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从碳市场看燃煤机组生产方式的转变方向
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作者 黄辰光 《能源与节能》 2024年第2期93-97,179,共6页
“双碳”目标下,燃煤机组生产方式的转变势在必行。以全国碳市场及M企业近3年的碳排放数据为例,搭建了1个模拟碳排放逐年递减的数学模型,对M企业的生产方式进行了模拟,分析其经营结果。并以此为依据提出同类型燃煤机组生产方式的转变方... “双碳”目标下,燃煤机组生产方式的转变势在必行。以全国碳市场及M企业近3年的碳排放数据为例,搭建了1个模拟碳排放逐年递减的数学模型,对M企业的生产方式进行了模拟,分析其经营结果。并以此为依据提出同类型燃煤机组生产方式的转变方向,分别为:纯凝运行方式向具备一定灵活性的供热运行方式转变,以及以“热电联产”运行方式在电力现货市场中获得对应生产优势,分别从生产与经营方面满足碳市场的严苛要求。 展开更多
关键词 供电碳排放强度 供热排放强度 市场
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火电机组供电碳减排高维运行特征提取及其最优基准值确定 被引量:11
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作者 胡阳 杨泽 +1 位作者 房方 任健 《中国电机工程学报》 EI CSCD 北大核心 2021年第S01期210-220,共11页
面向火电机组供电碳减排,系统研究最优运行基准值确定方法。首先,通过机理分析获得影响机组供电碳排放的全维运行参量,提出随机抽样一致–多项式最小二乘拟合(randomsampleconsensus-leastsquarepolynomialfitting,RANSAC-LSPF)算法进... 面向火电机组供电碳减排,系统研究最优运行基准值确定方法。首先,通过机理分析获得影响机组供电碳排放的全维运行参量,提出随机抽样一致–多项式最小二乘拟合(randomsampleconsensus-leastsquarepolynomialfitting,RANSAC-LSPF)算法进行稳态数据鲁棒筛选和工况划分;然后,采用近邻成分分析(neighborhoodcomponentanalysis,NCA)算法从各工况全维非线性参量中提取特征子集,合并确立全工况高维特征标准集;在各工况建立其与供电碳排放的长短期记忆(longshort-termmemory,LSTM)神经网络非线性模型;输入基于碳排放辅助基准值定义及高维聚类获取的各工况高维运行特征基准值,即得到更具泛化性的机组各工况供电碳排放最优基准值。最终,采用西北某600MW热电联产机组历史数据进行方法验证和在线更新部署,表明了该方法的有效性。 展开更多
关键词 火力发电 供电碳排放 稳态工况识别 特征提取 深度神经网络 最优基准值
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全国碳市场启动后北京热电行业低碳运行管理方式研究 被引量:3
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作者 史彩菊 金生祥 +5 位作者 安振源 王六虎 金立 马万军 王清 张秉权 《中国环境管理》 2018年第3期32-37,88,共7页
随着四大热电中心的建成投产,北京市完成了由燃机替代煤机的转变,实现了更加智能化的清洁能源发电供热。2013年北京市碳市场启动运行,给刚起步的燃气供热机组运行赋予了更广阔和更深远的意义;2017年12月19日,以发电行业为突破口,全国碳... 随着四大热电中心的建成投产,北京市完成了由燃机替代煤机的转变,实现了更加智能化的清洁能源发电供热。2013年北京市碳市场启动运行,给刚起步的燃气供热机组运行赋予了更广阔和更深远的意义;2017年12月19日,以发电行业为突破口,全国碳排放交易体系正式启动,北京市热电行业低碳运行管理意义重大而深远。本文以燃气热电联产机组运行数据为基础,通过计算分析,提出燃气热电联产机组清洁、高效、低碳运行方式,为全国碳市场启动后,北京乃至全国热电行业低碳运行管理提供经验借鉴。 展开更多
关键词 燃气热电联产机组 供电碳排放强度 市场 清洁、高效、低运行
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燃气供热机组低碳运行方式分析 被引量:1
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作者 史彩菊 《吉林电力》 2018年第2期48-50,共3页
为保证燃气供热机组的清洁、高效、低碳经济运行的要求,以北京地区燃气供热机组运行数据为基础,通过计算分析,提出了燃气供热的清洁、高效、低碳运行方式:采暖期采取背压运行,非采暖期采取"一拖一"40%以上负荷运行。
关键词 燃气供热机组 供电碳排放强度 运行
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330 MW燃煤锅炉耦合ORC发电系统经济性分析
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作者 高建强 颜一聪 +2 位作者 李鑫辉 张浩 凌海陶 《发电设备》 2023年第5期298-301,共4页
有机兰金循环(ORC)在锅炉烟气余热回收中具有一定的优势。针对某330 MW燃煤锅炉设计一套供厂用电的ORC烟气余热发电系统,计算厂用电率、供电热效率、供电煤耗率、供电碳排放强度及投资回收期,分析锅炉耦合ORC发电系统后机组的经济性。... 有机兰金循环(ORC)在锅炉烟气余热回收中具有一定的优势。针对某330 MW燃煤锅炉设计一套供厂用电的ORC烟气余热发电系统,计算厂用电率、供电热效率、供电煤耗率、供电碳排放强度及投资回收期,分析锅炉耦合ORC发电系统后机组的经济性。结果表明:采用锅炉耦合ORC发电系统后,厂用电率平均降低0.18个百分点,供电热效率平均增加0.07个百分点,供电煤耗率平均降低0.7 g/(kW·h),供电碳排放强度平均降低1.52 g/(kW·h),投资回收期为7.04 a。锅炉耦合ORC烟气余热发电系统具有一定经济性。 展开更多
关键词 燃煤锅炉 有机兰金循环 经济性 供电碳排放强度
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Model and Design of Cogeneration System for Different Demands of Desalination Water, Heat and Power Production 被引量:1
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作者 吴现力 胡仰栋 +1 位作者 伍联营 李红 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第3期330-338,共9页
In order to improve the energy efficiency, reduce the CO2 emission and decrease the cost, a cogenera- tion system for desalination water, heat and power production was studied in this paper. The superstructure of the ... In order to improve the energy efficiency, reduce the CO2 emission and decrease the cost, a cogenera- tion system for desalination water, heat and power production was studied in this paper. The superstructure of the cogeneration system consisted of a coal-based thermal power plant (TPP), a multi-stage flash desalination (MSF) module and reverse osmosis desalination (RO) module. For different demands of water, heat and power production, the corresponding optimal production structure was different. After reasonable simplification, the process model ot each unit was built. The economical model, including the unit investment, and operation and maintenance cost, was presented. By solving this non-linear programming (NLP) model, whose objective is to minimize the annual cost, an optimal cogeneration system can be obtained. Compared to separate production systems, the optimal system can reduce 16.1%-21.7% of the total annual cost. showing this design method was effective. 展开更多
关键词 cogeneration system thermal power plant multi-stage flash desalination reverse osmosis desalination non-linear programming optimal design
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Water, Air Emissions, and Cost Impacts of Air-Cooled Microturbines for Combined Cooling, Heating, and Power Systems: A Case Study in the Atlanta Region
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作者 Jean-Ann James Valerie M. Thomas +2 位作者 Arka Pandit Duo Li John C. Crittenden 《Engineering》 SCIE EI 2016年第4期470-480,共11页
The increasing pace of urbanization means that cities and global organizations are looking for ways to increase energy efficiency and reduce emissions. Combined cooling, heating, and power (CCHP) systems have the po... The increasing pace of urbanization means that cities and global organizations are looking for ways to increase energy efficiency and reduce emissions. Combined cooling, heating, and power (CCHP) systems have the potential to improve the energy generation efficiency of a city or urban region by providing energy for heating, cooling, and electricity simultaneously. The purpose of this study is to estimate the water consumption for energy generation use, carbon dioxide (CO2) and NOx emissions, and economic impact of implementing CCHP systems for five generic building types within the Atlanta metropolitan region, under various operational scenarios following the building thermal (heating and cooling) demands. Operating the CCHP system to follow the hourly thermal demand reduces CO2 emissions for most building types both with and without net metering. The system can be economically beneficial for all building types depending on the price of natural gas, the implementation of net metering, and the cost structure assumed for the CCHP system. The greatest reduction in water consumption for energy production and NOx emissions occurs when there is net metering and when the system is operated to meet the maximum yearly thermal demand, although this scenario also results in an increase in greenhouse gas emissions and, in some cases, cost. CCHP systems are more economical for medium office, large office, and multifamilv residential buildings. 展开更多
关键词 Combined cooling heating and power (CCHP) Air-cooled microturbines Distributed energy generation Water for energy production Net metering
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Assessment of Solar-Coal Hybrid Electricity Power Generating Systems
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作者 Moses Tunde Oladiran Cheddi Kiravu Ovid Augustus Plumb 《Journal of Energy and Power Engineering》 2012年第1期12-19,共8页
Botswana currently depends on electricity generated from coal-based power plant or electricity supplied from the border in South Africa. The country has good reserves of coal and the solar radiation is sufficiently hi... Botswana currently depends on electricity generated from coal-based power plant or electricity supplied from the border in South Africa. The country has good reserves of coal and the solar radiation is sufficiently high to make solar thermal attractive for generating electricity. The paper presents two conceptual coal-fired power station designs in which a solar sub-system augments heat to the feed heaters or to the boiler. The thermal and economic analyses showed enhanced system performance which indicates that solar power could be embedded into existing fossil fuel plants or new power stations. Integrating solar energy with existing or new fossil fuel based power plants could reduce the cost of stand-alone solar thermal power stations, reduce CO2 emissions and produce experience necessary to operate a full scale solar thermal electricity generation facility. 展开更多
关键词 Hybrid systems SOLAR COAL ECONOMICS performance.
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