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    • 121. 发明公开
    • AIR CONDITIONING DEVICE
    • 空调装置
    • EP3021050A3
    • 2016-09-21
    • EP15192438.8
    • 2015-10-30
    • Samsung Electronics Co., Ltd.
    • LEE, Je-guNA, Seon-ukTAE, Sang-jin
    • F24F1/00
    • F24F11/0001F24F3/044F24F12/006F24F2011/0002Y02B30/563Y02B30/767
    • An air conditioning device having an indoor heat exchanger, a heat recovery ventilator, a supply fan, and an exhaust fan inside a housing and configured to perform at least one of cooling/heating, heat recovery ventilation, and pure ventilation. The air conditioning device includes a first flow path configured to guide indoor air while the cooling/heating is performed, a second flow path configured to guide the indoor air toward the heat recovery ventilator, and a third flow path configured to guide outdoor air toward the heat recovery ventilator while the heat recovery ventilation is performed. The air conditioning device includes fourth and fifth flow paths configured to guide indoor air and outdoor air, respectively, and an inlet port that corresponds to the third flow path and the fifth flow path, and a discharge port that corresponds to outlets of the second flow path and the fourth flow path.
    • 1。一种空调装置,其特征在于,在壳体内具有室内热交换器,热回收换气装置,供气扇以及排气扇,并且进行制冷制热,热回收换气以及纯净换气中的至少一方。 空气调节装置包括:第一流路,被构造成在进行制冷/制热的同时引导室内空气;第二流路,构造成引导室内空气朝向热量回收通风器;以及第三流路,构造成引导室外空气朝向 热回收通风机,同时进行热量回收通风。 空气调节装置包括分别引导室内空气和室外空气的第四和第五流动路径,以及与第三流动路径和第五流动路径对应的入口和与第二流动的出口对应的排放口 路径和第四流路。
    • 122. 发明公开
    • AIR CONDITIONING SYSTEM
    • 空调系统
    • EP3051220A1
    • 2016-08-03
    • EP14847887.8
    • 2014-07-01
    • Daikin Industries, Ltd.
    • SUHARA, RyoutaYAMAMOTO, TakayoshiYOKOMIZO, TsuyoshiMASUDA, Tomoo
    • F24F11/02
    • F24F11/30F24F3/044F24F3/065F24F11/46F24F11/61F24F2120/10F25B2600/0251
    • False determination in the presence or absence of a person in a in a room is limited. An air conditioner (20) suspends an air conditioning operation if a room (10) is vacant. If at least one of motion detectors (50), each provided to one of the indoor units (40), starts to detect the presence of a person during suspension of the air conditioning operation, an indoor controller (45) of an indoor unit (40a) sums, for each of the motion detectors (50), time periods in which the presence of the person is detected to obtain a detection time period sum. If any one of detection time period sums, each for one of the motion detectors (50), reaches a reference value (T2) within a predetermined time period (T3), the outdoor controller (37) causes the air conditioner (20) to resume the air conditioning operation.
    • 房间内有人存在或不存在的错误判断是有限的。 如果房间(10)空闲,空调(20)暂停空调操作。 室内机(40)的室内机(45),在室内机(40)中的一个室内机(40)中的至少一个动作检测机(50)开始检测空调运转停止中的人的存在的情况下, 40a)针对每个运动检测器(50),求和检测到人的存在以获得检测时间段总和的时间段。 如果检测时间段和中的任何一个在每个运动检测器50中在预定时间段(T3)内达到参考值(T2),则室外控制器(37)使空调器(20) 恢复空调运行。
    • 123. 发明公开
    • AIR CONDITIONING SYSTEM
    • 空调系统
    • EP2944887A3
    • 2016-01-20
    • EP15167110.4
    • 2015-05-11
    • LG Electronics Inc.
    • SON, SanghyeLEE, Hyeonyeong
    • F24F3/044F24F11/00F24F11/02
    • F24F3/044F24F11/30F24F11/52F24F11/56F24F11/62F24F11/64F24F11/65F24F11/89F24F13/04F24F2110/10F24F2110/12F24F2120/10F24F2140/60G05B15/02Y02B30/767
    • Disclosed herein is an air conditioning system. The conditioning system includes an air handling unit (AHU) configured to control outdoor air that is externally supplied, exhaust air that is outdoors discharged, and return air that is circulated indoors and supplied again, control the outdoor air or mixed air of the return air and the outdoor air at a set temperature, and supply cool/warm supply air indoors, at least one outdoor unit configured to supply a heat source for a heat exchange to the AHU, a controller configured to receive operating state data of the AHU and control an operation of the AHU through communication with the outdoor unit, and an interface unit connected to the controller and configured to output a control menu of the AHU, send data received through the control menu to the controller, and output a monitoring screen for the operating state of the AHU and the outdoor unit.
    • 这里公开了一种空调系统。 该调节系统包括空气处理单元(AHU),该空气处理单元(AHU)构造成控制外部供应的室外空气,室外排出的排出空气以及在室内循环并再次供应的返回空气,控制室外空气或返回空气的混合空气 以及设定温度的室外空气,并向室内供应冷/暖供应空气;至少一个室外单元,其被配置为向AHU供应用于热交换的热源;控制器,其被配置为接收AHU的运行状态数据并且控制 通过与室外单元通信的AHU的操作;以及接口单元,其连接到控制器并且被配置为输出AHU的控制菜单,将通过控制菜单接收的数据发送到控制器,并输出操作的监视屏幕 AHU和室外机的状态。
    • 124. 发明公开
    • Air handler
    • 空气处理器
    • EP2884193A2
    • 2015-06-17
    • EP14189951.8
    • 2014-10-22
    • LG ELECTRONICS INC.
    • Son, SangyukBang, Kisuk
    • F24F3/044F24F13/20
    • F24F13/20F24F3/044F24F2221/36
    • An air handler which allows modular assembly at a place of manufacture or outside of a building and modular transportation to a machine room of the building where the air handler will be installed, thereby achieving enhanced transportation convenience. In addition, in the air handler, a plurality of case panels may be assembled with a plurality of module frames via considerably simplified sliding coupling, providing excellent hermetic sealing. As such, manufacturing costs may be reduced due to a reduction in a number of components, and assembly time may be remarkably reduced due to a reduced number of assembly operations. This advantageously results in reduced labor costs and enhanced air conditioning efficiency.
    • 空气处理器允许在制造地点或建筑物外部进行模块化组装,并且可以将模块化运输到建筑物的将要安装空气处理器的机器房间,从而实现增强的运输便利性。 另外,在空气处理器中,多个箱体面板可以经由相当简化的滑动联接与多个模块框架组装,从而提供优异的气密密封。 因此,由于部件数量的减少,制造成本可能降低,并且由于组装操作数量减少,组装时间可能显着减少。 这有利地降低了劳动力成本并提高了空调效率。
    • 126. 发明授权
    • Method and system for conditioning air
    • 方法和系统室内空气的空调
    • EP2623878B1
    • 2015-01-28
    • EP12193045.7
    • 2012-11-16
    • Shinwa Controls Co., Ltd.
    • Hashimoto, Nobuyoshi
    • F24F11/00F24F3/044F24F3/16
    • F28F27/00F24F3/044F24F3/161F24F11/0008F24F11/30F24F11/46F24F2110/10F24F2110/20Y02B30/767
    • An air conditioning method achieves not only a reduction in the amount of cooling energy and the amount of dehumidification energy to approximately a limiting amount, but also a reduction in the amount of humidifying energy to approximately a limiting amount so as to provide substantial energy conservation, and enables to manufacture a compact air conditioning system at low cost. If an absolute humidity of the process air is calculated by use of measurements of changes in work conditions in cleanrooms and variations in atmospheric pressure, the required amount of air to be cooled and dehumidified flowing downstream through the main-stream duct and the required amount of humidification can be determined. Therefore, by outputting a signal indicative of the required amount of cooled-dehumidified air from the arithmetic means to actuate a controller of flow-rate regulating means, and outputting a signal indicative of the required amount of humidification from the arithmetic means to actuate a controller of humidifying means, the amount of air to be cooled and dehumidified can be reduced to the required amount of cooled-dehumidified air close to the limiting amount, thus achieving significant reductions in the amount of cooling energy, the amount of dehumidification energy, the amount of heating energy and the amount of humidifying energy.
    • 129. 发明公开
    • Method and system for conditioning air
    • 用于调节空气的方法和系统
    • EP2623878A2
    • 2013-08-07
    • EP12193045.7
    • 2012-11-16
    • Shinwa Controls Co., Ltd.
    • Hashimoto, Nobuyoshi
    • F24F11/00
    • F28F27/00F24F3/044F24F3/161F24F11/0008F24F11/30F24F11/46F24F2110/10F24F2110/20Y02B30/767
    • An air conditioning method achieves not only a reduction in the amount of cooling energy and the amount of dehumidification energy to approximately a limiting amount, but also a reduction in the amount of humidifying energy to approximately a limiting amount so as to provide substantial energy conservation, and enables to manufacture a compact air conditioning system at low cost. If an absolute humidity of the process air is calculated by use of measurements of changes in work conditions in cleanrooms and variations in atmospheric pressure, the required amount of air to be cooled and dehumidified flowing downstream through the main-stream duct and the required amount of humidification can be determined. Therefore, by outputting a signal indicative of the required amount of cooled-dehumidified air from the arithmetic means to actuate a controller of flow-rate regulating means, and outputting a signal indicative of the required amount of humidification from the arithmetic means to actuate a controller of humidifying means, the amount of air to be cooled and dehumidified can be reduced to the required amount of cooled-dehumidified air close to the limiting amount, thus achieving significant reductions in the amount of cooling energy, the amount of dehumidification energy, the amount of heating energy and the amount of humidifying energy.
    • 空气调节方法不仅实现了冷却能量和除湿能量的量降低至接近极限量,而且实现了加湿能量的减少至接近极限量,从而提供了实质的能量节约, 并且能够以低成本制造紧凑型空调系统。 如果通过使用洁净室中的工作条件变化和大气压力变化的测量来计算过程空气的绝对湿度,则通过主流管道向下游流动的所需要冷却和除湿的空气量以及所需量的 加湿可以确定。 因此,通过从运算装置输出表示所需冷却除湿空气量的信号,使流量调节装置的控制器动作,并从运算装置输出表示所需加湿量的信号,以启动控制器 能够将要冷却除湿的空气量减少到所需量的接近极限量的冷却除湿空气,因此能够大幅降低冷却能量的量,除湿能量的量, 的加热能量和加湿能量。