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A study to incorporate renewable energy technologies into the power portfolio of Karachi, Pakistan

机译:一项将可再生能源技术纳入巴基斯坦卡拉奇电力产品组合的研究

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Karachi is facing severe power outage problems, with 3 to 8 hours of power outages every day, accounting for large economic losses. The city has a total electricity generation capacity of 2848 MW and a peak load of 2500 MW. This study estimates the potential of Solar, Wind and Biomass renewable energy options to meet part of the electrical demand in Karachi, Pakistan and further discusses the feasibility of the proposed projects. The objective is to define and evaluate a mix of these renewable energies that offsets 10% of the peak load (250 MW) of Karachi. The approach is based on the sustainability principle that a city should first attempt to meet its electrical demand using its own resources in order to increase its energy security, support the local economy, and minimize the costs and losses associated with transportation of fuel, and transmission and distribution of electricity. For the proposed mix, 2.9% and 4.4% of the peak load demand is met using Solar Photovoltaic (PV) and Parabolic Trough Collectors (PTC) respectively, 2% from wind and 0.7% from biomass. Also, the proposed mix is found feasible with PV to recover its investment costs in 5 years followed by biomass and wind in 6 years and finally PTC in 17 years. The outcomes of this analysis are significant for the concerned authorities of Pakistan responsible for installing renewable energy utilization projects within its regions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:卡拉奇面临着严重的停电问题,每天停电3至8个小时,造成了巨大的经济损失。该市的总发电量为2848兆瓦,高峰负荷为2500兆瓦。这项研究估计了太阳能,风能和生物质能可再生能源选项的潜力,以满足巴基斯坦卡拉奇的部分电力需求,并进一步讨论了拟议项目的可行性。目的是定义和评估这些可再生能源的混合,以抵消卡拉奇峰值负荷(250兆瓦)的10%。该方法基于可持续性原则,即城市应首先尝试使用自己的资源来满足其电力需求,以提高其能源安全性,支持当地经济并最大程度减少与燃料运输和传输相关的成本和损失和电力分配。对于建议的混合,分别使用太阳能光伏(PV)和抛物线槽收集器(PTC)满足了峰值负荷需求的2.9%和4.4%,其中风能2%,生物质能0.7%。此外,发现拟议的混合方案与PV可行,可以在5年内收回投资成本,然后在6年内回收生物质和风能,最后在17年内收回PTC。该分析的结果对负责在其区域内安装可再生能源利用项目的巴基斯坦有关当局具有重要意义。 (C)2015 Elsevier Ltd.保留所有权利。

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