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首页> 外文期刊>International Journal of Information Technology >Design and Fabrication of a Parabolic Trough Collector and Experimental Investigation of Wind Impact on Direct Steam Production in Tehran
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Design and Fabrication of a Parabolic Trough Collector and Experimental Investigation of Wind Impact on Direct Steam Production in Tehran

机译:德黑兰抛物槽收集器的设计,制造以及风对直接产生蒸汽的影响的实验研究

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The present paper aims to the techno-economic feasibility of enhancing low-cost parabolic trough collectors in the light of developing the use of solar energy in under-developed regions where expensive high-tech solar devices cannot be afforded. Moreover, the collector is aimed to produce steam so that its performance is based on heat which can be discovered. In this regard, the manufacturing process and the detailed design models in Solidworks software are elaborated. Furthermore, the colletor’s material is chosen in a way to minimize the costs. Finally, to assess the performance of the built collector, it is installed in the site of Shahid Beheshti University, Tehran, and the values of the effective peripheral parameters, such as temperature, wind speed, and most importantly, solar irradiance, are recorded simultaneously in June. According to the results obtained, the manufactured collector with the aperture area of 2 m2 (1×2 m) is capable of producing 350 ml.h-1 steam. Also, the wind influence is comprehensively investigated in this paper. As a case in point, it was measured that as the wind speed maximized to 9.77 km/h, the amount of steam outlet is minimized to 580 ml.
机译:鉴于在无法提供昂贵的高科技太阳能设备的欠发达地区发展太阳能的利用,本文旨在提高低成本抛物槽收集器的技术经济可行性。此外,收集器旨在产生蒸汽,从而使其性能基于可以发现的热量。在这方面,将详细说明Solidworks软件中的制造过程和详细的设计模型。此外,选择筒夹的材料时应尽量减少成本。最后,为了评估内置收集器的性能,将其安装在德黑兰的Shahid Beheshti大学,并同时记录有效外围参数的值,例如温度,风速,最重要的是太阳辐照度在六月。根据获得的结果,所制造的孔径面积为2 m2(1×2 m)的收集器能够产生350 ml.h-1的蒸汽。此外,本文还对风的影响进行了全面研究。作为一个例子,据测量,随着风速最大达到9.77 km / h,蒸汽出口量最小化为580 ml。

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