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    • 1. 发明申请
    • HYDROGEN GAS STORING DEVICE
    • 氢气储存装置
    • US20100236767A1
    • 2010-09-23
    • US12599489
    • 2008-05-09
    • Keiji TohDaigoro MoriKatsuhiko HiroseNorihiko Haraikawa
    • Keiji TohDaigoro MoriKatsuhiko HiroseNorihiko Haraikawa
    • F28F1/30
    • F17C11/005C01B3/0005C01B3/0026C01B3/0031Y02E60/321Y02E60/327Y02P90/45
    • A plurality of MH tank modules (13) each include a cylindrical porous member (14). The porous member (14) is formed as a hydrogen flow path (15) through which hydrogen can flow and has straight grooves formed on the outer circumferential surface. A plurality of fins (17) are attached to the porous member (14). A first edge and a second edge of each fin (17) are fitted in different grooves. The fins (17) define a plurality of accommodation chambers (19) for accommodating MH powder P. The MH tank modules (13) are accommodated in the housing while being arranged adjacent to each other to form a predetermined shape. Heat medium pipes (22a, 22b) are arranged in the housing (12) so as to contact the fins (17) and correspond to the accommodation chambers (19). Heat medium flows through the heat medium pipes (22a, 2b). Therefore, it is possible to provide a hydrogen gas storing device that easily increases the number of places to be installed in and facilitates the installment.
    • 多个MH箱模块(13)各自包括圆柱形多孔构件(14)。 多孔构件(14)形成为氢流动通道(15),氢气可以通过该流动路径流动,并且在外圆周表面上形成有直槽。 多个翅片(17)附接到多孔构件(14)。 每个翅片(17)的第一边缘和第二边缘装配在不同的凹槽中。 翅片(17)限定用于容纳MH粉末P的多个容纳室(19).MHC箱模块(13)容纳在壳体中,同时彼此相邻布置以形成预定形状。 热介质管道(22a,22b)布置在壳体(12)中以与翅片(17)接触并对应于容纳室(19)。 热介质流过热介质管道(22a,2b)。 因此,可以提供容易增加安装位置的数量并便于安装的氢气存储装置。