Impact Study of the Hetauda-Dhalkewar-Inaruwa Transmission Line on the Operation of Integrated Nepal Power System

Ajay Shah, Sanjaya Neupane, Kamal Darlami
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Abstract

Despite Nepal’s abundant hydroelectric resources, a substantial disparity exists between its electricity supply and demand. This discrepancy is exacerbated by the absence of high-voltage transmission lines, hindering efficient power evacuation from a handful of generating plants. This not only incurs financial losses for the utility but also compromises the reliability of the power supply. A prime example is the protracted delay in the construction of the 576 KM long Hetauda-Dhalkebar-Inaruwa 400kV double-circuit Transmission Line, primarily due to challenges posed by local residents unwilling to relinquish their land.The Integrated Nepal Power System (INPS) heavily relies on power generation concentrated in the central mid-hills region. The construction of the Hetauda-Dhalkebar-Inaruwa (HDITL) 400kV double-circuit Transmission Line is crucial for routing power to industrialize these areas, potentially bolstering the national GDP and generating employment opportunities. Furthermore, it is essential to connect the current hydropower output of around 2300 MW to the INPS system via a high-voltage transmission line to maximize its utilization. The HDITL project not only reduces line losses but also enhances grid stability. It facilitates energy export and direct transmission of high-generation power, such as the 456 MW from Upper Tamakoshi, thus saving approximately 400 MW of power and preventing losses for both the Government of Nepal (GoN) and the Nepal Electricity Authority. This research not only calculates the reduction in power and energy losses with the commissioning of HDITL but also assesses its monetary benefits. Utilizing INPS data and Digsilent Power Factory 15.1 for power flow analysis, the study estimates that HDITL can prevent a power loss of about 26.276 MW. Furthermore, it demonstrates that HDITL significantly improves the total generation power factor in INPS, from 0.88 to 0.99, and enhances the voltage profile, underscoring its critical role in Nepal’s energy infrastructure development.
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赫塔达-达尔凯瓦尔-伊纳鲁瓦输电线路对尼泊尔综合电力系统运行的影响研究
尽管尼泊尔拥有丰富的水力发电资源,但电力供需之间仍存在巨大差距。由于缺乏高压输电线路,这种差距更加严重,阻碍了少数发电厂的有效电力输送。这不仅给电力公司造成经济损失,还影响了供电的可靠性。尼泊尔综合电力系统(INPS)严重依赖于集中在中部半山区的发电。建设赫塔达-达拉克巴-伊纳鲁瓦(HDITL)400 千伏双回路输电线路对于将电力输送到这些地区的工业化进程至关重要,这有可能促进国家国内生产总值的增长并创造就业机会。此外,还必须通过高压输电线路将目前约 2300 兆瓦的水电输出连接到 INPS 系统,以最大限度地提高其利用率。HDITL 项目不仅减少了线路损耗,还增强了电网的稳定性。它促进了能源出口和高发电量电力的直接传输,例如来自上塔玛科希的 456 兆瓦电力,从而为尼泊尔政府(GoN)和尼泊尔电力局节省了约 400 兆瓦的电力,避免了损失。研究利用 INPS 数据和 Digsilent Power Factory 15.1 进行电力流分析,估计 HDITL 可防止约 26.276 兆瓦的电力损失。此外,研究还表明,HDITL 显著提高了 INPS 的总发电功率因数,从 0.88 提高到 0.99,并改善了电压曲线,突出了其在尼泊尔能源基础设施发展中的关键作用。
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