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Exergy analysis of large and impounded hydropower plants: Case study El Roseires Dam (280 MW)

机译:大型蓄水水电站的暴力分析:案例研究El Roseware Dam(280 MW)

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摘要

Nowadays, one of the major and serious worldly concerns is the limitation of energy resources. Sudan, in specific, confronts a critical crisis in fossil fuel resources due to its separation science 2011, and mostly concerning the production of electricity energy. There are many sources of renewable energies in Sudan such as hydropower. Which it is widely used in Sudan, and one example is Elroseires hydropower plant. This research aims to conduct an exergy analysis of the performance of the Elroseires hydropower plant to identify areas for improvement using actual operation data. The exergy efficiency and exergy destruction rate of each unit in the plant were determined independently. The thermodynamic inefficiencies of all units of the plant were quantified for analysis to identify breakthrough points for further energy savings. Results indicated that the lowest exergy destruction rate occurs in August (20.6 MW) despite the lowest production of energy during this period. This outcome is due to the volumetric flow rate being less than those in other months, thereby leading to minimal flow turbulence that result in low exergy destruction. By contrast, the greatest exergy destruction occurs in December (106.1 MW) because of the high volumetric flow rate for the same pipe diameter. Such condition leads to turbulent flow and results in considerable exergy destruction. This study emphasizes that exergy analysis is useful in determining irreversibilities and losses in Elroseires hydropower plant to improve its thermodynamic performance.
机译:如今,主要和严重的世俗顾虑之一是能源的限制。具体而言,苏丹认为,由于其分离科学2011年,大多数关于电力能源的生产,面对化石燃料资源的关键危机。苏丹有许多可再生能源来源,如水电。其中广泛用于苏丹,一个例子是Elroseires水电站。本研究旨在对Elroseires水电站进行识别使用实际操作数据来识别改进领域的能力分析。植物中每个单位的低渗效率和漏洞破坏率独立地确定。量化植物所有单位的热力学低效率被定量分析,以确定进一步节能的突破点。结果表明,尽管在此期间最低的能量生产,但8月份(20.6兆瓦)发生了最低的毁灭率。该结果是由于体积流速小于其他月份的流量,从而导致最小的流动湍流,从而导致低驱动的破坏。相比之下,由于具有相同管道直径的高容量流速,最大的出现最大的出现损坏是在12月(106.1 MW)发生的。这种情况导致湍流并导致相当高的驱动破坏。本研究强调,高级分析对于确定Elroseires水电站的不抗缩感和损失是有用的,以改善其热力学性能。

著录项

  • 来源
    《Environmental progress & sustainable energy》 |2020年第3期|e13362.1-e13362.11|共11页
  • 作者单位

    Mechanical Engineering Department Faculty of Engineering Sudan University of Science and Technology Khartoum Sudan Mechanical Engineering Department Faculty of Engineering Al-Baha University Al-Baha Saudi Arabia;

    Mechanical Engineering Department Faculty of Engineering Sudan University of Science and Technology Khartoum Sudan;

    Department of Mechanical Engineering College of Engineering and Technology Arab Academy for Science Technology and Maritime Transport Alexandria Egypt;

    Department of Aeronautical Engineering College of Engineering Sudan University of Science and Technology Khartoum Sudan;

    Mechanical Engineering Department Faculty of Engineering Sudan University of Science and Technology Khartoum Sudan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electricity; exergy; hydropower plant; renewable energy;

    机译:电;obergy;水电站;再生能源;

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