印度聚光太阳能发电现状与挑战回顾

Anil Kumar Yadav , Anil Kumar , Shailendra Sinha
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摘要

聚光太阳能发电(CSP)技术已成为一种前景广阔的可再生能源解决方案,提供了一种可持续的高效发电和热能储存手段。印度拥有丰富的太阳辐照资源,在推广 CSP 技术作为其可再生能源组合的一部分方面取得了长足进步。随着对减少温室气体排放和加强能源安全的日益重视,印度政府已经启动了许多政策、激励措施和项目,以鼓励采用 CSP 技术。抛物面槽式集热器是一种线性聚光系统,目前正在广泛使用。发电塔或太阳能塔是目前最常用的点聚光 CSP 技术。印度的目标是到 2022 年可再生能源发电能力达到 1.75 亿千瓦,其中太阳能发电占总目标的 1 亿千瓦。2018-2023 年期间,聚光太阳能发电技术预计将增长 87%,比 2012-2017 年的前一个五年期快 32%,2023 年将达到 4.3 千兆瓦。今后,研究人员、政策制定者和行业专业人士在了解印度聚光太阳能发电现状时,可将本综述文件视为宝贵资源。它有助于制定战略,解决障碍,推进可持续和高效的太阳能解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A review of concentrated solar power status and challenges in India

Concentrated Solar Power (CSP) technology has emerged as a promising renewable energy solution, offering a sustainable and efficient means of electricity generation and thermal energy storage. India, endowed with abundant solar irradiance, has made significant strides in promoting CSP technology as part of its renewable energy portfolio. With a growing focus on reducing greenhouse gas emissions and enhancing energy security, the Indian government has initiated numerous policies, incentives, and projects to encourage CSP adoption. Parabolic trough collectors, a type of linear concentrating system, are currently in widespread use. Power or solar towers are the most common type of point concentrating CSP technology currently in use. India aims to achieve a renewable energy capacity of 175 GW by 2022, with solar power constituting 100 GW of the overall target. Concentrated solar power technology is slated to grow 87% during 2018–2023, 32% faster than in the previous five-year period 2012–2017 and reach 4.3 GW in 2023. In future, present review paper can be regarded as a valuable resource for researchers, policymakers and industry professionals seeking to comprehend the present condition of concentrated solar power in India. It can aid in the development of strategies to address obstacles and advance sustainable and efficient solar energy solutions.

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