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Electrical energy demand efficiency efforts in Brazil, past, lessons learned, present and future: A critical review

机译:巴西的电能需求效率工作,过去,经验教训,现在和将来:严格审查

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Brazil's predominant hydroelectric power production has to be increasingly complemented by thermal generation to face rapid demand growth, slow new hydro plants planning and construction, proportional reduction of possible energy stored in the reservoirs and longer drought periods. The larger the thermal electricity share, the more expensive is the production cost and environmental impact due to fossil fuels. To counter this, new renewable sources such as wind plants are being massively built in addition to more effective measures of energy conservation, based on traditional methods such as the National Program for Electrical Energy Conservation (PROCEL) and peak load tariff differentials, which affect large consumers and is expected to be applied to residential consumers with new digital energy meters. In addition, there is the traditional summer time offset of one hour in higher southern latitude parts of Brazil. The effects of energy savings and peak load reduction are studied in view of optimal power dispatch reasoning, both considering an uncrowded and a potentially congested transmission network where the predominant power production is hydroelectric. Efforts to increase energy savings and efficiency in Brazil are critically analyzed at the end of this paper. (C) 2016 Elsevier Ltd. All rights reserved.
机译:巴西的主要水力发电必须越来越多地通过热力发电来补充,以应对快速的需求增长,新水电站的规划和建设缓慢,按比例减少水库中可能储存的能源以及更长的干旱时期。热电份额越大,生产成本和化石燃料对环境的影响就越昂贵。为了解决这个问题,除了更有效的节能措施外,还根据传统方法(例如国家电力节约计划(PROCEL)和峰值负荷电价差),大规模建设新的可再生能源,例如风电厂。消费者,并有望通过新的数字电表应用于住宅消费者。此外,在巴西南部较高纬度地区,传统的夏季时间偏移为一小时。考虑到最佳的电力分配推理,研究了节能和降低峰值负荷的影响,同时考虑了主要电力生产为水力发电的无拥挤和潜在拥堵的输电网络。本文结尾对提高巴西节能和提高效率的工作进行了严格分析。 (C)2016 Elsevier Ltd.保留所有权利。

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