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    • 35. 发明申请
    • WASTE HEAT POWER GENERATION DEVICE AND GAS APPLIANCE USING THE SAME
    • 废热发电装置和使用该装置的气体装置
    • US20160204328A1
    • 2016-07-14
    • US14859956
    • 2015-09-21
    • Qibiao XIE
    • Qibiao XIE
    • H01L35/30F23Q3/00
    • H01L35/30F23G2206/203F23M2900/13003F23Q3/00Y02E20/12
    • Disclosed is a waste heat power generation device comprising a temperature difference power generation chip, a heat conduction block tightly attached to the hot end of the temperature difference power generation chip on which a current output end is arranged, and a radiator tightly attached to the cold end of the temperature difference power generation chip, wherein the heat conduction block is used for absorbing and transferring external heat to the hot end. A gas appliance is also disclosed, comprising a combustor, at least one electrical device powered by a chargeable battery, and the waste heat power generation device, wherein the current output end is electrically connected with the battery, and the heat conduction block is used for absorbing and transmitting heat generated from the combustor. The waste heat is converted into electrical energy and stored in the battery.
    • 公开了一种废热发电装置,其包括温差发电芯片,紧贴在配置有电流输出端的温差发电芯片的热端的导热块,以及与冷却器紧密连接的散热器 结束温差发电芯片,其中导热块用于吸收和转移外部热量到热端。 还公开了一种燃气器具,包括燃烧器,由可充电电池供电的至少一个电气装置和废热发电装置,其中电流输出端与电池电连接,并且导热块用于 吸收和传递从燃烧器产生的热量。 废热转化为电能并储存在电池中。
    • 40. 发明申请
    • PORTABLE COMBUSTION DEVICE UTILIZING THERMOELECTRICAL GENERATION
    • 利用热电发电的便携式燃烧装置
    • US20130112187A1
    • 2013-05-09
    • US13662650
    • 2012-10-29
    • BioLite LLC
    • Jonathan M. CedarAlexander H. DrummondClay BurnsMatthew Nowicki
    • F24B1/182A47J37/07F24B13/00
    • F24B1/182A47J37/0754F23B20/00F23M2900/13003F24B1/00F24B1/003F24B1/022F24B5/026F24B13/00H01L35/30Y02B40/163
    • This invention provides a portable combustion device that provides a cleaner combustion, reduces the kindling period, and provides a more efficient overall combustion through the use of a fan that directs a predetermined volume of airflow over the combustible fuel—typically wood or similar cellulose-based biological solids. The combustion device has a combustion chamber with a fuel source. A housing encloses the TEG on the side of the device that generates an electrical output based on a temperature differential between opposing TEG sides. A heat-conducting probe is mounted to the TEG and protrudes into the combustion chamber. The opposing TEG side contacts a heat sink that interacts with ambient air. A fan draws heated air away the heat sink, and forces the air onto the combusting fuel through a plurality of peripheral ports that connect with an air space located between inner and outer walls of the combustion chamber.
    • 本发明提供一种便携式燃烧装置,其提供更清洁的燃烧,减少点火时间,并且通过使用风扇来提供更有效的总体燃烧,所述风扇将预定体积的气流引导到可燃燃料 - 典型的木材或类似纤维素基 生物固体。 燃烧装置具有燃料源和燃料源。 外壳围绕设备侧面的TEG,其基于相对的TEG侧之间的温差产生电输出。 导热探头安装在TEG上并突出到燃烧室中。 相对的TEG侧接触与环境空气相互作用的散热器。 风扇将加热的空气吸入散热器,并且通过与位于燃烧室的内壁和外壁之间的空气空间连接的多个外围端口将空气迫使燃烧燃料。