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6篇 您的检索式:作者名="K.Kaneko"
    题名 作者 年代 出处 被引量
1Natures of Rotating Stall Cell in a Diagonal Flow Fan显示文摘In order to clarify the natures of a rotating stall cell, the experimental investigation was carried out in a high specific-speed diagonal flow fan. The pressure field on the casing wall and the velocity fields at the rotor inlet and outlet were measured under rotating stall condition with a fast response pressure transducer and a single slant hot-wire probe, respectively. The data were processed using the “Double Phase-Locked Averaging (DPLA)”technique, which enabled to obtain the unsteady flow field with a rotating stall cell in the relative co-ordinate system fixed to the rotor. As a result, the structure and behavior of the rotating stall cell in a high specific-speed diagonal flow fan were shown.N.SHIOMI K.KANEKO T.SETOGUCHI 2005Journal of Thermal Science2005,14,1:2
2查看详情显示文摘K.Kaneko K.Terada T.Kyoya 0,,:1
3Measurement and interpretation of long-term deformation of a rock slope at the Ikura limestone quarry,Japan显示文摘Kodama J E.Nishiyama K.Kaneko 0,,01:1
4沥青基活性炭纤维的微孔性及其对NO、SO_2和NH_3的吸附特性显示文摘通过对新开发的沥青基活性炭纤维(ACF)在77K温度下对氮的吸附和303K温度下对苯的吸附研究,考察其微孔性。沥青基ACF具有均匀的微孔,孔径为0.9-1nm,孔体积为0.45-1.0ml/g。也考察了在303K温度下对NO、SO_2和NH_3的吸附行为。不仅对氮和苯而且对NO、SO_2和NH_3的吸附等温线进行了DR关联,作出关联图并讨论了微孔填充。微孔填充度按NO、NH_3、SO_2次序增大。每种气体微孔填充度和等量吸附热随这些被吸附气体的范德华(Van der Waals)力的增加而增加。K.Kaneko 黄迅 1990新型炭材料1990,6,2:1
5活性炭纤维对NO_2的吸附显示文摘NO和NO_2是典型的大气污染物;作为被吸附物,它们具有不同的性质。NO的临界温度为180K,在室温下处于超临界状态;而NO_2是一种可凝气体,因它的沸点为294K,且具有二聚作用。因此,只有极少数微孔固体才对NO有效吸附。分散的过渡金属氧化物的活性炭纤维(ACF)利用微孔填充的化学吸附能吸附大量的NO。在氧化铁为分散体时。K.Kaneko J.Imai 陈玉琴 1990新型炭材料1990,6,3:1
62-7 Charge and Frequency Resolved Isochronous Mass Spectrometry in Storage Rings: First Direct Mass Measurement of the Short-lived Neutron-de cient 51Co Nuclide显示文摘Isochronous mass spectrometry in storage rings is a successful technique for the precision mass measurements ofthe nuclides with half-lives down to tens of microseconds[1]. Since the isochronous condition =t greatly reducesthe influence of the velocity difference on the ion revolution periods, the revolution period difference ΔT =T ??TRof a stored ion with respect to a reference time TR is directly related to its mass-to-charge ratio difference Δ(m=q),written in the first order as:Shuai Peng Xu Hushan Tu Xiaolin Zhang Yuhu Sun Baohua Yu.A.Litvinov Yan Xinliang K.Blaum Wang Meng Zhou Xiaohong He Jianjun Sun Yang K.Kaneko Yuan Youjin Xia Jiawen Yang Jiancheng G.Audi Chen Xiangcheng Jia Guobin Hu Zhengguo Ma Xinwen Mao Ruishi Mei Bo Sun Zhiyu Wang Shitao Xiao Guoqing Xu Xing T.Yamaguchi Y.Yamaguchi Zang Yongdong Zhao Hongwei Zhao Tiecheng Zhang Wei Zhan Wenlong 2014IMP & HIRFL Annual Report2014,,1:0
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