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Solar collector field design and viability analysis of stand-alone parabolic trough power plants for Indian conditions

机译:印度条件下独立抛物槽式发电厂的太阳能集热器现场设计和可行性分析

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摘要

The parabolic trough collector is one of the most proven and commercial concentrating solar power (CSP) technologies. The implementation of parabolic trough in large scale power plants is an effective solar energy option in an arid and semi-arid region. In this article, analysis of solar parabolic trough collector field for power generation is carried out using different working fluids like oil and water. The analysis of collector field for power generation is carried out based on the various geometric parameters (rim angle, collector aperture); collector configurations (spacing distance, shading distance, land area) and solar radiation. The land area required for different plant operating hours and insolation conditions are analyzed. The optimum configuration of the collector field is found as 6 m aperture, rim angle (Ψ_(rim)) = 65° with spacing distance between the collector rows equivalent to shading distance after 2 h of sunrise at δ=0° and plant operates between 1 h after sunrise and before sunset. Techno-economic feasibility analysis of solar trough power plant is carried out for 58 locations in India. The annual power generation capacities of solar trough power plant are estimated for various locations such as eastern (14), western (18), northern (15) and southern (11) regions of India. The levelised costs of electricity generation of stand-alone solar parabolic trough power plant are estimated with oil and water as working fluids and it is found that Rs. 11.00 (c 24) and Rs. 11.84 (c 26) for oil and DSG respectively for Jodhpur.
机译:抛物槽式集热器是最成熟且商业化的聚光太阳能(CSP)技术之一。在干旱和半干旱地区,大型电厂采用抛物线槽是一种有效的太阳能选择。在本文中,使用不同的工作流体(例如油和水)对用于发电的太阳能抛物槽收集器场进行了分析。根据各种几何参数(边角,集热器孔径)进行发电集热器场的分析。集热器配置(间距,阴影距离,陆地面积)和太阳辐射。分析了不同工厂运行时间和日晒条件所需的土地面积。发现收集器场的最佳配置为6 m孔径,边角(Ψ_(rim))= 65°,收集器行之间的间隔距离等于在δ= 0°日出2小时后的遮光距离,并且设备在日出后和日落前1小时。在印度的58个地点进行了太阳能槽式发电厂的技术经济可行性分析。估计印度东部地区(14),西部地区(18),北部地区(15)和南部地区(11)的太阳能槽式发电厂的年发电量。以油和水为工作流体,估算独立式太阳能抛物槽式发电厂的平均发电成本。 11.00(c 24)和卢比。石油和焦特布尔DSG分别为11.84(c 26)。

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