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    • 1. 发明专利
    • Method for controlling refrigeration cycle apparatus
    • 控制制冷循环装置的方法
    • JP2011012958A
    • 2011-01-20
    • JP2010237333
    • 2010-10-22
    • Mitsubishi Electric Corp三菱電機株式会社
    • TANAKA KOYUYAMASHITA KOJIYOSOMIYA MASATOSHIBA HIROKUNI
    • F25B49/02F25B45/00
    • PROBLEM TO BE SOLVED: To precisely determine whether a refrigerant amount in an air conditioner is appropriate in any environmental conditions and installation conditions in accordance with a variation of air conditioner equipment system configuration, and equipment-installation-based piping length, piping diameter, level difference, number of connected indoor units and indoor unit capacity.SOLUTION: For refrigerant amount regulation, a flow regulating means 32 is disposed in the position of a passage to a refrigerant circuit from a refrigerant cylinder 31 filled with a recharge of refrigerant to an air conditioning refrigeration cycle apparatus. At refrigerant amount regulation, an operational state quantity varying with refrigerant amount is detected, and when the operation state quantity approaches a reference value stored in a storage means, the flow regulating means reduces the rate of refrigerant filling from the refrigerant cylinder to the refrigeration cycle apparatus.
    • 要解决的问题:要根据空调设备系统配置的变化以及设备安装的管道长度,管道直径,水平等来精确确定空调中的制冷剂量是否适合任何环境条件和安装条件 差异,连接室内单元数量和室内机容量。解决方案:对于制冷剂量调节,流量调节装置32设置在从制冷剂气缸31的制冷剂气缸31通向制冷剂回路的位置, 空调制冷循环装置。 在制冷剂量调节时,检测出以制冷剂量变化的运转状态量,当运转状态量接近存储在存储装置中的参考值时,流量调节装置降低从制冷剂气瓶向制冷循环充填的速度 仪器。
    • 2. 发明专利
    • Refrigerant filling method for refrigerating air conditioner and refrigerant charge device for refrigerating air conditioner
    • 用于制冷空调器的制冷剂填充方法和用于制冷空调的制冷剂充电装置
    • JP2010025545A
    • 2010-02-04
    • JP2009251940
    • 2009-11-02
    • Mitsubishi Electric Corp三菱電機株式会社
    • SHIBA HIROKUNIYOSOMIYA MASATOSAKAI TATSUNORI
    • F25B45/00
    • PROBLEM TO BE SOLVED: To provide a refrigerant filling method for a refrigerating air conditioner, for determining whether a refrigerant amount in a refrigerant circuit is in any condition out of deficient, proper and excessive conditions, to be displayed to a worker. SOLUTION: This refrigerant filling method includes a determination-displaying step 105 for determining the condition of the refrigerant amount of the refrigerant circuit out of the deficient, proper and excessive conditions, by a refrigerant amount determining means 22 and for displaying a determination result thereof on a display means 23, a refrigerant filling step 106 for continuing an operation of a compressor 1, during the refrigerant amount determination result from the determination-displaying step 105 is in the refrigerant deficient condition, and for filling the refrigerant into the refrigerant circuit, by operating an opening/closing valve 9 provided in a refrigerant supply device 10, and a stopping-displaying step 107 for stopping the compressor 1 and for displaying the refrigerant amount condition by the display means 23, when the refrigerant amount is proper or excessive in the refrigerant amount determination result from the determination-displaying step 105. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供一种用于确定制冷剂回路中的制冷剂量是否处于缺陷,适当和过多状况的任何状态的制冷空调的制冷剂填充方法,以向工作人员显示。 解决方案:该制冷剂填充方法包括:确定显示步骤105,用于通过制冷剂量确定装置22确定制冷剂回路的缺陷,适当和过多状况的制冷剂量的状况,并显示确定 在显示装置23的结果中,在确定显示步骤105的制冷剂量确定结果期间,用于继续压缩机1的操作的制冷剂填充步骤106处于制冷剂不足状态,并且用于将制冷剂填充到制冷剂 通过操作设置在制冷剂供给装置10中的开/关阀9,以及停止显示步骤107,用于停止压缩机1并通过显示装置23显示制冷剂量状态,当制冷剂量适当时 在确定显示步骤105的制冷剂量确定结果中过多 GHT:(C)2010,JPO&INPIT
    • 3. 发明专利
    • Air conditioner
    • 冷气机
    • JP2010008041A
    • 2010-01-14
    • JP2009235301
    • 2009-10-09
    • Mitsubishi Electric Corp三菱電機株式会社
    • YOSOMIYA MASATOAOKI MASANORIFUSE TOSHIYA
    • F24F11/02F25B1/00
    • PROBLEM TO BE SOLVED: To reduce a working pressure as low as possible in strong winds to prevent the abnormal rise of discharge pressure and the stop of a compressor due to the operation of a pressure breaker, and to perform operation while enlarging an operable pressure range in a stably operable state. SOLUTION: This air conditioner includes an outdoor unit, an indoor unit, connection piping for connecting the outdoor unit to the indoor unit, a refrigerating cycle and a control part. In the pressure breaker, its breaking pressure for stopping the operation of the air conditioner is set to be less than an allowable pressure of existing connection piping. In air-conditioning operation, when performing operation after the pressure breaker detects the breaking pressure and stops operation, the control part controls the compressor, an outdoor blower or an electronic expansion valve to make a high pressure side pressure lower than the normal operating pressure. According to the breaking frequency of the pressure breaker within a fixed time, the high pressure side pressure for which the control part controls the compressor, the outdoor blower or the electronic expansion valve, is made lower in high breaking frequency rather than in low breaking frequency. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了在强风中尽可能地降低工作压力,以防止排气压力的异常升高和由于压力破坏器的操作导致的压缩机的停止,并且在放大 可操作的压力范围。 解决方案:该空调包括室外单元,室内单元,用于将室外单元连接到室内单元的连接配管,制冷循环和控制部。 在压力破坏器中,用于停止空气调节器操作的破坏压力被设定为小于现有连接配管的允许压力。 在空调运转中,在压力破坏器检测到破坏压力并停止运转后进行运转时,控制部控制压缩机,室外鼓风机或电子膨胀阀,使高压侧压力低于正常工作压力。 根据压力破坏器在固定时间内的断裂频率,控制部分控制压缩机,室外鼓风机或电子膨胀阀的高压侧压力在高断流频率下而不是低断流频率 。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Refrigerating cycle device and its operating method
    • 制冷循环装置及其操作方法
    • JP2006283997A
    • 2006-10-19
    • JP2005100441
    • 2005-03-31
    • Mitsubishi Electric Corp三菱電機株式会社
    • SHIBA HIROKUNISUZUKI YASUMASAASAI TOSHIAKIYOSOMIYA MASATOMIKI SHINSUKEHAGIWARA SHOJIFUSHIKI TAKESHI
    • F25B43/00F25B45/00
    • PROBLEM TO BE SOLVED: To provide a refrigerating cycle device and its operating method capable of improving reliability by effectively removing an iron chloride, a fatty acid compound and high-molecular weight oil. SOLUTION: In this refrigerating cycle device comprising an outdoor machine having a compressor and an outdoor heat exchanger, and an indoor machine having an indoor heat exchanger, and having a refrigerant circuit for a refrigerating cycle, formed by connecting the compressor, the outdoor heat exchanger and the indoor heat exchanger by pipes, the refrigerant circuit is provided with a first net filter 1 for capturing solid foreign matters, a second net filter 2 having a shape smaller than the first net filter 1 and covering a flow channel cross-sectional area, and capturing an iron compound or fine solid foreign matters, and a combined filter 100 mounted in adjacent to the second net filter 2 and combined with a magnet 3. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种通过有效地除去氯化铁,脂肪酸化合物和高分子量油来提高可靠性的制冷循环装置及其操作方法。 解决方案:在包括具有压缩机和室外热交换器的室外机的室内机和具有室内热交换器的室内机的制冷循环装置中,具有通过连接压缩机而形成的制冷循环用制冷剂回路 室外热交换器和室内热交换器,制冷剂回路设置有用于捕获固体异物的第一净过滤器1,具有小于第一净过滤器1的形状的第二净过滤器2, 截面积和捕获铁化合物或细固体异物,以及安装在第二网过滤器2附近并与磁铁3组合的组合过滤器100.版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Air conditioning system and air conditioning method
    • 空调系统和空调方法
    • JP2012220114A
    • 2012-11-12
    • JP2011086959
    • 2011-04-11
    • Mitsubishi Electric Corp三菱電機株式会社
    • YOSOMIYA MASATO
    • F24F11/02F25B1/00
    • F24F5/0089F24F11/30F24F11/83F24F2120/10
    • PROBLEM TO BE SOLVED: To save energy while maintaining comfortable conditioned air.SOLUTION: A storage unit 37 of a control apparatus 31 stores a first temperature set in advance, and a second temperature set to be lower than the first temperature, for each space 2. An operation device 34 of the control apparatus 31 controls at least one of the amount of fluid heated by a heat source unit 21 and the amount of fluid flowing into a radiator 13 so that when a human body is detected by a human detection sensor 12, a temperature to be measured by a room temperature sensor 11 becomes the first temperature stored in the storage unit 37. The operation device 34 controls at least one of the amount of fluid heated by the heat source unit 21 and the amount of fluid flowing into a radiator 13 so that when no human body is detected by the human detection sensor 12, the temperature to be measured by the room temperature sensor 11 becomes the second temperature stored in the storage unit 37.
    • 要解决的问题:节省能源,同时保持舒适的空调空气。 解决方案:对于每个空间2,控制装置31的存储单元37存储预先设置的第一温度和设定为低于第一温度的第二温度。控制装置31的操作装置34控制 由热源单元21加热的流体量和流入散热器13的流体的量中的至少一个,使得当人体被人体检测传感器12检测到时,由室温传感器测量的温度 11成为存储在存储单元37中的第一温度。操作装置34控制由热源单元21加热的流体的量和流入散热器13的流体的量中的至少一个,使得当没有检测到人体时 通过人体检测传感器12,由室温传感器11测量的温度成为存储在存储单元37中的第二温度。(C)2013,JPO&INPIT
    • 7. 发明专利
    • Vehicular ventilating and air-conditioning device
    • 通风和空气调节装置
    • JP2009298274A
    • 2009-12-24
    • JP2008154348
    • 2008-06-12
    • Mitsubishi Electric Corp三菱電機株式会社
    • SHIRAISHI KAZUHIKOTANIGUCHI YUICHISUMIDA YOSHIHIRONISHIDA AKIHIROYOSOMIYA MASATOYAMASHITA TETSUYAOKAZAKI TAKASHI
    • B60H1/00B60H1/24
    • B60H1/00978B61D27/0018
    • PROBLEM TO BE SOLVED: To provide a vehicular ventilating and air-conditioning device capable of ensuring the amount of ventilation in a vehicle even when the operation of an air-conditioner is stopped because of leakage of inflammable refrigerant or the like.
      SOLUTION: The vehicular ventilating and air-conditioning device includes a ventilation device 2 for sucking air outside a vehicle, an air-conditioner 3 for executing the air-conditioning in the vehicle, a duct 4 for fresh outside air which connects the ventilation device 2 to the air-conditioner 3 and supplies the air sucked by the ventilation element 2 from the outside of the vehicle to the air-conditioner 3, and a duct 5 for conditioned air to supply the conditioned air blown from the air-conditioner 3 into the vehicle. The duct 4 for fresh outside air is branched and connected to the duct 5 for conditioned air.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种车辆通风和空气调节装置,即使当由于可燃性制冷剂等的泄漏而使空调器的操作停止时,也能够确保车辆的通风量。 解决方案:车辆通风和空调装置包括用于吸入车辆外的空气的通风装置2,用于执行车辆中的空调的空调3,用于新鲜外部空气的管道4,其将 通风装置2到空调3,将从通风机构2吸入的空气从车外供给到空调3;调节空气用管道5,供给空调机 3进车。 用于新鲜外部空气的管道4分支并连接到用于调节空气的管道5。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Heat pump device and outdoor unit of heat pump device
    • 热泵装置的热泵装置和室内装置
    • JP2009270822A
    • 2009-11-19
    • JP2009192229
    • 2009-08-21
    • Mitsubishi Electric Corp三菱電機株式会社
    • AOKI MASANORIYOSOMIYA MASATOUNEZAKI FUMITAKESAITO MAKOTONANATANE TETSUJI
    • F25B1/00F25B47/02
    • PROBLEM TO BE SOLVED: To provide a heat pump device for achieving a sufficient heating capacity even in a condition of low outside air temperature by improving the heating capacity in comparison with a conventional gas injection cycle, and further to improve efficiency in a defrosting operation. SOLUTION: This heat pump device includes an intermediate-pressure receiver 9, an injection circuit 13, a second expansion valve 14 disposed in the injection circuit 13 and lowering a pressure of the refrigerant flowing in the injection circuit 13, a second internal heat exchanger 10 disposed in the injection circuit 13 and applying the heat of the refrigerant flowing from an indoor heat exchanger 6 toward an outdoor heat exchanger 12 to the refrigerant flowing in the injection circuit 13, and a control device 15 performing the control to switch a four-way valve 4 to circulate the refrigerant discharged from a compressor 3 to the outdoor heat exchanger 12, and to increase an opening of the second expansion valve 14 in a defrosting operation. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种即使在外部空气温度低的条件下也可以通过与传统的气体注入循环相比提高加热能力来实现足够的加热能力的热泵装置,并且进一步提高 除霜操作。 解决方案:该热泵装置包括中压接收器9,喷射回路13,设置在喷射回路13中的第二膨胀阀14,并且降低在喷射回路13中流动的制冷剂的压力,第二内部 设置在喷射回路13中的热交换器10,将从室内热交换器6流向室外热交换器12的制冷剂的热量供给到在喷射回路13中流动的制冷剂;以及控制装置15, 四通阀4使从压缩机3排出的制冷剂循环到室外热交换器12,并且在除霜运转中增加第二膨胀阀14的开度。 版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • Air conditioner
    • 冷气机
    • JP2009192096A
    • 2009-08-27
    • JP2008030408
    • 2008-02-12
    • Mitsubishi Electric Corp三菱電機株式会社
    • MIFUJI TAKAFUMIYOSOMIYA MASATO
    • F25B49/02F24F11/02
    • PROBLEM TO BE SOLVED: To provide an air conditioner capable of protecting a compressor by a simple and inexpensive constitution by detecting blockage of a refrigerant circuit by using the existing first and second temperature sensors. SOLUTION: This air conditioner comprises the refrigerant circuit having the compressor 6, a four-way valve 8, a condenser 10, a pressure reducing unit 11 and an evaporator 21, the first temperature sensor 14 detecting a temperature near an intermediate portion of the condenser 10, the second temperature sensor 15 detecting a temperature near an outlet of the condenser 10, and a control device 9. The second temperature sensor 15 is disposed at a position to be easily affected by the rise of surrounding temperature by the first temperature sensor 14, and the control device 9 judges the blockage of the refrigerant circuit and controls an operation of the compressor 6, when the temperature detected by the second temperature sensor 15 becomes higher than the temperature detected by the first temperature sensor 14. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种通过利用现有的第一和第二温度传感器检测制冷剂回路的堵塞,能够通过简单廉价的结构来保护压缩机的空调机。 解决方案:该空调包括具有压缩机6,四通阀8,冷凝器10,减压单元11和蒸发器21的制冷剂回路,第一温度传感器14检测中间部分附近的温度 的第二温度传感器15,第二温度传感器15检测冷凝器10的出口附近的温度,以及控制装置9.第二温度传感器15设置在容易受周围温度上升的第一温度传感器 当由第二温度传感器15检测的温度变得高于由第一温度传感器14检测的温度时,控制装置9判断制冷剂回路的堵塞并控制压缩机6的运转。

      版权所有(C)2009,JPO&INPIT

    • 10. 发明专利
    • Refrigerating air-conditioning device
    • 制冷空气调节装置
    • JP2008267637A
    • 2008-11-06
    • JP2007108300
    • 2007-04-17
    • Mitsubishi Electric Corp三菱電機株式会社
    • KATO YASUAKIIKEDA HISAFUMIYOSOMIYA MASATO
    • F24F5/00F25B1/00
    • PROBLEM TO BE SOLVED: To provide a refrigerating air-conditioning device of low noise, while optimizing a size and costs of a heat exchanger. SOLUTION: The heat exchanger is constituted of a first heat exchanger 8 disposed on the upstream side of airflow and a second heat exchanger 9 disposed at a downstream side of airflow; the first heat exchanger 8 and the second heat exchanger 9 are made to overlap each other, the first heat exchanger 8 and the second heat exchanger 9 have different sizes; and a boundary of the overlapping portion of the first heat exchanger 8 and the second heat exchanger 9 is located at a position not opposed to an upper fan motor 5a and a lower fan motor 5b. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种低噪音的制冷空调装置,同时优化热交换器的尺寸和成本。 解决方案:热交换器由设置在空气流的上游侧的第一热交换器8和设置在空气流的下游侧的第二热交换器9构成。 第一热交换器8和第二热交换器9彼此重叠,第一热交换器8和第二热交换器9具有不同的尺寸; 并且第一热交换器8和第二热交换器9的重叠部分的边界位于与上风扇电动机5a和下风扇电动机5b不相对的位置。 版权所有(C)2009,JPO&INPIT