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A novel merging Tubular Daylight Device with Solar Water Heater - Experimental study

机译:新型管状日光浴器与太阳能热水器的融合-实验研究

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摘要

Tubular Daylight device (TDD) and solar water heater (SWH) are two power saving solutions that are commonly employed individually in residential and industrial premises. This paper proposed a novel merged power saving system consisting of TDD and SWH in one model, which is the first attempt to integrate these two systems. The idea of merging the TDD with SWH is based on utilizing the existing area around the TDD to implement the SWH around the TDD tube through a serpentine collector. The main purpose for such integration is to enhance solar energy saving, space area saving, and to decrease the fabrication cost. The illumination and thermal performance of the new proposed model were tested and analysed experimentally in different seasons in Cairo - Egypt to assess its performance in practical use. The obtained results indicated that the merged system succeeded in transferring an acceptable illumination rate and increasing the water temperature. The transferred internal illuminance has reached approximately to 6.5 W/m(2) that fulfils the required needs of lighting. Additionally, the system increased the water temperature up to 62 degrees C, with a performance instantaneous efficiency that reached 21.17% which is very satisfactory. Furthermore, the performance of thermosyphon SWH with different serpentine collector coil number of turns has been evaluated. The results proved that, the collector number of turns has significantly affected the SWH performance in a directly proportional relation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:管状日光设备(TDD)和太阳能热水器(SWH)是两种节能解决方案,通常在住宅和工业场所中单独使用。本文提出了一种由TDD和SWH组成的新型合并式节能系统,这是将这两个系统集成在一起的首次尝试。将TDD与SWH合并的想法基于利用TDD周围的现有区域通过蛇形收集器实现TDD管周围的SWH。这种集成的主要目的是增强太阳能的节省,空间的节省并降低制造成本。在埃及开罗不同季节对新提出的模型的照明和热性能进行了测试和分析,以评估其在实际使用中的性能。所得结果表明,合并后的系统成功地传递了可接受的照度并提高了水温。传输的内部照度已达到约6.5 W / m(2),可满足所需的照明需求。此外,该系统将水温提高到62摄氏度,性能瞬时效率达到21.17%,非常令人满意。此外,已经评估了具有不同蛇形集电极线圈匝数的热虹吸管SWH的性能。结果证明,集电极匝数以正比例关系显着影响SWH性能。 (C)2018 Elsevier Ltd.保留所有权利。

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