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Enhancement of building operations: A successful approach towards national electrical demand management

机译:加强建筑运营:成功实现国家电力需求管理的方法

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摘要

An approach for managing electrical demand through enhanced building operations in hot climates is evaluated and demonstrated in this paper. The approach focuses on implementing enhanced operations in government buildings, since they are easier to implement and administer. These enhanced operations included early reduction of cooling supply before the end of the occupancy period, improved time-of-day control after occupancy period and reduced lighting. A total of eight government buildings with different construction and system characteristics were selected for implementing these enhanced operations. These buildings have a total air-conditioning area of 4.39 × 10~5m~2 and a combined peak electrical demand of 29.3 MW. The enhanced operations resulted in demand savings of 8.90 MW during the national peak hour. Temperatures build up inside the buildings were monitored and found to be within acceptable ranges. Guidelines for nationwide implementation in similar buildings were developed based on the results of this work. Implementation is estimated to reduce demand by 488 MW by the year 2030, which amounts to capital savings of $585 million. These projected values would be important to adopt energy efficient policies for the country. Additional reductions in energy and fuel consumption are added benefits, which would result in large financial and environmental savings to the country. Moreover, the enhanced building operations would be an important tool to avoid any blackouts by properly reducing the peak electrical demand as well as operating the power plants with a higher thermal efficiency.
机译:本文评估并演示了一种通过在炎热的气候中增强建筑运营来管理电力需求的方法。该方法侧重于在政府建筑物中实施增强的操作,因为它们更易于实施和管理。这些增强的操作包括在占用期结束之前及早减少制冷供应,改善占用期后的每日时间控制并减少照明。总共选择了八座具有不同建筑和系统特性的政府建筑物来实施这些增强的操作。这些建筑物的总空调面积为4.39×10〜5m〜2,总峰值用电需求为29.3 MW。运营的增强导致全国高峰时段节省了8.90 MW的需求。监测建筑物内部积聚的温度,发现其处于可接受的范围内。根据这项工作的结果,制定了在类似建筑物中全国实施的指南。据估计,到2030年,该项目的实施将使需求减少488兆瓦,相当于节省资本5.85亿美元。这些预估值对于采用该国的节能政策非常重要。能源和燃料消耗的进一步减少带来更多好处,这将为该国节省大量的财务和环境。此外,增强的建筑运营将是通过适当降低峰值用电需求以及以更高的热效率运行电厂来避免任何停电的重要工具。

著录项

  • 来源
    《Energy Conversion & Management 》 |2013年第12期| 781-793| 共13页
  • 作者单位

    Energy Efficiency Technologies Program, Kuwait Institute for Scientific Research, P.O. Box 24885, 13109 Safat, Kuwait;

    Energy Efficiency Technologies Program, Kuwait Institute for Scientific Research, P.O. Box 24885, 13109 Safat, Kuwait;

    Energy Efficiency Technologies Program, Kuwait Institute for Scientific Research, P.O. Box 24885, 13109 Safat, Kuwait;

    United Technologies Research Center, 411 Silver Lane, East Hartford, CT 06108, USA;

    Energy Efficiency Technologies Program, Kuwait Institute for Scientific Research, P.O. Box 24885, 13109 Safat, Kuwait;

    Energy Efficiency Technologies Program, Kuwait Institute for Scientific Research, P.O. Box 24885, 13109 Safat, Kuwait;

    Energy Efficiency Technologies Program, Kuwait Institute for Scientific Research, P.O. Box 24885, 13109 Safat, Kuwait;

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

    A/C system; CO_2 emissions; Enhanced operations; Early reduction of cooling supply;

    机译:空调系统;二氧化碳排放量;增强运作;尽早减少冷却供应;

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