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适应电力市场运营环境的可靠性电价与赔偿机制 被引量:23
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作者 周平 谢开贵 +2 位作者 周家启 周念成 赵渊 《电力系统自动化》 EI CSCD 北大核心 2004年第21期6-11,共6页
随着电力市场管制的逐步解除,用户获得了选择供应商的机会,并迫切要求供应商能按不同供电可靠性水平进行相对合理的可靠性定价与停电赔偿,以体现公正、公平、公开的市场原则。文中以配电系统为研究对象,提出一种基于用户可靠性需求的综... 随着电力市场管制的逐步解除,用户获得了选择供应商的机会,并迫切要求供应商能按不同供电可靠性水平进行相对合理的可靠性定价与停电赔偿,以体现公正、公平、公开的市场原则。文中以配电系统为研究对象,提出一种基于用户可靠性需求的综合定价法,有效地弥补了传统单一定价的不足;同时,阐述了建立可靠性赔偿机制的重要性,利用价值分析和配电系统可靠性评估技术推导出用户可靠性赔偿的函数关系,形成适应电力市场运营环境的可靠性电价与赔偿机制。通过对RBTS-BUS6 系统的算例分析表明,该机制可以兼顾供应商和用户的经济利益,实现优质优价、停电赔偿的思想。 展开更多
关键词 配电系统 可靠性 综合性电价 赔偿机制 供电
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Energy and exergy performance investigation of transcritical CO_2-based Rankine cycle powered by solar energy 被引量:1
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作者 ZHANG XinRong LI XiaoJuan 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第5期1427-1436,共10页
A comprehensive performance evaluation of a solar assisted transcritical CO2-based Rankine cycle system is made with exergy analysis method. The actual thermal data taken from the all-day experiment of the system are ... A comprehensive performance evaluation of a solar assisted transcritical CO2-based Rankine cycle system is made with exergy analysis method. The actual thermal data taken from the all-day experiment of the system are utilized to determine energy transfer and the exergy destructions in each component of the system. In addition, a hypothetical carbon dioxide expansion turbine is introduced, then two thermodynamic models for solar transcritical carbon dioxide Rankine cycles with a throttling valve (experiment) and with an expansion turbine have been established with exergy analysis method. The obtained results clearly show that solar collector contributes the largest share to system irreversibility and entropy generation in the all-day working state, and the exergy improvement potential of solar collector is the maximum in the working state. So this component should be the optimization design focus to improve system exergy effectiveness. For the cycle with the turbine, the energy efficiency and the entropy generation are not much higher than the cycle with throttling valve, but the exergy efficiency of the cycle with turbine is twice of the cycle with throttling valve. It provides more guidance when the transcritical CO2-based Rankine system is in a large-scale solar application. 展开更多
关键词 transcritical C02 rankine cycle solar energy exergy analysis exergy improvement potential
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