所需位置温度的每个位置(或城市)的新型AWG改进设备的产水量。在伊朗的四个城市中,对改进的新型AWG设备的性能进行了分析。通过改进过程,城市中AWG的产水率平均提高了约165%。

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