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From Chooz to the Ling'ao NPP:The Technology Transfer of Pressurized Water Reactor Technology from France to China
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作者 CHEN Yue LI Yunyi 《Chinese Annals of History of Science and Technology》 2024年第1期97-124,共28页
The transfer of pressurized water reactor(PWR)technology from France to China is an important event in the history of Sino-French scientific and technological relations.China has gradually achieved self-reliance in th... The transfer of pressurized water reactor(PWR)technology from France to China is an important event in the history of Sino-French scientific and technological relations.China has gradually achieved self-reliance in the field of PWR technology through the introduction and subsequent absorption of France's 900 MW reactors.Compared with the process of introducing and absorbing similar technology from the United States by France,China's experience has been more complicated.This circumstance reflects the differences in the nuclear power technology systems between the two countries.France's industrial strength and early acquisition of nuclear power technology laid a solid foundation for mastering PWR technology.On the other hand,although China established a weak foundation through the implementation of the"728 Project,"and tried hard to negotiate with France,the substantive content of the technology transfer was very limited.By way of the policy transition from"unhooking of technology and trade"to"integration of technology and trade,"China ultimately accomplished the absorption and innovation of PWR technology through the Ling'ao NPP. 展开更多
关键词 pressurized water reactor(PWR) technology transfer Sino-French relations chooz NPP Daya Bay NPP Ling'ao NPP
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Chooz中微子探测器电子学系统的设计 被引量:1
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作者 张永明 《核电子学与探测技术》 EI CAS CSCD 北大核心 2000年第3期171-174,213,共5页
介绍了 Chooz中微子探测器中的电子学系统 ,简述 EMI9356KBA B53型光电倍增管的性能和组成该电子学系统的信号扇入 /扇出、信号多级触发、时间数字转换、波形数字化以及数据获取等各系统的设计原理。
关键词 chooz实验 电子学系统 设计 中微子探测器
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Chooz中微子探测器 被引量:1
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作者 张永明 《核技术》 CAS CSCD 北大核心 2000年第4期269-274,共6页
利用300m等效水深下掺钆的液体闪烁体探测器和1km外的大型核电站进行长程探寻中微子振荡实验,结果可见,探查在大值sin~2θ和混合角度下,△m~2值可至1×10^(-3)eV~2,总探测效率可达81%,探测总误差为3... 利用300m等效水深下掺钆的液体闪烁体探测器和1km外的大型核电站进行长程探寻中微子振荡实验,结果可见,探查在大值sin~2θ和混合角度下,△m~2值可至1×10^(-3)eV~2,总探测效率可达81%,探测总误差为3.7%-5.1%。 展开更多
关键词 中微子振荡实验 压水堆 chooz中微子探测器
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