Optimal Planning of Clean Heating with Renewable Energy Sources

Jiaxing He, Lei Chen, Fei Xu, Y. Min
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引用次数: 4

Abstract

Promoting the replacement of fossil energies by renewable energy sources (RES) is the trend of social transformation and progress. Energy internet aims to lower the dependence on traditional fossil energies, and to increase the utilization efficiency of RES to the greatest extent. In regions like northern China, plenty of RES are being abandoned every year, especially in heating season. Meanwhile, most residents in these regions are now using seriously polluted coal fired ways for warmth. Clean heating system utilizes excess RES replacing coal fired ways to meet heat demand. Due to the volatility and uncertainty of intermittent renewable energy, to guarantee reliable heating service, distributed heat storage devices and support from thermal power are necessary. In this way, either bigger or smaller scale of the clean heating would lead to inefficient utilization of resources in view of the electricity-heat integrated energy system. Based on energy internet technology, from the perspective of minimizing fossil energy consumption of the integrated energy system, combining planning issues and coordinated optimization operation issues, the paper proposes an optimal planning model to optimize the scale of the clean heating and capacity of electric heating devices as well as thermal storage devices. At last, simulation in the West Inner Mongolia Power Grid shows the running condition of the system and optimization results.
可再生能源清洁供热优化规划
推动可再生能源替代化石能源是社会转型和进步的趋势。能源互联网旨在降低对传统化石能源的依赖,最大限度地提高可再生能源的利用效率。在中国北方等地区,每年都有大量可再生能源被废弃,尤其是在采暖季节。与此同时,这些地区的大多数居民现在都在使用污染严重的燃煤取暖方式。清洁供热系统利用多余的可再生能源替代燃煤方式来满足供热需求。由于间歇性可再生能源的波动性和不确定性,为了保证可靠的供热服务,分布式蓄热装置和火电的支持是必要的。因此,从电-热一体化能源系统的角度来看,清洁供暖规模的扩大或缩小都会导致资源的低效利用。基于能源互联网技术,从综合能源系统化石能源消耗最小化的角度出发,结合规划问题和协同优化运行问题,提出了清洁供热规模和电供热蓄热装置容量优化的优化规划模型。最后,在内蒙古西部电网进行了仿真,验证了系统的运行情况和优化结果。
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