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Solar Thermal Energy Generation Potential in Gujarat and Tamil Nadu States, India

机译:印度古吉拉特邦和泰米尔纳德邦的太阳能热发电潜力

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Government of India has come out with an ambitious target of 100 GW of using solar energy alone by the year 2022. To reach this target, innovative ideas are required to use the solar energy more effectively. For solar electricity generation, mainly two types of technologies are presently in use, namely, solar PV and solar thermal. Being a tropical country, India has large solar PV and solar thermal energy. More research is required on economic aspects to make the solar thermal competitive to solar PV. Towards this direction, in our present study we have simulated a solar thermal power plant using Parabolic Trough Collector (PTC) technology and normalized with 1 MW solar thermal power plant at Gurgaon near New Delhi. Through simulation, we have extended our study and computed the electricity generation possible at different locations of India. For this purpose with 1° × 1° spacing, computations have been carried out at 296 locations. The work is further extended for more detailed study at two representative states, namely, Gujarat and Tamil Nadu. In these two states, closer data points with 0.25° × 0.25° spacing have been considered at 273 locations for Gujarat and 197 locations for Tamil Nadu. Our results indicate a large potential of electricity generation using solar thermal energy in southern states of India, namely, Tamil Nadu, Karnataka, Kerala, southern and western part of Andhra Pradesh and eastern part of Maharashtra. Good potential has also been observed in eastern parts of Gujarat and parts of Madhya Pradesh and eastern part of Rajasthan. The annual potential ranges from 1800 MWh to as much as 2600 MWh. Major parts of northern states, for example Uttar Pradesh, Bihar, West Bengal, Punjab, Jammu and Kashmir have medium range potential. Here, the annual potential ranges from 1000 to 1500 MWh. Poor range of potential is observed towards eastern parts of India and north eastern states. Here, the electricity generation potential ranges from 600 to 1200 MWh. Our results are useful to solar thermal developer and decision managers.
机译:印度政府提出了一个雄心勃勃的目标,即到2022年仅使用太阳能100吉瓦。要实现这一目标,就需要有创新的想法来更有效地利用太阳能。对于太阳能发电,当前主要使用两种类型的技术,即太阳能PV和太阳能热。作为一个热带国家,印度拥有大量的太阳能光伏和太阳能。需要在经济方面进行更多研究,以使太阳能热能与太阳能PV竞争。朝这个方向发展,在本研究中,我们使用抛物线槽收集器(PTC)技术模拟了一个太阳能热电厂,并在新德里附近的古尔冈用1 MW太阳能热电厂进行了标准化。通过模拟,我们扩展了研究范围,并计算了印度不同地区可能的发电量。为此,以1°×1°的间距在296个位置进行了计算。这项工作进一步扩展到古吉拉特邦和泰米尔纳德邦两个有代表性的州进行更详细的研究。在这两个州中,古吉拉特邦的273个位置和泰米尔纳德邦的197个位置都考虑了间距为0.25°×0.25°的更近的数据点。我们的结果表明,在印度南部各州,即泰米尔纳德邦,卡纳塔克邦,喀拉拉邦,安得拉邦的南部和西部以及马哈拉施特拉邦的东部,利用太阳能热发电的潜力很大。在古吉拉特邦东部,中央邦的部分地区和拉贾斯坦邦的东部地区也观察到了良好的潜力。年潜力从1800兆瓦时到高达2600兆瓦时。北方邦的大部分地区,例如北方邦,比哈尔邦,西孟加拉邦,旁遮普邦,查Jam和克什米尔都有中等范围的潜力。在这里,年潜力范围从1000到1500 MWh。在印度东部和东北部各州,潜力范围较差。在这里,发电潜力为600至1200 MWh。我们的结果对太阳能热开发商和决策经理很有用。

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