冷熱エネルギー輸送用界面活性剤添加低温水の管内流動抵抗と熱伝達特性
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(2) The Japan Society of Mechanical Engineers. NII-Electronic Library Service.
(3) The Japan Society of Mechanical Engineers. NII-Electronic Library Service.
(4) The Japan Society of Mechanical Engineers. NII-Electronic Library Service.
(5) The Japan Society of Mechanical Engineers. NII-Electronic Library Service.
(6) The Japan Society of Mechanical Engineers. NII-Electronic Library Service.
(7) The Japan Society of Mechanical Engineers. NII-Electronic Library Service.
(8) The Japan Society of Mechanical Engineers. NII-Electronic Library Service.
(9)
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et al., Evaluation of Robotic Open Loop Mechanisms using Dynamic Characteristic Charts (in Japanese), Transactions of the Japan Society of Mechanical Engineers, Series C,
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This study proposes a method of generating the optimized trajectory, which determines change of the displacement of a robot with respect to time, to reduce electrical energy or
特に、耐熱性に優れた二次可塑剤です(DOSより良好)。ゴム軟化剤と
直流抵抗 温度上昇 PART
事象発生から 7 時間後の崩壊熱,ポロシティ及び格納容器圧力への依存性を考慮し た上面熱流束を用いた評価を行う。上面熱流束は,図 4-4 の
事象発生から 7 時間後の崩壊熱,ポロシティ及び格納容器圧力への依存性を考慮し た上面熱流束を用いた評価を行う。上面熱流束は,図 4-4 の
核分裂あるいは崩壊熱により燃料棒内で発生した熱は、燃料棒内の熱