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一种应用于冬奥会中的低碳CO_(2)冰场技术
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作者 李力耕 刘楷 +8 位作者 田华 蔡金文 Christos N Markides 王竞宇 石凌峰 王轩 马一太 梁兴雨 舒歌群 《Science Bulletin》 SCIE EI CAS CSCD 2023年第23期2877-2880,共4页
The issue of climate change is among the most difficult environmental problems faced by human beings[1]and affects all social aspects of human life.In 2015,the Paris Agreement set the goal of reducing global greenhous... The issue of climate change is among the most difficult environmental problems faced by human beings[1]and affects all social aspects of human life.In 2015,the Paris Agreement set the goal of reducing global greenhouse gas(GHG)emissions to limit the global temperature increase to 2℃and even further to 1.5℃[2]. 展开更多
关键词 冬奥会 LIMIT GREENHOUSE
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Demonstration of a small‐scale power generator using supercritical CO_(2)
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作者 ligeng li Hua Tian +7 位作者 Xin lin Xianyu Zeng Yurong Wang Weilin Zhuge lingfeng Shi Xuan Wang Xingyu liang Gequn Shu 《Carbon Energy》 SCIE EI CAS 2024年第4期269-290,共22页
The supercritical CO_(2)(sCO_(2))power cycle could improve efficiencies for a wide range of thermal power plants.The sCO_(2)turbine generator plays an important role in the sCO_(2)power cycle by directly converting th... The supercritical CO_(2)(sCO_(2))power cycle could improve efficiencies for a wide range of thermal power plants.The sCO_(2)turbine generator plays an important role in the sCO_(2)power cycle by directly converting thermal energy into mechanical work and electric power.The operation of the generator encounters challenges,including high temperature,high pressure,high rotational speed,and other engineering problems,such as leakage.Experimental studies of sCO_(2)turbines are insufficient because of the significant difficulties in turbine manufacturing and system construction.Unlike most experimental investigations that primarily focus on 100 kW‐or MW‐scale power generation systems,we consider,for the first time,a small‐scale power generator using sCO_(2).A partial admission axial turbine was designed and manufactured with a rated rotational speed of 40,000 rpm,and a CO_(2)transcritical power cycle test loop was constructed to validate the performance of our manufactured generator.A resistant gas was proposed in the constructed turbine expander to solve the leakage issue.Both dynamic and steady performances were investigated.The results indicated that a peak electric power of 11.55 kW was achieved at 29,369 rpm.The maximum total efficiency of the turbo‐generator was 58.98%,which was affected by both the turbine rotational speed and pressure ratio,according to the proposed performance map. 展开更多
关键词 generator performance map power generation supercritical CO_(2) turbine
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