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Reliability of Baseload Electricity Generation from Fossil and Renewable Energy Sources 被引量:1
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作者 Aleksa Z. Biserčić Uglješa S. Bugarić 《Energy and Power Engineering》 2021年第5期190-206,共17页
With expanding environmental and climate change regulatory frameworks, </span><span style="font-family:Verdana;">the fossil</span></span><span style="font-family:Verdana;"... With expanding environmental and climate change regulatory frameworks, </span><span style="font-family:Verdana;">the fossil</span></span><span style="font-family:Verdana;">-</span><span style="font-family:Verdana;">based baseload</span><span style="font-family:""> <span style="font-family:Verdana;">generation is forced to decline</span><span style="font-family:Verdana;">, thus making room for more and more generation based on renewable and other carbon-free energy sources. This paper deals with a number of controversial issues and open questions concerning </span></span><span style="font-family:Verdana;">the </span><span style="font-family:Verdana;">growing penetration of renewable energy sources into power generation systems, often without due care of the impacts of variable as compared to conventional generation on </span><span style="font-family:Verdana;">the </span><span style="font-family:Verdana;">reliability of electricity supply. Particular attention is paid to baseload generation, power market design, system operation under extreme weather conditions, energy storage, back-up</span><span style="font-family:Verdana;">,</span><span style="font-family:""><span style="font-family:Verdana;"> and reserve power, as well as to the role of mechanical inertia an</span><span style="font-family:Verdana;">d reliability of on-site fuel supply, demonstrated on an example of coal </span><span style="font-family:Verdana;">excavation and delivery to a power plant. 展开更多
关键词 Power System baseload RES EMERGENCIES Storage RELIABILITY On-Site Coal Supply
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Analysis of hourly generation patterns at large coal-fired units and implications of transitioning from baseload to load-following electricity supplier 被引量:1
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作者 Robert Kennedy SMITH 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2019年第3期468-474,共7页
Several factors have led to the decline of electricity generation from coal over the past decade, and projections forecast high rates of growth for wind and solar technologies in coming years. This analysis uses hourl... Several factors have led to the decline of electricity generation from coal over the past decade, and projections forecast high rates of growth for wind and solar technologies in coming years. This analysis uses hourly generation data from large coal-fired power stations to determine how operations have been modified in recent years and describes the implications of these changes for plant equipment and unit reliability. The data shows increasing variability in intraday generation output that affects nearly all of the units in the sample, but the magnitude of increase varies widely among plants. Outage patterns were examined as was the relationship between renewable energy growth in a region and the changes in coal plant operations. Aggregate direct and indirect costs associated with running coal plants as load-following units have not yet been quantified in large-scale studies on a sector-wide basis, largely due to differences in how specific equipment responds to output fluctuations. Due to findings from the hourly generation data analysis and the high degree of potential impact on coal plant equipment, the study suggests the development of a new modeling tool that will represent the costs of running coal-fired power plants at lower capacity factors. 展开更多
关键词 COAL GENERATION EMISSION INTENSITY baseload power Capacity FACTOR
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多模式机械补偿运行特性研究 被引量:2
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作者 叶青 杨波 +1 位作者 党哈雷 施建锋 《原子能科学技术》 EI CAS CSCD 北大核心 2016年第4期684-690,共7页
经济、灵活及高自动化的运行控制策略是先进核电厂的设计目标之一。为适应这一发展趋势,近年来国际上提出了机械补偿运行控制的设计理念。机械补偿是一种主要通过控制棒的移动补偿堆芯反应性变化和控制轴向功率分布的先进控制策略。本... 经济、灵活及高自动化的运行控制策略是先进核电厂的设计目标之一。为适应这一发展趋势,近年来国际上提出了机械补偿运行控制的设计理念。机械补偿是一种主要通过控制棒的移动补偿堆芯反应性变化和控制轴向功率分布的先进控制策略。本文分别在基本负荷、负荷跟踪及启动/再启动运行模式下对机械补偿运行特性进行了研究。研究表明:机械补偿能自动实现堆芯的有效控制,并使功率峰因子保持在较低水平,是一种灵活、有效、经济的运行控制策略。此外,针对机械补偿运行对核电厂设计的影响进行了初步分析。 展开更多
关键词 机械补偿 基本负荷 负荷跟踪 启动运行
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评AP1000堆芯设计 被引量:2
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作者 姚增华 《核动力工程》 EI CAS CSCD 北大核心 2014年第S1期75-79,共5页
根据美国用户要求文件(URD)对3代压水堆核电厂的某些要求,比较AP600和AP1000核电厂的某些设计参数。建议三门核电厂和海阳核电厂取消机械补偿(MSHIM)基荷运行模式及复杂的堆芯设计。
关键词 AP1000 堆芯设计 MSHIM运行模式
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双碳目标下电力行业改革路径探析--基于低碳基荷发电技术碳减排成本研究 被引量:3
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作者 于洋 刘博杰 +3 位作者 唐庆辉 薄美芳 尚鑫 胡江 《建筑经济》 北大核心 2023年第S02期65-69,共5页
深化电力行业改革,构建以低碳能源为主体的电力系统对实现双碳目标十分重要。通过对能源结构的研究,确定出核电、风电和太阳能光伏发电为低碳基荷发电技术。利用平准化发电成本、生命周期理论等研究方法构建出碳减排成本模型进行测算,... 深化电力行业改革,构建以低碳能源为主体的电力系统对实现双碳目标十分重要。通过对能源结构的研究,确定出核电、风电和太阳能光伏发电为低碳基荷发电技术。利用平准化发电成本、生命周期理论等研究方法构建出碳减排成本模型进行测算,同时利用现有文献对比研究发现:三种发电技术的平准化电价水平已接近或低于火电;三者碳减排成本相差不大;核电具有比较明显的优势。结合上述研究成果对电力行业改革提出建议。 展开更多
关键词 低碳基荷发电技术 碳减排成本 电力行业改革
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基荷型天然气液化工厂冷却方式比选分析 被引量:2
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作者 邰晓亮 陈杰 +2 位作者 刘淼儿 曾伟平 程昊 《煤气与热力》 2012年第10期4-8,共5页
基荷型天然气液化工厂冷却方式的选择既是液化工艺设计的基础,也是决定设备选型的关键因素之一。合理选择冷却方式既关系到液化装置的能耗,也关系到液化装置的产量稳定性和安全可靠性,同时,冷却方式的选择也受到换热器设备、自环境条件... 基荷型天然气液化工厂冷却方式的选择既是液化工艺设计的基础,也是决定设备选型的关键因素之一。合理选择冷却方式既关系到液化装置的能耗,也关系到液化装置的产量稳定性和安全可靠性,同时,冷却方式的选择也受到换热器设备、自环境条件、占地面积和造价等因素的影响。介绍世界上基荷型液化工厂常用的冷却方式,分析了不同冷却方式对液化装置性能的影响以及冷却方式选择的工程影响因素。 展开更多
关键词 基荷型 天然气液化 液化天然气 冷却方式
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住宅电气负荷计算解析(待续) 被引量:1
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作者 张秀林 《建筑电气》 2018年第7期28-34,共7页
通过对住宅电气负荷年最大负荷时段负荷组成的分解,并根据组成部分负荷运行特性进行分类负荷计算,探讨分析符合区域项目特性的需要系数取值。以北京地区典型住宅户型为例,根据住宅负荷分类计算原则分别对空调、热水、日常家电、餐厨负... 通过对住宅电气负荷年最大负荷时段负荷组成的分解,并根据组成部分负荷运行特性进行分类负荷计算,探讨分析符合区域项目特性的需要系数取值。以北京地区典型住宅户型为例,根据住宅负荷分类计算原则分别对空调、热水、日常家电、餐厨负荷进行计算、比较、分析,以期使住宅电气负荷计算更加合理。 展开更多
关键词 住宅建筑 负荷特性 负荷计算 需要系数 空调负荷 热水负荷 户内基准负荷 户内最大负荷
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Evolving carbon dioxide emission rate intensities of coal-fired power plant on U.S. electricity operating systems 被引量:2
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作者 Robert Kennedy SMITH 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2018年第6期1103-1112,共10页
For many years, coal-fired power plant generation comprised the largest share of electricity in the U.S.power sector. While natural gas plants now constitute a greater portion of the total, coal is projected to remain... For many years, coal-fired power plant generation comprised the largest share of electricity in the U.S.power sector. While natural gas plants now constitute a greater portion of the total, coal is projected to remain a shrinking but significant component of U.S. electricity production. Natural gas-fired technologies are dispatchable and versatile generation sources, but the recent and anticipated growth of wind and solar technologies will add nondispatchable, intermittent power generation sources to U.S.electricity grids. Numerous emissions-related benefits arise from the deployment of these technologies, but they must coexist with coal plants, many of which run most efficiently under baseload operating procedures. Historical monthly emissions data has been analyzed on a sample of coal plants to show how modified coal operations have affected plant emission rates, as measured by carbon dioxide emitted per unit of electricity output. Statistically significant correlations between plant capacity factors and emission rate intensity have been observed by the majority of the sample, showing a worsening under more sporadic operations. Since nearly all of the coal plants in the sample are generating less electricity, determining the emission impact of operational decisions will assist policymakers as they seek to minimize total system emissions without severe disruptions to electricity cost and service reliability. 展开更多
关键词 Coal Emission intensity RENEWABLE GENERATION baseload power GENERATION
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