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    • 11. 发明专利
    • Ventilation control device
    • 通风控制装置
    • JP2006145115A
    • 2006-06-08
    • JP2004335855
    • 2004-11-19
    • Daikin Ind Ltdダイキン工業株式会社
    • NODA HIROSUKEOKAMOTO YASUNARIIKEGAMI HIROYUKIYAMAZAKI KENSUKEKAWADA KENICHI
    • F24F11/053F24F7/007F24F11/02
    • Y02B30/746
    • PROBLEM TO BE SOLVED: To improve stability and reliability in operation by preventing malfunction of a controller in a ventilation control device comprising the controller for controlling an air supply fan and an exhaust fan for a kitchen space. SOLUTION: In this ventilation control device A comprising the controller 11 controlling an exhaust air volume of the exhaust fan 4 for discharging the air in the kitchen space B1 outdoors in accordance with an operating state of a cooker C, and controlling an air supply volume of the air supply fan 22 for supplying the outdoor air into the kitchen space B1, with the exhaust fan 4, the controller 11 is mounted in a casing 12 same as an inverter 10 for controlling a motor 7 driving the exhaust fan 4 in a state that its rotational frequency is variable. Further a controller 31 of the inverter 30 controlling a motor 25 for driving the air supply fan 22 with variable rotational frequency and the controller 11 at an exhaust side are connected in a state that a signal can be transmitted and received to cooperatively control the exhaust air volume of the exhaust fan 4 and the supplied air volume of the air supply fan 22 in relation to each other. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过防止通风控制装置中的控制器的故障,提高操作中的稳定性和可靠性,包括用于控制供气风扇的控制器和用于厨房空间的排风扇。 解决方案:在这种换气控制装置A中,包括控制器11,控制排风扇4的排气量,以根据烹饪器C的操作状态将厨房空间B1中的空气排放到室外,并且控制空气 用于将室外空气供给到厨房空间B1中的供气风扇22的供给容量,排气风扇4,控制器11与用于控制驱动排气扇4的电动机7的逆变器10相同地安装在壳体12中 其旋转频率可变的状态。 此外,控制用于驱动可变转速的供气风扇22的电动机25和排气侧的控制器11的逆变器30的控制器31以能够被发送和接收的信号的状态连接以协同地控制排气 排风扇4的体积和供气风扇22的供给风量彼此相关。 版权所有(C)2006,JPO&NCIPI
    • 12. 发明专利
    • Hot water supply device
    • 热水设备
    • JP2004245449A
    • 2004-09-02
    • JP2003033676
    • 2003-02-12
    • Daikin Ind Ltdダイキン工業株式会社
    • SETOGUCHI TAKAYUKIOKAMOTO YASUNARINODA HIROSUKE
    • F24H1/00F24H7/02F28D20/00F28F23/00
    • Y02E60/142
    • PROBLEM TO BE SOLVED: To provide a hot water supply device with a safe capsule type heat storage unit. SOLUTION: The hot water supply device comprises a refrigerant circuit 21, the heat storage unit 31, and a hot water supply circuit 60. The refrigerant circuit 21 constitutes a heat pump in which refrigerant is circulated. The heat storage unit 31 stores a refrigerant heat transfer pipe 42 for the refrigerant circuit 21 and a hot water supply heat transfer pipe 52 for the hot water supply circuit 60 and also stores a plurality of heat storage material capsule 33 whose capsule body is filled with a heat storage material for absorbing the heat of the refrigerant in the refrigerant heat transfer pipe 42 and releasing the heat to city water in the hot water supply heat transfer pipe 52. The heat storage capsule 33 is formed in a spherical shape. As a result, the heat storage material is not mixed with the refrigerant or the city water even when the capsule body is broken. The degradation of the heat transfer performance of the heat storage material and the refrigerant is suppressed by the contact of the heat storage material capsule 33 with the refrigerant heat transfer pipe 42 and the hot water supply heat transfer pipe 52. COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题:为热水供应装置提供安全的胶囊型蓄热单元。 解决方案:热水供应装置包括制冷剂回路21,蓄热单元31和热水供应回路60.制冷剂回路21构成制冷剂循环的热泵。 储热单元31存储用于制冷剂回路21的制冷剂传热管42和用于热水供给回路60的热水供给用传热管52,并且还储存有胶囊体填充的多个储热材料胶囊33 用于吸收制冷剂传热管42中的制冷剂的热量并将热量释放到热水供给传热管52中的自来水的储热材料。储热胶囊33形成为球形。 结果,即使胶囊主体破裂,蓄热材料也不会与制冷剂或自来水混合。 蓄热材料胶囊33与制冷剂传热管42和热水供给用传热管52的接触,可以抑制蓄热材料和制冷剂的传热性能的劣化。版权所有(C) C)2004,JPO&NCIPI
    • 13. 发明专利
    • Humidity controller
    • 湿度控制器
    • JP2010286197A
    • 2010-12-24
    • JP2009141303
    • 2009-06-12
    • Daikin Ind Ltdダイキン工業株式会社
    • NODA HIROSUKE
    • F24F3/147F24F7/007F24F11/02
    • PROBLEM TO BE SOLVED: To suppress temperature fluctuation of dehumidification air supplied indoors in a humidity controller performing a dehumidifying operation by alternately switching two batch operations.
      SOLUTION: This humidity controller (10) includes an induction unit (100) for conditioning a temperature of the dehumidification air supplied to an indoor side from a humidity control mechanism (10a), wherein the induction unit (100) includes a housing (101), a driving air passage (109) formed in the housing (101) so that the dehumidification air supplied from the humidity control mechanism (10a) to the indoor side passes therethrough as the primary air, and a suction air passage (110) formed in the housing (101) so that the indoor air is sucked as the secondary air by the primary air in the driving air passage (109), and the secondary air and the primary air meet in the driving air passage (109) to be supplied indoors.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:通过交替地切换两批操作来抑制在执行除湿操作的湿度控制器中室内供应的除湿空气的温度波动。 解决方案:该湿度控制器(10)包括用于调节从湿度控制机构(10a)供应到室内的除湿空气的温度的感应单元(100),其中感应单元(100)包括壳体 (101),形成在壳体(101)中的驱动空气通道(109),使得从湿度调节机构(10a)供给到室内的除湿空气作为一次空气通过,吸入空气通道(110) ),使得室内空气被驱动空气通道(109)中的一次空气作为二次空气吸入,并且二次空气和一次空气在驱动空气通道(109)中相交到 在室内供应 版权所有(C)2011,JPO&INPIT
    • 14. 发明专利
    • Air conditioning system
    • 空调系统
    • JP2010156504A
    • 2010-07-15
    • JP2008334990
    • 2008-12-26
    • Daikin Ind Ltdダイキン工業株式会社
    • NODA HIROSUKE
    • F24F11/02F24F1/02F25B1/00
    • PROBLEM TO BE SOLVED: To provide an air conditioning system allowing additional installation of a humidity conditioner to an existing air conditioner without considering a remaining capacity state and assignment of a breaker. SOLUTION: The humidity conditioner (10) and the air conditioner (20) are connected to the breaker (31) for the same apparatus, and electric current flowing to the breaker (31) for the apparatus is detected by a current detector (35). A controller (36) controls a humidity conditioning capacity of the humidity conditioner (10) and an air conditioning capacity of the air conditioner (20) so that a detection value detected by the current detector (35) does not exceed a breaker capacity of the breaker (31) for the apparatus. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种空调系统,其允许在现有空调器附近安装湿度调节器,而不考虑剩余容量状态和断路器的分配。

      解决方案:湿度调节器(10)和空调器(20)连接到用于相同设备的断路器(31),并且流过用于设备的断路器(31)的电流由电流检测器 (35)。 控制器(36)控制湿度调节器(10)的湿度调节能力和空调(20)的空调容量,使得由电流检测器(35)检测的检测值不超过 断路器(31)用于设备。 版权所有(C)2010,JPO&INPIT

    • 15. 发明专利
    • Humidity controller
    • 湿度控制器
    • JP2005172272A
    • 2005-06-30
    • JP2003409328
    • 2003-12-08
    • Daikin Ind Ltdダイキン工業株式会社
    • OKAMOTO YASUNARINODA HIROSUKEYABU TOMOHIRONARUKAWA YOSHINORI
    • F24F3/153
    • PROBLEM TO BE SOLVED: To provide a humidity controller, using hot water as a heating source for regenerating an adsorption element, and enough exhibiting the capability.
      SOLUTION: This humidity controller is provided with adsorption elements 81, 82, a sensible heat exchanger 61, a hot water heat exchanger 11, and a humidifying cooler 21. In first air fed to the adsorption elements 81, 82, moisture contained therein is adsorbed to the adsorption elements 81, 82. The first air passed through the adsorption elements 81, 82 is fed to the sensible head exchanger 61. On the other hand, third air is cooled in the humidifying cooler 21, and fed to the sensible heat exchanger 61. In the sensible heat exchanger 61, heat exchange is performed between the first air and the third air passed through the adsorption elements 81, 82, so that the first air is radiated to the third air. The first air cooled while it is passed through the sensible heat exchanger 61 is supplied into the interior of a house.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种湿度控制器,使用热水作为用于再生吸附元件的加热源,并且具有足够的展现能力。

      解决方案:该湿度控制器设置有吸附元件81,82,显热交换器61,热水热交换器11和加湿冷却器21.在吸入元件81,82的第一空气中, 其中吸附到吸附元件81,82上。通过吸附元件81,82的第一个空气被送到敏感头部交换器61.另一方面,在加湿冷却器21中冷却第三个空气, 在显热换热器61中,在第一空气和通过吸附元件81,82的第三空气之间进行热交换,使得第一空气被辐射到第三空气。 在通过显热交换器61时冷却的第一空气被供给到房屋的内部。 版权所有(C)2005,JPO&NCIPI

    • 16. 发明专利
    • Humidity controller
    • 湿度控制器
    • JP2005172271A
    • 2005-06-30
    • JP2003409326
    • 2003-12-08
    • Daikin Ind Ltdダイキン工業株式会社
    • OKAMOTO YASUNARINODA HIROSUKENARUKAWA YOSHINORIYABU TOMOHIRO
    • F24F3/147F24F3/14
    • F24F3/1411F24F3/1429
    • PROBLEM TO BE SOLVED: To provide a humidity controller, using hot water as a heating source for regenerating an adsorption element and enough securing the amenity of the interior of a house.
      SOLUTION: This humidity controller is provided with adsorption elements 81, 82, a hot water heat exchanger 11 and a sensible heat exchanger 61. In first air as outdoor air (OA) fed to the adsorption elements 81, 82, moisture contained therein is adsorbed to the adsorption elements 81, 82. When the moisture in the first air is adsorbed to the adsorption elements 81, 82, heat of adsorption is generated, and the temperature of the first air is raised by the heat of adsorption. The first air passed through the adsorption elements 81, 82 is cooled by heat exchange with third air while it is passed through the sensible heat exchanger 61 and supplied to the interior of a house.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种湿度控制器,使用热水作为再生吸附元件的加热源,并且足够确保房屋内部的舒适性。 解决方案:该湿度控制器设置有吸附元件81,82,热水热交换器11和显热交换器61.在第一空气中,作为供给到吸附元件81,82的室外空气(OA),水分含有 其吸附到吸附元件81,82上。当第一空气中的水分吸附到吸附元件81,82时,产生吸附热,并且第一空气的温度由于吸附热而升高。 通过吸附元件81,82的第一空气通过与第三空气的热交换而被冷却,同时通过显热交换器61并供给到房屋的内部。 版权所有(C)2005,JPO&NCIPI
    • 17. 发明专利
    • Heat storage tank
    • 储热罐
    • JP2004278857A
    • 2004-10-07
    • JP2003068381
    • 2003-03-13
    • Daikin Ind Ltdダイキン工業株式会社
    • OKAMOTO YASUNARISETOGUCHI TAKAYUKINODA HIROSUKEMIYAJIMA MASAFUMI
    • F24H7/02F28D20/02
    • Y02E60/145
    • PROBLEM TO BE SOLVED: To provide a heat storage tank equipped with a sealed vessel capable of certainly absorbing a volume change of a latent heat storing material.
      SOLUTION: A heat storage unit 40 of this heat storage tank is equipped with the sealed vessel 43. The latent heat storing material 47 and a filler gas are encapsulated in the vessel 43. The vessel 43 is furnished with a heat storing material reservation part 44, a gas reservation part 44, and a communication part 46. The side wall 61 of the gas reservation part 45 is formed in bellows capable of expanding and contracting. With the side wall 61 only the filler gas is in contact, and the latent heat storing material 47 is not in contact. When the material 47 in the vessel 43 is melted, the side wall 61 elongates to increase the capacity of the vessel 43. When on the other hand, the latent heat storing material 47 is solidified, the side wall 61 is contracted so as to decrease the capacity of the vessel 43.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种配备有可以吸收潜热蓄积材料的体积变化的密封容器的蓄热箱。 解决方案:该蓄热箱的蓄热单元40装有密封容器43.潜热储存材料47和填充气体被包封在容器43中。容器43配备有储热材料 预约部分44,气体预留部分44和通信部分46.气体预留部分45的侧壁61形成为能够伸缩的波纹管。 只要侧壁61仅填充气体接触,并且潜热储存材料47不接触。 当容器43中的材料47熔化时,侧壁61伸长以增加容器43的容量。另一方面,潜热储存材料47固化,侧壁61收缩以减小 船舶的能力43.版权所有(C)2005,JPO&NCIPI
    • 20. 发明专利
    • Air conditioning system
    • 空调系统
    • JP2010133612A
    • 2010-06-17
    • JP2008308983
    • 2008-12-03
    • Daikin Ind Ltdダイキン工業株式会社
    • NODA HIROSUKE
    • F24F11/02F24F3/14
    • PROBLEM TO BE SOLVED: To efficiently carry out cooling humidification of an indoor space in an air conditioning system equipped with a humidity controller and an air-conditioning device directed to the same indoor space.
      SOLUTION: The air conditioning system is equipped with the humidity controller 10 carrying out indoor humidity control, and the air-conditioning device 100 carrying out indoor air conditioning. The humidity controller 10 is equipped with a dew point temperature detection part 62 detecting a dew point temperature Td of supply air SA on the basis of a temperature and humidity of the supply air SA, and air-conditioning control parts 116, 116a are composed to set a set temperature of an evaporation temperature Te of the operating air-conditioning device 100 so as to maximize the dew point temperature Td of the supply air SA of the humidity controller 10 detected during humidity control action right before one humidity control action during switching to the one humidity control action of the humidity controller 10 when the humidity controller 10 is carrying out humidification operation and the air-conditioning device 100 is concurrently carrying out cooling operation.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了有效地对配备有指向同一室内空间的湿度调节器和空调装置的空调系统中的室内空间进行冷却加湿。

      解决方案:空调系统配备有进行室内湿度控制的湿度调节器10和进行室内空调的空调装置100。 湿度控制器10配备有:露点温度检测部62,其基于供给空气SA的温度和湿度来检测供给空气SA的露点温度Td,空调控制部116,116a构成为 设定工作空气调节装置100的蒸发温度Te的设定温度,使切换到期间的一个湿度控制动作前的湿度调节动作期间检测到的湿度调节器10的供给空气SA的露点温度Td最大化 当湿度调节器10进行加湿操作时,湿度控制器10的一个湿度控制动作,空气调节装置100同时进行制冷运转。 版权所有(C)2010,JPO&INPIT