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    • 2. 发明专利
    • Humidity controller
    • 湿度控制器
    • JP2014129985A
    • 2014-07-10
    • JP2012289033
    • 2012-12-28
    • Daikin Ind Ltdダイキン工業株式会社
    • FUJITA NAOTOSHIIKEGAMI SHUJI
    • F24F3/12
    • PROBLEM TO BE SOLVED: To suppress dew condensation at a time of dehumidification by a humidity controller.SOLUTION: A humidity controller includes: an absorbent circuit (30) to which first and second moisture absorbing-side modules (40a, 140a) in which liquid absorbent absorbs moisture from air and a moisture desorbing-side module (40b) in which the absorbent desorbs the moisture to the air are connected; coolers (46a, 146a) cooling the absorbent of both of the moisture absorbing-side modules (40a, 140a); and heaters (46b, 146b) heating the absorbent of the moisture desorbing-side module (40b). The second moisture absorbing-side module (140a) is arranged downstream of the first moisture absorbing-side module (40a) with respect to the air. The humidity controller includes a temperature adjustment unit (100) controlling the coolers (46a, 146a) so that a temperature of the absorbent of the first moisture absorbing-side module (40a) is higher than that of the absorbent of the second moisture absorbing-side module (140a).
    • 要解决的问题:通过湿度调节器来抑制除湿时的结露。解决方案:一种湿度调节器,包括:吸收回路(30),第一和第二吸湿侧模块(40a,140a),液体 吸收剂从空气中吸收水分和吸收剂将水分分散到空气中的湿气解吸侧组件(40b)连接; 冷却器(46a,146a)冷却两个吸湿侧模块(40a,140a)的吸收剂; 和加热器(46b,146b)加热湿气解吸侧模块(40b)的吸收体。 第二吸湿侧模块(140a)相对于空气配置在第一吸湿侧模块(40a)的下游。 湿度控制器包括控制冷却器(46a,146a)的温度调节单元(100),使得第一吸湿侧模块(40a)的吸收体的温度高于第二吸湿侧模块(40a)的吸收体的温度, 侧模块(140a)。
    • 3. 发明专利
    • Humidity conditioning element and humidity conditioning module
    • 湿度调节元件和湿度调节模块
    • JP2014020721A
    • 2014-02-03
    • JP2012161716
    • 2012-07-20
    • Daikin Ind Ltdダイキン工業株式会社
    • IKEGAMI SHUJI
    • F25B23/00F24F3/12
    • PROBLEM TO BE SOLVED: To prevent peeling of an absorbent even after contraction and extension are repeated in a humidity conditioning element having the absorbent on a surface of a thermal strain material.SOLUTION: A heat source part (70), in which portions (71, 72) having different cross section areas perpendicular to an axis (Y) are continuously formed, is formed along the predetermined axis (Y) by a thermal strain material which generates heat when a tensile force is applied and absorbs heat when the application of the tensile force is terminated. Absorption layers (23), which enable absorption and desorption of moisture in air, are provided on surfaces of the portions (71) having the larger cross section areas.
    • 要解决的问题:即使在热应变材料的表面上具有吸收剂的湿度调节元件中,即使在收缩和延伸之后也避免吸收剂的剥离。解决方案:一种热源部分(70),其中部分(71 连续形成具有垂直于轴线(Y)的截面积不同的横截面面积(72),通过在施加张力时产生热量的热应变材料沿着预定轴线(Y)形成,并且当应用 张力终止。 在具有较大横截面积的部分(71)的表面上设置吸收层(23),其能够吸收和解吸空气中的水分。
    • 4. 发明专利
    • Air-conditioning device
    • 空调设备
    • JP2014018764A
    • 2014-02-03
    • JP2012161504
    • 2012-07-20
    • Japan Organo Co Ltdオルガノ株式会社
    • DOI YUTAFUJITA MASASHIYAMANAKA KOJI
    • B01D53/18A61L9/16B01D47/14B01D53/26C02F1/46F24F3/12F24F3/16
    • PROBLEM TO BE SOLVED: To provide an air-conditioning device capable of appropriately determining timing to replenish or exchange cleaning water without increasing a cost.SOLUTION: An air-conditioning device comprises: air cleaning means 20 which has an intake port 11 and an exhaust port 12, stores cleaning water and circulates the same along a circulation passage to clean air introduced through the intake port by bringing the air in contact with the cleaning water; first temperature/humidity detection means 51 which detects a dry-bulb temperature and relative humidity of the air introduced through the intake port 11; calculation means 50 which calculates absolute humidity of the air introduced through the intake port 11 from the dry-bulb temperature as well as the relative humidity detected by the first temperature/humidity detection means 51 and an evaporation amount of the cleaning water per unit time on the basis of the calculated absolute humidity; and determination means 50 which determines necessity of replenishing or exchanging the cleaning water stored in the air cleaning means 20 on the basis of the evaporation amount per unit time calculated by the calculation means 50.
    • 要解决的问题:提供能够适当地确定补充或更换清洁水的时间而不增加成本的空调装置。解决方案:空调装置包括:空气净化装置20,其具有进气口11和排气口 端口12存储清洁水并循环循环通道,通过使空气与清洗水接触来清洁通过进气口引入的空气; 第一温度/湿度检测装置51,其检测通过进气口11引入的空气的干球温度和相对湿度; 计算装置50,其根据干球温度以及由第一温度/湿度检测装置51检测到的相对湿度和每单位时间的清洗水的蒸发量来计算通过进气口11引入的空气的绝对湿度 计算绝对湿度的基础; 以及确定装置50,其基于由计算装置50计算出的每单位时间的蒸发量,确定补充或更换存储在空气净化装置20中的清洁水的必要性。
    • 5. 发明专利
    • Air conditioner
    • 冷气机
    • JP2013242119A
    • 2013-12-05
    • JP2012117116
    • 2012-05-23
    • Parker Engineering Kkパーカーエンジニアリング株式会社Mayekawa Mfg Co Ltd株式会社前川製作所
    • SUDA HIROYUKISAITO HIROAKIOKAMURO YASUYUKIUEDA KAZUHISAHANAKI SOICHIRO
    • F24F3/12F24F11/02F25B29/00
    • PROBLEM TO BE SOLVED: To provide an air conditioner simplified compared with a conventional one which adjusts a temperature and the humidity of a circulating air flow to a predetermined value, and includes a cooling heat exchanger arranged on the upstream side with respect to the air flow to be adjusted, a heating heat exchanger arranged on the downstream side of the cooling heat exchanger, and a heat pump.SOLUTION: An air conditioner which adjusts a temperature and the humidity of a circulating air flow to a predetermined value includes: a cooling heat exchanger arranged on the upstream side with respect to an air flow to be adjusted; a heating heat exchanger arranged on the downstream side of the cooing heat exchanger; and a heat pump. In the air conditioner, the cooling heat exchanger is an evaporator of the heat pump, and the heating heat exchanger is a condenser of the heat pump.
    • 要解决的问题:提供一种简单的空气调节装置,其将常规的调节循环空气流的温度和湿度调节到预定值,并且包括布置在相对于气流的上游侧的冷却热交换器 布置在冷却热交换器的下游侧的加热热交换器和热泵。解决方案:将循环空气流的温度和湿度调节到预定值的空调包括:冷却热 交换器相对于要调节的空气流布置在上游侧; 布置在冷却热交换器的下游侧的加热热交换器; 和热泵。 在空调机中,冷却热交换器是热泵的蒸发器,加热热交换器是热泵的冷凝器。
    • 6. 发明专利
    • Refrigerating method, and refrigerating equipment
    • 制冷方法和制冷设备
    • JP2012072981A
    • 2012-04-12
    • JP2010218924
    • 2010-09-29
    • Mayekawa Mfg Co Ltd株式会社前川製作所
    • KATSURAGI YASUOKANBE MASANORIKOYAKATA TAKAHIROYOSHIKAWA TOMOIKUKAMIMURA TAKESHIMIYAZAKI MASARU
    • F25D21/10F24F3/12F25D21/04F28F1/02
    • PROBLEM TO BE SOLVED: To provide refrigerating equipment capable of reducing construction costs and operation costs of a freezer and significantly improving operational efficiency.SOLUTION: A plurality of microchannel heat exchangers 14 are dispersively disposed in an internal upper region of the freezer 11, and a COrefrigerant liquid is circulated to the microchannel heat exchangers 14 from an NH/COrefrigerating device 12 through a COcirculation pipe 16. A forced-convection zone Zis formed in the inside upper region, and a natural convection zone Zis formed at a lower region. The outside air oa is supplied to the freezer 11 from a compartment 18 for disposal of goods through a front compartment 20. The front compartment 20 and the freezer 11 are provided with desiccant rotor-type dehumidifiers 60, 106, and dehumidification coolers 52, 100, and the outside air oa is preliminarily cooled and dehumidified in the front compartment 20, and then supplied to the freezer 11. The air is further cooled and dehumidified in the freezer 11 to keep the inside air under an amount of saturated vapor (saturated vapor partial pressure) or less.
    • 要解决的问题:提供能够降低冷冻机的施工成本和运行成本并显着提高运行效率的制冷设备。 解决方案:多个微通道热交换器14分散地设置在冷冻器11的内部上部区域中,并且CO 2 制冷剂液体循环到微通道热交换器 14通过CO 2 3 / CO 2 制冷装置12 >循环管16.在内部上部区域形成强制对流区域Z 1 ,并且自然对流区域Z 2 形成在下部区域。 外部空气oa从隔室18供应到冷冻室11,用于通过前隔间20处理货物。前隔室20和冷冻箱11设置有干燥剂转子式除湿器60,106和除湿冷却器52,100 ,在前部室20中预先冷却除湿外部空气,然后将其供给到冷冻箱11.在冷冻室11中进一步冷却除湿空气,使内部空气保持一定量的饱和蒸气(饱和蒸气 分压)以下。 版权所有(C)2012,JPO&INPIT
    • 8. 发明专利
    • Stimulus control system using respiratory sensor
    • 使用呼吸器传感器的STIMULUS控制系统
    • JP2010022555A
    • 2010-02-04
    • JP2008186729
    • 2008-07-18
    • Sharp Corpシャープ株式会社
    • HARA KEITA
    • A61M21/02A63F13/00F24F3/12
    • PROBLEM TO BE SOLVED: To provide a stimulus control system for determining small changes of a user's health condition or mental states and generating a variety of stimuli according to the result of determination. SOLUTION: The stimulus control system includes: a respiration sensing device 270 including a gas sensor for measuring many kinds of specific gas density; stimulus generators 278, 280, 282, 284, and 286 for generating stimuli to a subject 32 to be measured; a health condition determination part 272 for determining the health condition of the subject 32 to be measured by concentration measured value of a plurality of specific gas components measured by the gas sensor; and a control unit 274 for controlling operation of the stimulus generator according to a method for adjusting stimulus determined by the health condition determination part 272. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于根据确定结果确定用户的健康状况或精神状态的小变化并产生各种刺激的刺激控制系统。 刺激控制系统包括:呼吸感测装置270,包括用于测量多种特定气体密度的气体传感器; 刺激发生器278,280,282,284和286,用于产生待测对象32的刺激; 健康状况判定部272,用于通过由气体传感器测量的多个特定气体成分的浓度测定值来决定被测定体32的健康状况; 以及控制单元274,用于根据由健康状况确定部272确定的刺激的方法来控制刺激生成器的操作。版权所有:(C)2010,JPO&INPIT