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基于高温熔盐储热的火电机组灵活性改造技术及其应用前景分析
引用本文:李峻,祝培旺,王辉,仇晓龙. 基于高温熔盐储热的火电机组灵活性改造技术及其应用前景分析[J]. 南方能源建设, 2021, 8(3): 63-70. DOI: 10.16516/j.gedi.issn2095-8676.2021.03.009
作者姓名:李峻  祝培旺  王辉  仇晓龙
作者单位:中国电力工程顾问集团中南电力设计院有限公司,武汉430071
基金项目:中国电力工程顾问集团中南电力设计院有限公司科技项目“火力发电厂高温熔盐储热调峰技术研究”40-1A-KY202018-J201
摘    要:[目的]在分析常规火电机组灵活性改造方案存在问题的基础上,提出了一种新型的灵活性改造技术方案,即在传统的"锅炉-汽机"热力系统中嵌入大容量高温熔盐储热系统,削弱原本刚性联系的"炉机耦合",实现火电机组深度调峰和灵活运行.[方法]根据汽、水和熔盐的不同热力特性,利用热力平衡原理,建立了"锅炉-高温储热-汽机"一体化热力系...

关 键 词:储能  高温储热  热电解耦  深度调峰  供热
收稿时间:2021-02-10

Flexible Modification Technology and Application Prospect of Thermal Power Unit Based on High Temperature Molten Salt Heat Storage
Affiliation:China Power Engineering Consulting Group Central Southern Electric Power Design Institute Co., Ltd.Wuhan430071, China
Abstract:  Introduction  Through the analysis of the exsiting problems in conventional flexibility modification technology of thermal power units, a new type of flexibility modification technology is proposed, which is to embed a large-capacity high-temperature molten salt heat storage system in the traditional "boiler-turbine" thermal system. It weakens the original rigid connection of boiler-turbine coupling to achieve deep peak regulation and flexible operation of thermal power units.  Method  According to the different thermal characteristics of steam, water and molten salt, an integrated thermal system of "boiler-high temperature heat storage-steam engine" was established by thermal balance calculation.  Result  The results show that the deep peak regulation capability of thermal power unit is greatly improved after configuring high-temperature molten salt heat storage system, and the problems of conventional modification methods can be solved. At the same time, the ability of the units to provide high-parameter industrial steam will be greatly improved. This will effectively improve the economic efficiency of power plants and make up for the lack of peak regulation compensation mechanism. High-temperature molten salt heat storage technology can also be applied to the life extension of thermal power plants, not only increasing the grid's flexible peak regulation power supply, but also enabling old power plant enterprise assets continue to create benefits.  Conclusion  After a batch of thermal power units in the grid are modified by large-scale high-temperature molten salt heat storage technology, a large number of flexible peak regulation power sources are provided for the grid, without increasing the total coal consumption and effectively alleviating the problem of new energy power consumption. Meanwhile, steam turbines and generators are reserved, which can provide backup capacity and moment of inertia for the power system, to ensure the safety and stability of the power supply and the grid. The promotion of this technology will effectively promote the upgrading of thermal power plants and help achieve the goal of "carbon neutrality and carbon peak".
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