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电厂燃气涡轮用单晶高温合金的进展 被引量:6
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作者 杨素玲 郑运荣 《机械工程材料》 CAS CSCD 北大核心 2002年第4期6-10,共5页
由于电厂大型燃气涡轮机市场需求不断扩大 ,导致了高效低成本大型机组的剧烈竞争 ,其结果是单晶一类先进高温合金被用于新型机组。根据航空涡轮发动机与电厂燃气涡轮机(UGT)在尺寸、运转环境和负载要求方面的重大差异 ,讨论了UGT叶片和... 由于电厂大型燃气涡轮机市场需求不断扩大 ,导致了高效低成本大型机组的剧烈竞争 ,其结果是单晶一类先进高温合金被用于新型机组。根据航空涡轮发动机与电厂燃气涡轮机(UGT)在尺寸、运转环境和负载要求方面的重大差异 ,讨论了UGT叶片和导向叶片用单晶合金的成分、力学性能和抗氧化与热腐蚀性能。 展开更多
关键词 电厂燃气涡轮 单晶 高温合金 成分 性能
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Performance and Economic Study of Oxy-fuel Gas Turbine Power Plant Utilizing Nuclear Steam Generator 被引量:1
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作者 K. Oshima Y. Uchiyama 《Journal of Energy and Power Engineering》 2010年第8期24-31,共8页
The authors propose a new closed cycle oxy-fuel gas turbine power plant that utilizes a nuclear heat generator. A pressurized water reactor (PWR) is designed to supply saturated steam to an oxy-fuel gas turbine for ... The authors propose a new closed cycle oxy-fuel gas turbine power plant that utilizes a nuclear heat generator. A pressurized water reactor (PWR) is designed to supply saturated steam to an oxy-fuel gas turbine for a specific power output increase The saturated steam from the reactor can have lower pressure and temperature than those of an existing PWR. In this study, the authors estimated plant performances from a heat balance model based on a conceptual design of a hybrid plant and calculated the generating costs of the proposed plant from the Japanese cost data of an existing PWR plant and an liquefied natural gas (LNG) combined cycle gas turbine plant. The generating efficiency of an oxy-fuel gas turbine plant without a nuclear steam generator is estimated to be less than 35%. Based on this efficiency, with a nuclear steam generator contributing to the power output of the proposed hybrid plant, the corresponding generating efficiency is estimated to be around 45%, even if the steam conditions are lower than in an existing PWR. The generating costs are 15-20% lower than those calculated from the weighted heat performances of both an oxy-fuel gas turbine plant without a nuclear steam generator and an existing PWR plant. 展开更多
关键词 Natural gas nuclear energy hybrid power plant gas turbine oxy-fuel combustion.
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Thermodynamic Analysis of Alternative Marine Fuels for Marine Gas Turbine Power Plants 被引量:1
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作者 Mohamed M. El Gohary Nader R. Ammar 《Journal of Marine Science and Application》 CSCD 2016年第1期95-103,共9页
The marine shipping industry faces challenges to reduce engine exhaust emissions and greenhouse gases (GHGs) from ships, and in particular, carbon dioxide. International regulatory bodies such as the International M... The marine shipping industry faces challenges to reduce engine exhaust emissions and greenhouse gases (GHGs) from ships, and in particular, carbon dioxide. International regulatory bodies such as the International Maritime Organization and National Environmental Agencies of many countries have issued rules and regulations to drastically reduce GHG and emissions emanating from marine sources. This study investigates the possibility of using natural gas and hydrogen as alternative fuels to diesel oil for marine gas turbines and uses a mathematical model to assess the effect of these alternative fuels on gas turbine thermodynamic performance. Results show that since natural gas is categorized as a hydrocarbon fuel, the thermodynamic performance of the gas turbine cycle using natural gas was close to that of the diesel case. However, the gas turbine thermal efficiency was found to be slightly lower for natural gas and hydrogen fuels compared to diesel fuel. 展开更多
关键词 ship emissions natural gas HYDROGEN gas turbine thermodynamic analysis gas turbine power plants greenhouse gases (GHGs)
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