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    • 2. 发明授权
    • Gas storage apparatus
    • 储气装置
    • US07112239B2
    • 2006-09-26
    • US10848055
    • 2004-05-19
    • Masahiko KimbaraDaigoro MoriTakehiro NitoHidehito KuboKeiji Toh
    • Masahiko KimbaraDaigoro MoriTakehiro NitoHidehito KuboKeiji Toh
    • F17C11/00
    • C01B3/0005F17C11/005F17C2205/013F17C2223/0123F17C2227/0337Y02E60/321Y02E60/327
    • A hydrogen storage apparatus that includes multiple gas storage tanks that each house a storing/adsorbing material and through the interior of which a fluid travels is provided. The gas storage apparatus 10 includes roughly cylindrical gas storage tanks 20 that house hydrogen-storing alloy. The multiple gas storage tanks 20 are disposed longitudinally parallel to each other in an ordered fashion such that roughly triangular prism-shaped empty spaces are formed between multiple adjacent hydrogen storage tanks 20. Coolant paths through which coolant flows are formed in these roughly triangular prism-shaped empty spaces. These coolant paths are thermally connected to the hydrogen-storing alloy in the gas storage tanks 20 via constituent members of the gas storage tanks 20 and via heat transfer plates 28 disposed on the gas storage tanks 20.
    • 一种氢存储装置,其包括多个储气罐,每个储气罐容纳储存/吸附材料并且通过其流体行进的内部。 气体存储装置10包括容纳储氢合金的大致圆筒形的储气罐20。 多个储气罐20以有序的方式彼此纵向平行地设置,使得在多个相邻的氢存储罐20之间形成大致三角形的棱柱形空间。 冷却剂流过的冷却剂路径形成在这些大致三角形的棱柱形空间中。 这些冷却剂路径经由气体储存槽20的构成部件和设置在气体储存槽20上的传热板28与气体储罐20中的储氢合金热连接。