利用直流热水器和光伏板提高外冷和PCM单坡太阳能蒸馏器的性能

S. Kumaravel, M. Nagaraj, G. Bharathiraja
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摘要

它是一种新型多级太阳能淡水系统,使用光伏(PV)加热器。在太阳能蒸馏器的下盆底部发现了一层重达15公斤的石蜡作为相变材料(石蜡)。对该系统进行了研究,以评估其在改善淡水方面的有效性。使用太阳射线和直流(DC)热水器来预热盐水。设计了收集冷凝蒸汽的表面,例如顶部的单个玻璃盖和两个堆叠托盘的底部。这样做的目的是通过降低冷凝阻力来提高淡水生产的效率。利用冷却水喷头的流速,降低了玻璃罩的极热。淋浴器冷却水的流速、加热器的冲击以及下盆水的深度都是研究的因素。太阳辐射、石蜡、加热器输入的热量在创新太阳能脱盐中发现成正比。多级效应光伏加热器(MSEPVH)每天可以产生惊人的18升蒸馏水。采用数学模型和实验相结合的方法,计算了最佳时段的最大可能冷却水流量、淡水总量和MSEPVH的有效性。
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Performance Improvement of Single Slope Solar Still with Exterior Cooling and PCM Using Direct Current Water Heaters and Photovoltaic Panels
It is a new multi-stage solar freshwater system that uses a photovoltaic (PV) heater. A layer of paraffin wax weighing 15 kg as a phase change material (Paraffin wax) was found at the bottom of the solar still's down basin. Research into the system has been conducted to assess its effectiveness at improving freshwater. Solar rays and a direct current (DC) water heater were used to preheat the saltwater. Surfaces that collect condensation vapor were planned for, such as the single glass lid on top and the bottom of two stacked trays. The purpose of doing so is to make freshwater production more efficient by lowering the resistance of condensation. The extreme heat of the glass cover was reduced by using velocity of cooling water shower. The flow velocity of the shower's cooling water, the impact of the heater, and the depth of lower basin water are all factors included in the research. Solar radiation, paraffin wax, heater input heat found to be proportionate in the innovative solar desalination. An astounding 18 liters per day of distilled water may be generated by the Multiple Stage Effect Photovoltaic Heater (MSEPVH). Both mathematical modelling and experimental were used to calculate the maximum possible cooling water flow rate, the total amount of freshwater, and the effectiveness of MSEPVH on the best possible day.
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