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Feasible electricity price calculation and environmental benefits analysis of the regional nighttime wind power utilization in electric heating in Beijing

机译:北京区域供热夜间夜间风电利用的可行电价计算和环境效益分析

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摘要

Facing the aggravation of air pollution and serious wind curtailment in North China, a new way to utilize excess wind power is presented, which is to use the excess nighttime wind from the surrounding areas to provide electric heating in Beijing at night. First, the mechanism of the nighttime electric heating price calculation and its environmental benefits are explained from both the supply side and the demand side. Second, considering the economic and environmental characteristics of electric heating, the electricity price-ceiling calculation model on the demand side, the electricity price-floor calculation model on the supply side, and the environmental benefit-analysis model are formed. Finally, the models are tested by practical data from Beijing, showing that the proposed models are scientific and practicable. The study shows several conclusions. (1) When no subsidy policy is carried out, the regenerative electric heater and the air-sourced heat pump are not economically justified to replace the rural-household coal-fired boiler and coal-burning boiler and the public coal-fired boiler. (2) With the existing subsidy policy, the regenerative electric heater is economically justified to replace the rural-household coal-fired boiler, self owned coal-burning boiler, and public coal-fired boiler, and the air-sourced heat pump can be the substituted for the rural-household coal-fired boiler. Under different wind thermal-power ratios, the feasible intervals for the electricity price are respectively [47.12, 48.62], [44.31, 48.62], and [41.51, 48.62]. (3) Compared with the traditional coal-fired heating, wind-sourced electric heating contributes fewer pollutant emissions and more environmental benefits. (C) 2018 Elsevier Ltd. All rights reserved.
机译:面对华北地区日益严重的空气污染和严重的限风,提出了一种利用多余风力的新方法,即利用周围地区的夜间夜间风在晚上为北京提供电暖气。首先,从供方和需求方对夜间电热价格计算的机制及其环境效益进行了说明。其次,结合电采暖的经济和环境特点,形成了需求侧的电价上限计算模型,供电侧的电价底价计算模型和环境效益分析模型。最后,通过北京的实际数据对模型进行了检验,表明所提出的模型是科学可行的。该研究显示了几个结论。 (1)在不实行补贴政策的情况下,再生电加热器和气源热泵在经济上不足以代替农村居民用燃煤锅炉,燃煤锅炉和公用燃煤锅炉。 (2)在现有的补贴政策下,从经济上讲,蓄热式电加热器可以取代农村居民的燃煤锅炉,自有燃煤锅炉和公共燃煤锅炉,并且可以使用空气源热泵。代替农村家庭的燃煤锅炉。在不同的风热功率比下,电价的可行区间分别为[47.12、48.62],[44.31、48.62]和[41.51、48.62]。 (3)与传统的燃煤取暖相比,风电取暖减少了污染物的排放,并带来了更多的环境效益。 (C)2018 Elsevier Ltd.保留所有权利。

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