Performance Evaluation of Solar Tracking System

G. Perveen, P. Anand, Amod Kumar
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引用次数: 1

Abstract

Today’s scenario of growth for the demand of energy and concern for environmental benefits, has created a need for using renewable energy for meeting the demand for power production. Solar energy has emerged to be of utmost important Renewable Energy Sources (RES). The use of solar collector systems in many power plants has eased the conversion of solar energy into electrical power as compared to other sources. Since there is significant movement of the sun’s angle w.r.t. earth’s surface, which results in reducing the efficiency of the collector and the power delivered by solar systems. So, there lies a need for the design of such suntracking system that improves the panel efficiency by continuous tracking of the sun throughout the day. The present work explores distinct types of solar tracking system and its implementation for evaluating the performance of the solar power system. Tests were conducted on Parabolic Trough Collector (PTC) demonstrated at National Institute of Solar Energy (NISE), India. The present work consists of three sections wherein the first section deals with analyzing the solar radiation for Rajasthan station that represents hot & dry climatic conditions. The second section determines the distinct types of the solar tracking system and its implementation and the third section evaluates the energy yield for solar tracking system. It has been observed from the performance evaluation that the one-axis PTC with azimuth tracking performs better than the other configuration of the solar tracking system.
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太阳能跟踪系统性能评价
今天,能源需求的增长和对环境效益的关注,创造了使用可再生能源来满足电力生产需求的需要。太阳能已成为最重要的可再生能源(RES)。与其他能源相比,在许多发电厂中使用太阳能集热器系统使太阳能转化为电能变得容易。由于太阳与地球表面的角度有很大的变化,这就降低了集热器的效率和太阳能系统提供的能量。因此,有必要设计这样的太阳跟踪系统,通过全天连续跟踪太阳来提高面板效率。本工作探讨了不同类型的太阳能跟踪系统及其实施,以评估太阳能发电系统的性能。在印度国家太阳能研究所(NISE)演示的抛物槽集热器(PTC)上进行了测试。目前的工作包括三个部分,其中第一部分涉及分析拉贾斯坦站的太阳辐射,代表炎热和干燥的气候条件。第二部分确定太阳能跟踪系统的不同类型及其实施,第三部分评估太阳能跟踪系统的发电量。从性能评价中可以看出,具有方位跟踪的单轴PTC比其他构型的太阳跟踪系统性能更好。
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