Experimental investigation of different air heating methods near to the evaporation surface in closed triangular shape unit powered by solar energy, one stage – Indoor experiment
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Experimental investigation of different air heating methods near to the evaporation surface in closed triangular shape unit powered by solar energy, one stage – Indoor experiment

机译:近三角形单元靠近蒸发表面的不同空气加热方法的实验研究,通过太阳能,阶段室内实验

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HighlightsA solar still with continuous and discontinuous air heating have been investigated.A comparison between two modes of air heating and conventional still is carried out.Discontinuous way enhances the efficiency by 5% and distillate production by 19%.Energy consumption for air heating is 5% high than the conventional still.AbstractMost of the studies that are made on the solar desalination are focusing on enhancing its productivity by changing the temperature of the solar still, using two methods: either heating water and air or cooling the walls. Each solution is affecting the other; heat increases the temperature of the cold surfaces and vice versa.The originality of this experimental work that falls within the same field of productivity enhancement of the solar desalination is using different air heating modes (time range) next to the evaporation surface in closed triangular shape, one stage. The manipulation consists of air heating without overheating the cold surfaces; this could be possible, using the pulse heating. The setup constructed and tested through indoor experiments, in the shade, where different heat pulses are investigated, while changing the duration of the pulse.The results show that a particular combination of the pulse duration gives an efficiency enhancement of 5% in comparison to the one without air heating. And a distillate production increase of 19%, using a minor energy investment that doesn’t exceed 5%.]]>
机译:<![cdata [ 亮点 已经研究了仍然具有连续和不连续的空气加热的太阳能。 两种模式之间的比较进行空气加热和常规仍在进行。 不连续的方式将效率提高5%并馏分产量达到19%。 空气热量的能耗g比传统仍然高5%。 抽象 大多数在太阳海水淡化上制作的研究专注于通过改变太阳的温度来提高其生产率,使用两种方法:加热水和空气或冷却墙壁。每个解决方案都会影响另一个解决方案;热量会增加冷表面的温度,反之亦然。 这个实验工作的原创性落在同一领域内的这种实验工作太阳脱盐的生产率增强是在闭合三角形形状的蒸发表面旁边使用不同的空气加热模式(时间范围),一个阶段。操纵由空气加热组成,而不会过热冷表面;这可以使用脉冲加热来实现这一点。通过室内实验构造和测试的设置,在阴影中,在调查不同的热脉冲的情况下,同时改变脉冲的持续时间所有“>结果表明,与没有空气加热的单一的脉冲持续时间的特定组合使5%的效率提高。使用不超过5%的次要能源投资,馏分产量增加19%。 ]]>

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