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    • 34. 发明公开
    • APPAREIL THERMIQUE
    • THERMISCHE VORRICHTUNG
    • EP2972045A2
    • 2016-01-20
    • EP14718730.6
    • 2014-03-14
    • Cooltech Applications S.A.S.
    • MULLER, Christian
    • F28D21/00
    • F25B21/00F28D15/00F28D21/00Y02B30/66
    • The present invention concerns a thermal apparatus (1) comprising at least one primary circuit (P
      1 ) in which a heat transfer fluid referred to as the primary fluid is displaced by a drive device with an alternating motion, and at least one heat exchanging interface (I1.1, I1.2) between the primary fluid and a secondary fluid flowing unidirectionally in a secondary circuit (S1.1, S1.2), said apparatus being characterised in that said interface (l1.1, I1.2) comprises at least one heat exchange area (ZN, ZN+1, Z'N, Z'N+1) in which the primary fluid and the secondary fluid move unidirectionally and countercurrent relative to each other.
    • 一种热敏设备(1),其包括至少一个初级回路(P1),其中传热主流体在往复运动中通过位移装置移动,并且至少一个热交换界面(I1,1,I1, 2),其中在次级回路中单向地存在次级流体(S1,1,S1,2)。 该装置的特征在于,交换界面(I1,1,I1,2)包括至少一个热交换区(ZN,NN + 1,Z'N,Z'N + 1),其中初级流体和次级 流体流动相对于彼此单向和逆流。
    • 37. 发明公开
    • PROCEDE DE GENERATION D'UN FLUX THERMIQUE ET GENERATEUR THERMIQUE MAGNETOCALORIOUE
    • 用于生产热流量与发热磁
    • EP2564132A1
    • 2013-03-06
    • EP11722844.5
    • 2011-04-27
    • Cooltech Applications S.A.S.
    • HEITZLER, Jean-ClaudeMULLER, Christian
    • F25B21/00
    • F25B21/00F25B2321/002Y02B30/66
    • The present invention relates to a method for generating a thermal flow from at least one thermal module (1) comprising at least two magnetocaloric elements (21, 22, 23, 24) which are connected two-by-two, through which a heat transfer fluid flows, and which are exposed to a variable magnetic field, wherein the heat transfer fluid circulates simultaneously through said elements (21, 22, 23, 24) in a manner synchronized with the variation in the magnetic field. Said method is characterized in that it consists, in addition, in exposing alternating elements of said elements (21, 22, 23, 24) to an opposite variation in the magnetic field, in causing the heat transfer fluid to circulate simultaneously and in opposite directions in said elements (21, 22, 23, 24), in such a manner that the fluid flowing out of one of said elements (21, 23; 22) at the end of a heating phase is circulated during the following phase in the following element (22, 24; 23) exposed to heating, as well as in that the fluid flowing out of one of said elements (22, 24; 23) at the end of a cooling phase is circulated during the following phase in the following element (21, 23; 22) exposed to cooling, and conversely, and in storing, between two magnetically opposite phases, the heat transfer fluid in an intermediate receiving area (81, 82, 83, 91, 92, 93). The invention also relates to a thermal generator implementing said method.
    • 39. 发明授权
    • GÉNÉRATEUR THERMIQUE À MATÉRIAU MAGNÉTOCALORIQUE
    • 与磁制冷材料发热
    • EP2315986B1
    • 2012-07-04
    • EP09737029.0
    • 2009-08-25
    • Cooltech Applications S.A.S.
    • HEITZLER, Jean-ClaudeMULLER, Christian
    • F25B21/00
    • F25B21/00F25B2321/002Y02B30/66
    • The present invention relates to a thermal generator (50), consisting of at least one thermal module (2) incorporating a magnetocaloric element (3) disposed between two chambers, hot (4) and cold (5), and completely traversed by an incompressible heat-carrying fluid by way of a first and of a second means of circulation (6, 7) each disposed in one of the hot (4) and cold (5) chambers, said thermal generator (1) also comprising a magnetic layout arranged so as to alternately submit the magnetocaloric element (3) to a variation of magnetic field and alternately create in the magnetocaloric element (3) a heating cycle and a cooling cycle, thermal generator (1) characterized in that it comprises at least one member (48) for fluidic linking between the volumes (V1 and V2) of the hot (4) and cold (5) chambers, which volumes are situated behind the first and second circulation means (6, 7) with respect to the magnetocaloric element (3), this fluidic linking member (48) and these volumes (V1 and V2) forming a closed circuit filled with an incompressible entrainment fluid, so that, on the one hand, during the displacement of the first means of circulation (6) towards the magnetocaloric element (3), said second means of circulation (7) displaces towards the end of the hot or cold chamber (4 or 5) concerned opposite from the magnetocaloric element (3) and, on the other hand, said second means of circulation (7) is returned automatically towards the magnetic element (3) when the first means of circulation (6) returns towards the end of the corresponding cold or hot chamber (5 or 4) opposite from the magnetocaloric element (3).