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The Development of Wind Power Under the Low-Carbon Constraints of Thermal Power in the Beijing-Tianjin-Hebei Region

机译:京津冀地区热力低碳约束下的风力发展

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Thermal power has consumed a lot of coal, which causes serious air pollution in the Beijing-Tianjin-Hebei region. Previous studies on low-carbon development often separated the three regions, ignoring the coordinated development relationships in the regions. Under the low-carbon development constrictions of thermal power, this paper studied the development of wind power. Firstly, from the integration development of the Beijing-Tianjin-Hebei region, the changes in industrial structure and the total electricity consumption were predicted. Secondly, a comprehensive analysis of the low-carbon development policy for these regions, in accordance with the analytical results, controls the development of thermal power. Finally, a system dynamics model is used to analyse the wind power development from 2018 to 2025 under the influence of development on purchased electricity, the development of thermal and wind power policy. The study found that under the existing policies the Beijing-Tianjin-Hebei region can achieve the goal of installed wind power capacity in the & x201C;13th Five-Year Plan for Electrical Power Development & x201D;. And from 2020 to 2025, the installed capacity of wind power significantly increases. Based on sensitivity analysis for wind power development, installed wind power capacity is the most sensitive to the wind power feed-in tariff, followed by thermal power generation capacity and then purchased electricity. To prevent wind power growing too fast, this paper suggests reducing the feed-in tariff of wind power during the & x201C;14th Five-Year Plan & x201D;.
机译:热力消耗了很多煤炭,这导致北京天津 - 河北地区的严重空气污染。以前关于低碳发展的研究经常分开这三个地区,忽略了地区的协调发展关系。在低碳开发收缩下,热电动力的影响,本文研究了风力发电的发展。首先,从京津冀地区的一体化发展,预测产业结构的变化和总电消耗。其次,综合分析了这些地区的低碳发展政策,按照分析结果,控制了热力的发展。最后,系统动力学模型用于从2018年从2018年到2025年分析风力发电,在购买电力的影响,热电动力政策的发展。该研究发现,根据现行政策,京津冀地区可以实现&X201C中安装风力发电能力的目标; 13日电力开发计划和X201D;并且从2020年到2025年,风力电量的装机容量显着增加。基于风电发展的灵敏度分析,安装的风力发电量对风力发电关税最敏感,其次是热发电能力,然后购买电力。为了防止风力发电太快,本文建议在&x201c期间减少风电的饲料关税;第14个五年计划&x201d;

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