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Fabrication of a large-aperture continuous phase plate in two modes using atmospheric pressure plasma processing 被引量:1
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作者 苏星 夏龙光 +4 位作者 刘刊 张鹏 李平 赵润昌 王波 《Chinese Optics Letters》 SCIE EI CAS CSCD 2018年第10期65-69,共5页
In order to fabricate a large-aperture continuous phase plate(CPP) using atmospheric pressure plasma processing(APPP) with high efficiency and precision, the position dwell mode and velocity mode were proposed and... In order to fabricate a large-aperture continuous phase plate(CPP) using atmospheric pressure plasma processing(APPP) with high efficiency and precision, the position dwell mode and velocity mode were proposed and the iterative calculation method was developed for the non-constant removal rate. Two 320 mm × 320 mm × 2 mm CPPs were fabricated with two processing modes. The experiment results show that the velocity mode is capable of significantly reducing the processing time and shape error. The total processing time is decreased from 13.2 h to 9.3 h, and the surface shape error is decreased from 0.158λ to 0.119λ(λ = 632.8 nm)(root mean square). 展开更多
关键词 Fabrication of a large-aperture continuous phase plate in two modes using atmospheric pressure plasma processing CPP
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Improving Operational Flexibility of Integrated Energy Systems Through Operating Conditions Optimization of CHP Units
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作者 Shixing Ding Wei Gu +2 位作者 Shuai Lu Xiaogang Chen Ruizhi Yu 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2023年第5期1854-1865,共12页
As a type of energy system with bright application prospects,the integrated energy system(IES)is environmentally friendly and can improve overall energy efficiency.Tight coupling between heat and electricity outputs o... As a type of energy system with bright application prospects,the integrated energy system(IES)is environmentally friendly and can improve overall energy efficiency.Tight coupling between heat and electricity outputs of combined heat and power(CHP)units limits IES operational flexibility significantly.To resolve this problem,in this paper,we integrate operating mode optimization of the natural gas combined cycle CHP unit(NGCC-CHP)into dispatch of the IES to improve flexibility of the IES.First,we analyze operational modes of the CHP units from the perspectives of thermal processes and physical mechanisms,including the adjustable extraction mode,backpressure mode,and switching mode.Next,we propose an explicit mathematical model for full-mode operation of the CHP units,in which the heat-electricity feasible region,switching constraints,and switching costs are all formulated in detail.Finally,a novel economic dispatch model is proposed for a heat and electricity IES,which uses the full-mode operation of CHP units to improve operational flexibility.The Fortuny-Amat transformation is used to convert the economic dispatch model into a mixed-integer quadratic programming model,which can then be solved using commercial solvers.Case studies demonstrate the proposed method can reduce operational costs and obviously promotes wind power utilization. 展开更多
关键词 Adjustable extraction mode back pressure mode combined heat and power economic dispatch full-mode operations integrated energy system operational flexibility
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