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    • 1. 发明专利
    • Desiccant air conditioner supplying dry air of ultra low dew-point temperature
    • 供冷空调超低温低温干燥空气
    • JP2012159272A
    • 2012-08-23
    • JP2011021221
    • 2011-02-02
    • Azbil CorpShinko Kogyo Co Ltdアズビル株式会社新晃工業株式会社
    • NABESHIMA YASUSHITAKADA KEISUKEYOSHIDA KAZUTERUMATSUBA MASAHIKODAZAI RYUTATAKAKURA YOSHITAKA
    • F24F3/14
    • Y02B30/52
    • PROBLEM TO BE SOLVED: To provide a desiccant air conditioner using a regenerator of a heat source of 80°C or less, and supplying dry air of an ultra low dew-point temperature indoors.SOLUTION: Processing zones of first to third desiccant rotors having first to third coolers are communicated in series, the outside air is sucked from a first cooler side, and processed in the processing zones of the second desiccant rotor and the third desiccant rotor to supply the supply air of ultra low dew-point to an indoor side, a large amount of return air in the indoor side is returned to a downstream side of the processing zone of the first desiccant rotor at an upstream side of the processing zone of the second desiccant rotor, regenerating zones of the third to first desiccant rotors having the third to first coolers are communicated in series, an evaporator and a condenser of a heat pump circuit are combined in any of coolers and regenerators, each regenerator is heated at 80°C or less, a part of the supply air is supplied to the regenerating zones of the third regenerator and the third desiccant rotor, and the regenerated air is made to successively pass through the regenerating zones of the second desiccant rotor and the first desiccant rotor and discharged to the outside.
    • 要解决的问题:提供使用80℃以下的热源的再生器的干燥剂空调机,并在室内供给超低露点温度的干燥空气。 解决方案:具有第一至第三冷却器的第一至第三干燥剂转子的加工区域串联连通,外部空气从第一冷却器侧吸入,并在第二干燥剂转子和第三干燥剂转子的处理区域中进行处理 为了向室内供给超低露点的供给空气,室内侧的大量返回空气返回到处理区域的上游侧的第一干燥剂转子的处理区域的下游侧 第二干燥剂转子,具有第三至第一冷却器的第三至第一干燥剂转子的再生区域串联连接,蒸发器和热泵回路的冷凝器组合在任何冷却器和再生器中,每个再生器被加热至80℃ ℃以下,将供给空气的一部分供给到第三再生器和第三干燥剂转子的再生区域,再生空气依次通过再生器 产生第二干燥剂转子和第一干燥剂转子的区域并排放到外部。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Low temperature regenerative desiccant air conditioner
    • 低温再生空气调节器
    • JP2012145247A
    • 2012-08-02
    • JP2011002630
    • 2011-01-11
    • Kubota CorpKubota Kucho KkShinko Kogyo Co LtdTakenaka Komuten Co Ltdクボタ空調株式会社新晃工業株式会社株式会社クボタ株式会社竹中工務店
    • SUGI TETSUYAHIDARI MASAAKISHOJI HIROYUKIWADA KAZUKISHINOHARA MASAAKISUZUKI SHUNSUKEAOYANAGI YASUYUKIYOSHIDA KAZUTERU
    • F24F3/147F24F11/02
    • PROBLEM TO BE SOLVED: To provide a low temperature regenerative desiccant air conditioner that separately controls a latent heat load and sensible heat load and shows high accuracy in the control of room temperature and humidity to allow no waste of energy.SOLUTION: The low temperature regenerative desiccant air conditioner comprises: a total enthalpy heat exchanger 200 which exchanges the sensible heat and latent heat between the external air of an external air path 6 and the return air of a return air path 7; a bypass channel 201 of the total enthalpy heat exchanger; the first and second air flow-controlling dampers 202 and 203 as a first path-switching device for switching the external air path passing through the total enthalpy heat exchanger and the bypass channel of that exchanger; a desiccant rotor 102 which sorbs moisture from the external air of the external air path and desorbs the moisture by a return air at the side of the return air path to regenerate; a desiccant rotor bypass channel 150; and the first and second desiccant rotor air flow-controlling dampers 151 and 152 as a second path-switching device for switching the external air path passing through the desiccant rotor and a desiccant rotor bypass channel.
    • 要解决的问题:提供分别控制潜热负荷和显热负荷的低温再生干燥剂空调,并且在室温和湿度的控制中显示出高精度以不浪费能量。 解决方案:低温再生干燥剂空调包括:总焓热交换器200,其将外部空气路径6的外部空气和返回空气路径7的返回空气之间的显热和潜热交换; 总焓热交换器的旁路通道201; 第一和第二空气流量控制阻尼器202和203作为用于切换通过总焓热交换器和该交换器的旁通通道的外部空气路径的第一路径切换装置; 干燥剂转子102,其从外部空气路径的外部空气中吸收水分,并通过返回空气路径侧的返回空气解吸湿气以再生; 干燥剂转子旁通通道150; 以及作为用于切换通过干燥剂转子的外部空气路径和干燥剂转子旁通通道的第二路径切换装置的第一和第二干燥剂转子空气流量控制阻尼器151和152。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • 水蒸気選択透過膜を使用する全熱交換器
    • 使用水蒸气选择透明膜的总热交换器
    • JP2014214949A
    • 2014-11-17
    • JP2013091872
    • 2013-04-25
    • 新晃工業株式会社Shinko Kogyo Co Ltd
    • MURATA YASUSHIYOSHIDA KAZUTERU
    • F28F21/06F28D9/00
    • F28D9/00F28F21/06
    • 【課題】デシカント換気システムの運転に必要な可動部を排除し、装置をコンパクト化し、製造コストを低減する。【解決手段】対向流型あるいは並行流型の流路構成で、熱および水蒸気を透過する薄膜9を介して高温側の空気から低温側の空気へ熱を移動させつつ、高湿側の空気から低湿側の空気へ水蒸気を移動させる全熱交換作用を有する全熱交換器において、薄膜は、ガラス繊維あるいはセルロース繊維あるいはそれらの混合繊維から構成される紙または布の両面に吸湿性を有する樹脂の粒子(除湿材)を担持し、かつその厚さは0.5mm以下であることを特徴とする。【選択図】図1
    • 要解决的问题:为了省去干燥剂通风系统运行所需的可移动部分,使装置紧凑并降低制造成本。解决方案:在具有用于逆流或并联流动的流路构造的全热交换器中, 并且在将水蒸汽从高湿度空气移动到低湿度空气的同时,通过透过热水和水蒸气的薄膜9将热量从高温空气移动到低温空气的全热交换作用,薄膜9具有 由玻璃纤维或纤维素纤维或其混合纤维构成的纸或布形成的两侧承载的吸湿树脂颗粒(除湿介质),并且具有不大于0.5mm的厚度。
    • 5. 发明专利
    • Adsorption/desorption device and number-of-revolution control method of rotor
    • 转子/吸收装置和转子数转换控制方法
    • JP2012017890A
    • 2012-01-26
    • JP2010154548
    • 2010-07-07
    • Shinko Kogyo Co LtdYamatake Corp新晃工業株式会社株式会社山武
    • YAMAGUCHI MASAHIRONABESHIMA YASUSHIYOSHIDA KAZUTERUMATSUBA MASAHIKODAZAI RYUTATAKAKURA YOSHITAKAUSHIODA NAOFUMI
    • F24F3/147F24F11/02
    • PROBLEM TO BE SOLVED: To reduce variation in an adsorption/desorption state of a desiccant rotor by obtaining an adsorption/desorption state of water in the desiccant rotor and automatically adjusting the rotations of the desiccant rotor.SOLUTION: There is provided a water exchange state monitoring device 300A. The water exchange state monitoring device 300A includes: a humidity difference detecting part 15; a humidity difference setting value storage part 16; and a rotor rotation control calculating part 17. The humidity difference detecting part 15 detects humidity difference Δh of air of a processing side before and after passing through the desiccant rotor 3. The rotor rotation control calculating part 17 controls the rotations of the desiccant rotor 3 so that humidity difference Δh from the humidity difference detecting part 15 falls between humidity difference setting values Δhsp1 and Δhsp2 stored in the humidity difference setting value storage part 16. In the same way for a reproducing side, humidity difference Δh of air of a reproducing side before and after passing through the desiccant rotor 3 is detected, and the rotations of the desiccant rotor 3 can be controlled based on this detected humidity difference Δh.
    • 要解决的问题:通过获得干燥剂转子中的水的吸附/解吸状态并自动调整干燥剂转子的旋转来减少干燥剂转子的吸附/解吸状态的变化。 提供了一种水交换状态监视装置300A。 水交换状态监视装置300A包括:湿度差检测部15; 湿度差设定值存储部16; 和转子旋转控制计算部17.湿度差检测部15检测在通过干燥剂转子3之前和之后的处理侧的空气的湿度差Δh。转子旋转控制计算部17控制干燥剂转子3的旋转 使得与湿度差检测部15的湿度差Δh落在存储在湿度差设定值存储部16中的湿度差设定值Δhsp1和Δhsp2之间。再现侧以相同的方式,再现侧的空气的湿度差Δh 在通过干燥剂转子3之前和之后检测到干燥剂转子3的旋转,并且可以基于该检测到的湿度差Δh来控制干燥剂转子3的旋转。 版权所有(C)2012,JPO&INPIT