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DEVELOPMENT OF ADVANCED-ULTRA-SUPER-CRITICAL TECHNOLOGIES FOR HIGH TEMPERATURE STEAM TURBINES

机译:高温汽轮机先进超级关键技术的开发

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Global warming due to increased CO2 levels in the atmosphere and resource saving have been the focus of world attention in the past decades. Efforts to improve generating efficiency by increasing the turbine inlet steam temperature and pressure in large capacity fossil-fuel and combined-cycle power plants are being made together with efforts to improve the internal efficiency. 700°C class Advanced Ultra-Super- Critical (A-USC) technology is one of the remarkable technologies being developed to reduce CO2 emissions, and one, which was chosen by Japan’s ‘Cool Earth- Innovative Energy Technology Program’, which was launched in 2008 to contribute to substantial reductions in CO2 emissions. Major Japanese manufacturers of boilers and turbines joined forces with research institutes to bring the project to reality. This paper illustrates the features and benefits of A-USC technologies for MHI’s 700°C class high temperature steam turbines, including cycle design, conceptual design (structure and alloy), and the development of candidate materials.
机译:全球变暖由于大气中的二氧化碳水平增加,资源储蓄是过去几十年来世界关注的焦点。通过增加大容量化石燃料和组合循环发电厂中的涡轮机入口蒸汽温度和压力来提高发电效率的努力正在进行提高内部效率。 700°C类高级超级关键词(A-USC)技术是为减少二氧化碳排放的显着技术之一,其中一个是由日本的“很酷的地球 - 创新能源技术计划”而启动的2008年,有助于减少二氧化碳排放量。日本锅炉和涡轮机的主要制造商与研究机构联系在一起,将项目带到现实。本文说明了MHI的700°C级高温汽轮机的USC技术的特点和优点,包括循环设计,概念设计(结构和合金)以及候选材料的开发。

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