SYSTEMS AND METHODS FOR MITIGATING HEAT REJECTION LIMITATIONS OF A THERMOELECTRIC MODULE
    1.
    发明公开
    SYSTEMS AND METHODS FOR MITIGATING HEAT REJECTION LIMITATIONS OF A THERMOELECTRIC MODULE 审中-公开
    系统和方法,以减少热电模块的散热极限

    公开(公告)号:EP3172503A1

    公开(公告)日:2017-05-31

    申请号:EP15747314.1

    申请日:2015-07-21

    IPC分类号: F25B21/02 F25B49/00

    摘要: Systems and methods for mitigating heat rejection limitations of a thermoelectric module are disclosed. In some embodiments, a method of operating a thermoelectric module includes providing a first amount of power to the thermoelectric module and determining that a temperature of a hot side of the thermoelectric module is above a first threshold. The method also includes, in response to determining that the temperature of the hot side is above the first threshold, providing a second amount of power to the thermoelectric module that is less than the first amount of power. The method also includes determining that the temperature of the hot side of the thermoelectric module is below a second threshold and providing a third amount of power to the thermoelectric module. In some embodiments, this mitigates heat rejection limitations of the thermoelectric module, especially when the hot side of the thermoelectric module is passively cooled.

    摘要翻译: 用于操作的热电模块,以提高效率的系统和方法游离缺失光盘。 在一些实施例中,一种操作热电模块的方法,包括确定性采矿功率的第一量确实会最大化的基于一个或更多个系统参数的热电模块的性能系数和提供功率的所述第一量与热电模块。 因此,该方法包括:确定挖掘并在一个或多个系统参数中的至少一个发生了变化,确定性采矿功率的第二量确实会最大化的基础上,一个或更多个系统参数的热电模块的性能系数,并且提供所述第二量 功率与热电模块。 在一些实施方式中,调整电力的量基于所述一个或多个系统参数只要提高热电模块的效率。

    MECHANISM FOR MITIGATING HIGH HEAT-FLUX CONDITIONS IN A THERMOSIPHON EVAPORATOR OR CONDENSER
    2.
    发明公开
    MECHANISM FOR MITIGATING HIGH HEAT-FLUX CONDITIONS IN A THERMOSIPHON EVAPORATOR OR CONDENSER 审中-公开
    机制弱化高热流IN A THERMOSIPHONVERDAMPFER或冷凝器条件的

    公开(公告)号:EP3099986A1

    公开(公告)日:2016-12-07

    申请号:EP15704166.6

    申请日:2015-01-28

    摘要: The present disclosure relates to systems, devices, and methods that augment a thermosiphon system (10) with a thermally conductive matrix material to increase the surface area to volume ratio for heat conduction at a predetermined region(s) of the thermosiphon system while minimizing capillary forces that are isolated to those region(s). The thermosiphon system has tubing including a condenser region (22), an evaporator region (24), and an adiabatic region (26) (e.g., a region between the condenser and evaporator regions). The tubing can contain a heat transport medium and can provide passive two-phase transport of the heat transport medium between the condenser and evaporator regions according to thermosiphon principles. The system also includes a thermally conductive matrix material contained in the condenser region and/or the evaporator region but not in the adiabatic region, such that the thermally conductive matrix material increases a surface area for heat transfer in the condenser region and/or the evaporator region.

    摘要翻译: 本发明涉及系统,装置和方法做了增强热虹吸系统(10)配有一个热传导基体材料以增加表面面积与体积之比为热传导的热虹吸系统的预定区域(S),同时最小化毛细管 力确实被隔离到那些区域(一个或多个)。 热虹吸管系统具有蒸发器区域(24)的冷凝器管道包括区域(22)中,在绝热区域(26)(E. G.,冷凝器和蒸发器区域之间的区域)。 该管可含有传热介质,并可以提供gemäß进行热虹吸原理的冷凝器和蒸发器区域之间的热传送介质的被动双相传输。 因此,该系统包括:包含在所述冷凝器区域和/或所述蒸发器区域而不是在绝热区域中的热传导基体材料,谋求DASS死热传导基体材料增加了在冷凝器区域和/或所述蒸发器的传热的表面积 区域。