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桥梁结构耐久性设计方法研究 被引量:54
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作者 吴海军 陈艾荣 《中国公路学报》 EI CAS CSCD 北大核心 2004年第3期57-61,67,共6页
分析了目前桥梁结构耐久性研究中存在的问题。在比较了各国几种主要耐久性设计理论和方法的基础上,提出了一种新的耐久性设计思路和方法,即利用耐久度来衡量结构保持耐久性的能力,通过计算耐久性指标来评判某一时刻结构耐久性能否满足... 分析了目前桥梁结构耐久性研究中存在的问题。在比较了各国几种主要耐久性设计理论和方法的基础上,提出了一种新的耐久性设计思路和方法,即利用耐久度来衡量结构保持耐久性的能力,通过计算耐久性指标来评判某一时刻结构耐久性能否满足设计要求。该方法强调了多种因素共同作用、结构体系和构件荷载类别以及桥梁寿命周期经济性对耐久性设计的影响,具有概念明确、形式简单、便于应用等特点。 展开更多
关键词 桥梁工程 桥梁结构设计 耐久性设计方法 使用寿命 寿命期成本分析 耐久度 耐久性指标
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The Use of Life Cycle Cost Analysis to Determine the Most Effective Cost of Installation High Voltage Undersea Cable Bali Strait
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作者 Ngapuli Sinisuka lqbal Felani Novrizal Erdiansyah 《Journal of Energy and Power Engineering》 2012年第12期2082-2089,共8页
Indonesian National Electricity Company (PT.PLN (Persero)) has planned to install additional high voltage undersea cable for circuit llI and IV Java-Bali to fulfill electricity demand in Bali. This project was mor... Indonesian National Electricity Company (PT.PLN (Persero)) has planned to install additional high voltage undersea cable for circuit llI and IV Java-Bali to fulfill electricity demand in Bali. This project was more prefered compared to building another power plant in Bali which could raise social and cultural resistance. Life cycle cost method was used to complete the financial feasibility study to ensure if the project has economic benefit, and the asset would be used effectively and efficiently along its benefit period. In this paper, a life cycle cost will be simulated to analyze which alternative is the most profitable: installation circuit III and IV in 2012 or installation circuit III in 2012 and circuit IV in 2017 in accordance with load forecasting demand. This study is used to help the management to make a decision about the project. 展开更多
关键词 Financial feasibility life cycle cost high voltage undersea cable installation.
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Economic Analysis of using Above Ground Gas Storage Devices for Compressed Air Energy Storage System 被引量:4
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作者 LIU Jinchao ZHANG Xinjing +3 位作者 XU Yujie CHEN Zongyan CHEN Haisheng TAN Chunqing 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第6期535-543,共9页
Above ground gas storage devices for compressed air energy storage(CAES) have three types:air storage tanks,gas cylinders,and gas storage pipelines.A cost model of these gas storage devices is established on the basis... Above ground gas storage devices for compressed air energy storage(CAES) have three types:air storage tanks,gas cylinders,and gas storage pipelines.A cost model of these gas storage devices is established on the basis of whole life cycle cost(LCC) analysis.The optimum parameters of the three types are determined by calculating the theoretical metallic raw material consumption of these three devices and considering the difficulties in manufacture and the influence of gas storage device number.The LCCs of the three types are comprehensively analyzed and compared.The result reveal that the cost of the gas storage pipeline type is lower than that of the other two types.This study may serve as a reference for designing large-scale CAES systems. 展开更多
关键词 above ground gas storage device economic analysis life cycle cost analysis
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