DEHUMIDIFICATION APPARATUS, AND AIR CONDITIONING APPARATUS AND AIR CONDITIONING SYSTEM HAVING THE SAME
    8.
    发明申请
    DEHUMIDIFICATION APPARATUS, AND AIR CONDITIONING APPARATUS AND AIR CONDITIONING SYSTEM HAVING THE SAME 审中-公开
    除湿装置,空调装置及其空调系统

    公开(公告)号:US20140318369A1

    公开(公告)日:2014-10-30

    申请号:US14307804

    申请日:2014-06-18

    发明人: Dae-Young LEE

    IPC分类号: F24F3/14

    摘要: Disclosed are a dehumidification apparatus, and an air conditioning apparatus and system having the same. The dehumidification apparatus includes: a desiccant rotor having a desiccant for adsorbing moisture; and a regeneration unit disposed at one side of the desiccant rotor, for desorbing the moisture adsorbed to the desiccant. The regeneration unit includes at least one of a hollow hot water line containing hot water exchanging heat with the air flowing toward the desiccant rotor. The dehumidification apparatus efficiently reproduces the desiccant for dehumidification and air conditioning.

    摘要翻译: 公开了一种除湿装置和具有该除湿装置的空调装置和系统。 除湿装置包括:具有吸附水分的干燥剂的干燥剂转子; 以及设置在干燥剂转子的一侧的再生单元,用于解吸吸附在干燥剂上的水分。 再生单元包括至少一个中空热水管线,其中含有与流向干燥剂转子的空气热交换的热水。 除湿装置有效地再现用于除湿和空调的干燥剂。

    Method and system for integrated home cooling utilizing solar power
    9.
    发明授权
    Method and system for integrated home cooling utilizing solar power 有权
    利用太阳能发电综合家居冷却的方法和系统

    公开(公告)号:US08790451B1

    公开(公告)日:2014-07-29

    申请号:US13235338

    申请日:2011-09-16

    IPC分类号: B01D53/06 F24F3/147

    摘要: A system for utilizing solar energy for home utility supply includes an air collector coupled to a solar module disposed to collect ambient air carrying thermal energy generated from the solar module. The system includes an energy transfer module (ETM) comprising a first heat-exchanger configured to process a first air stream from the air collector and output a second air stream carrying a portion of the thermal energy. Additionally, the system includes an air-conditioning module for processing a third air stream from interior space. The system includes an air processor comprising a desiccant material to pre-condition the third air stream utilizing the second air stream in the ETM and form a fourth air stream for the air-conditioning module and a fifth air stream in the ETM. Furthermore, the system uses a second heat-exchanger to process the fourth air stream and form a six air stream with reduced temperature and humidity.

    摘要翻译: 一种利用太阳能进行家用电力供应的系统包括一个与太阳能模块耦合的空气收集器,太阳能模块设置成收集携带太阳能模块产生的热能的环境空气。 该系统包括能量传递模块(ETM),该能量传递模块(ETM)包括第一热交换器,其构造成处理来自空气收集器的第一气流并输出承载热能的一部分的第二气流。 此外,该系统包括用于处理来自内部空间的第三气流的空调模块。 该系统包括空气处理器,其包括干燥剂材料,以利用ETM中的第二气流来预处理第三气流,并形成空调模块的第四空气流和ETM中的第五气流。 此外,该系统使用第二热交换器来处理第四空气流并形成具有降低的温度和湿度的六个空气流。

    Microwave reactivation system for standard and explosion-proof dehumidification
    10.
    发明授权
    Microwave reactivation system for standard and explosion-proof dehumidification 有权
    微波再生系统,用于标准和防爆除湿

    公开(公告)号:US08704142B2

    公开(公告)日:2014-04-22

    申请号:US13116910

    申请日:2011-05-26

    申请人: Mario Caggiano

    发明人: Mario Caggiano

    IPC分类号: H05B6/64 H05B6/80

    摘要: The Microwave System and method of reactivation is designed to provide an indirect, safe and energy efficient source of heat and temperature rise required in the reactivation section of the desiccant unit for the release into atmosphere of the water vapors which are accumulated in the desiccant rotor. This microwave reactivation system and method is based on heat transfer produced from a heated fluid which is pumped through a closed loop coil assembly. This closed loop coil assembly is located and runs through both the isolated heating chamber of the microwave section and the reactivation/regeneration section in the dehumidification system. The airstream passing through the reactivation intake section comes in contact with the coil assembly and is heated to the desired temperature prior to reaching the desiccant rotor.

    摘要翻译: 微波系统和再活化方法被设计成提供在干燥剂单元的再活化部分中需要的间接,安全和能量高的热和温度上升的源,以释放到积聚在干燥剂转子中的水蒸汽的气氛中。 这种微波再生系统和方法是基于从泵送通过闭环线圈组件的加热流体产生的热传递。 该闭环线圈组件定位并穿过微波部分的隔离加热室和除湿系统中的再活化/再生部分。 通过再活化进气部分的气流与线圈组件接触并在到达干燥剂转子之前被加热到所需的温度。