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    • 1. 发明公开
    • SORPTIONSMODUL
    • EP3230661A1
    • 2017-10-18
    • EP15804104.6
    • 2015-11-30
    • Mahle International GmbH
    • BURK, RolandLUDWIG, Lars
    • F25B17/00F25B17/08F25B49/04F25B35/00F25B35/04F25B37/00F25B39/00
    • F25B49/046F25B17/00F25B17/086F25B35/00F25B35/04F25B37/00F25B39/00Y02A30/276
    • The present invention relates to a sorption module (1) for a sorption temperature control device (37), comprising: a housing (2), enclosing a working chamber (3) in which a sorption zone (4) and a phase- change zone (5) are arranged and in which a working medium can be reversibly moved between the sorption zone (4) and the phase-change zone (5); a sorption structure (6) arranged in the sorption zone (4), said sorption structure being coupled in a heat-transferring manner to a sorption path (7) for guiding a sorption path medium; and a phase-change structure (8) arranged in the phase-change zone (5), said phase-change structure being coupled in a heat-transferring manner to a phase change path (9) for guiding a phase-change path medium. The sorption module (1) according to the invention has a higher power density if an outer wall (10) of the housing (2) is double-walled in at least one section (11) so that a cavity (15) is formed between an outer wall (12) and an inner wall (13), through which cavity the phase-change path (9) is conducted, the phase-change zone (5) being arranged on an inner face (16) of the inner wall (13).
    • 本发明涉及一种用于吸附温度控制装置(37)的吸附模块(1),其包括:壳体(2),其封闭工作室(3),吸附区(4)和相变区 (5),并且其中工作介质可以在吸附区(4)和相变区(5)之间可逆地移动; 设置在吸附区(4)中的吸附结构(6),所述吸附结构以传热方式与用于引导吸附路径介质的吸附路径(7)耦合; 和布置在相变区(5)中的相变结构(8),所述相变结构以热传递的方式耦合到用于引导相变路径介质的相变路径(9)。 如果壳体(2)的外壁(10)在至少一个区段(11)中是双壁的,则根据本发明的吸附模块(1)具有较高的功率密度,使得腔室 一个外壁(12)和一个内壁(13),相变路径(9)通过其被引导通过该腔,相变区(5)布置在内壁(12)的内表面(16) 13)。