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    • 1. 发明专利
    • Control device and control method
    • 控制装置和控制方法
    • JP2011075194A
    • 2011-04-14
    • JP2009226756
    • 2009-09-30
    • Yamatake Corp株式会社山武
    • TANAKA MASAHITODAZAI RYUTA
    • F24F11/02F24F11/053F24F11/06
    • PROBLEM TO BE SOLVED: To reduce decline in efficiency caused by frequent switching between the control by individual air conditioners and the control by outside air cooling.
      SOLUTION: Cooperative controllers 1-1, 1-2 of an air conditioning system include control mode selection switching determination parts performing the switching between a control mode for outside air cooling to control room temperature by increasing/decreasing an effect by an outside air cooler 105 and a control mode for individual air conditioning to control room temperature by increasing/decreasing effects by the individual air conditioners 101-1, 101-2. In the state where outside dampers 108-1, 108-2 have maximum openings and heat exchange parts 112-1, 112-2 of the individual air conditioners 101-1, 101-2 have minimum output, the control mode selection switching determination parts select the control mode for individual air conditioning when the room temperature exceeds a room temperature set value, and select the control mode for outside air cooling when the room temperature becomes the room temperature set value or lower. A time lag is provided when the control mode is switched.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:减少单个空调的控制频繁切换和外部空气冷却控制引起的效率下降。 解决方案:空调系统的协同控制器1-1,1-2包括控制模式选择切换确定部件,其通过增加/减少外部效果来执行外部空气冷却的控制模式以控制室内温度之间的切换 空气冷却器105和用于各个空调的控制模式,以通过各个空调101-1,101-2的增加/减少的效果来控制室温。 在外部阻尼器108-1,108-2具有最大开口和各个空调机101-1,101-2的热交换部件112-1,112-2具有最小输出的状态下,控制模式选择切换确定部件 当室温超过室温设定值时,选择单独空调的控制模式,当室温成为室温设定值以下时,选择外部空气冷却的控制模式。 当切换控制模式时提供时滞。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • WIND-DIRECTION ADJUSTMENT DEVICE OF AIR CONDITIONING EQUIPMENT
    • JPH0861768A
    • 1996-03-08
    • JP6398295
    • 1995-03-23
    • SAMSUNG ELECTRONIC
    • KICHI YONHIYUN
    • F24F11/06F24F13/15F24F13/20F24F1/00
    • PURPOSE: To prevent a blown air direction-adjusting device from influencing against discharged air and reduce any operating noise generated at vanes, by a method wherein a turning operation of hinge pins capable of pivotally supporting each of the blades turned right and left is supported and many hinge pins are integrally connected to each other. CONSTITUTION: A lower stage of each of right and left adjusting vanes 20 is formed with a lower pin 22 fitted to a hole 13a. In turn, an upper pin 21 is projected and formed on a straight line together with the lower pin 22 at an upper stage of each of the right and left adjusting vanes 20. Further, an upper plate 12 and a fixing member 14 coupled to the upper plate 12 are formed with each of pin receptors 12a, 14a for rotatably supporting each of the upper pins 21. Then, each of the upper pins 21 is provided with a connecting member 30 for connecting each of the upper pins so as to cause each of the right and left adjusting vanes 20 to be cooperatively operated. Such a connecting member 30 as above is constituted by protrusions 31 formed at each of the upper pins 21 so as to be projected out toward the fixing member 14, and by a connecting part 32 for connecting each of the protrusions 31.
    • 9. 发明专利
    • AIR CONDITIONING SYSTEM FOR BUILDING
    • JPS63118546A
    • 1988-05-23
    • JP26430986
    • 1986-11-05
    • TAKENAKA KOMUTEN COSHINKO KOGYO KK
    • YAMADA TETSUOINOUE YOSHINORIMIURA SHINJIENDO MASAOKANEDA SETSUOYOSHIDA YASUTOSHI
    • F24D11/02F24F3/08F24F5/00F24F11/06F28D15/02
    • PURPOSE:To reduce the system capacity of air conditioning equipment by disposing a first heat storage tank as a cold source at a higher position and a second heat storage tank as a hot source at a lower position, and connecting the first heat storage tank and air conditioners, and the air conditioners and the second air conditioner with gravitational heat pipes. CONSTITUTION:A first heat storage tank in the form of an ice heat storage tank 1 as a cold source is disposed at a higher position of a building, while a second heat storage tank in the form of a hot water heat storage tank 2 as a hot source is disposed at a lower position. Air conditioners 3 are disposed between the ice heat storage tank 1 and hot water heat storage tank 2, and a connection is made between the respective heat storage tanks 1, 2 and air conditioners 3 with gravitational heat pipes 4, 5. Refrigerant is circulated through the heat pipes 4, 5. Ice produced in an ice maker 12 is pumped under pressure to the ice heat storage tank 1 by a pump 13. A hot water heat recovery pipe 15 is disposed between the hot water heat storage tank 2 and heat exchanger 14 of a condenser to deliver hot water to the hot water heat storage tank 2 under pressure by a pump 16. Where the heat sources are directly connected to the air conditioners 3, the system capacity of the heat source devices that can handle the peak load can be made smaller by using both the heat sources and the heat storage tanks 1 or 2.
    • 10. 发明专利
    • Operation control device for air-conditioning machine for multi-chamber operation
    • 用于多室操作的空调机的操作控制装置
    • JPS6179932A
    • 1986-04-23
    • JP20083184
    • 1984-09-26
    • Matsushita Electric Ind Co Ltd
    • YOKOI TOSHIO
    • F24F11/02F24F11/06
    • F24F11/83
    • PURPOSE:To send necessary amount of refrigerant to respective rooms and reduce the fluctuation of room temperature by a method wherein a plurality of indoor machines is provided with temperature detecting means and temperature setting means respectively and the operating frequency as well as the choking means of a compressor are changed to regulate the amount of refrigerant in accordance with the difference of the temperatures. CONSTITUTION:Refrigerant, condensed by heat dissipation in an outdoor side heat exchanger 2, is distributed to indoor heat exchanges 3, 4 of first and second rooms. When the indoor temperature of the first room is same as or higher than a set temperature, a two-way valve 5 is opened to flow the refrigerant to the first room heat exchanger 3 and two-way valves 6, 7 are opened or closed to set the choking thereof. Next, the two-way valve 8 of second room is also opened and the choking is set by opening or closing the two-way valves 9, 10. Subsequently, the operating frequency of the compressor is changed in accordance with the necessary amount of cooling for both rooms. Successively, the choking as well as the frequency of the compressor are changed in accordance with the temperature differences in both rooms to change the amount of refrigerant to be flowed into the heat exchangers 3, 4 for both rooms.
    • 目的:通过多个室内机分别设置有温度检测装置和温度设定装置以及工作频率以及窒息装置的方法,向各室发送必要量的制冷剂并减少室温的波动 改变压缩机以根据温度差来调节制冷剂的量。 构成:在室外侧热交换器2中通过散热而冷凝的制冷剂被分配到第一室和第二室的室内热交换器3,4中。 当第一房间的室内温度等于或高于设定温度时,打开​​二通阀5以使制冷剂流动到第一室内热交换器3,并且开闭阀6,7关闭 设置窒息。 接下来,第二室的开闭阀8也打开,通过打开或关闭开闭阀9,10来设定阻塞。随后,根据所需的冷却量来改变压缩机的工作频率 两房间。 接着,压缩机的阻塞以及频率根据两室的温度差而变化,以改变流入两室的热交换器3,4的制冷剂的量。