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    • 63. 发明公开
    • AIR CONDITIONER AND METHOD FOR DETECTING AMOUNT OF REFRIGERANT IN AIR CONDITIONER
    • KLIMAANLAGE UND VERFAHREN ZUM ERKENNEN DERKÜHLMITTELMENGEIN EINER KLIMAANLAGE
    • EP2511629A4
    • 2017-09-13
    • EP10835839
    • 2010-11-25
    • MITSUBISHI HEAVY IND LTD
    • KATO TAKAHIROENYA ATSUSHI
    • F25B45/00F25B49/02
    • F25B45/00F25B13/00F25B2700/04F25B2700/21
    • Provided is an air conditioner and a method of detecting the amount of refrigerant in an air conditioner that always enables the amount of refrigerant filled to be detected with high precision, without providing a heating unit in a liquid-surface detecting circuit. An air conditioner (1), in which an outdoor unit (2) and an indoor unit (3) is connected, includes a liquid-surface detecting circuit (30) in which a bypass circuit (31) connecting a predetermined height position in a receiver (15) to an intake side of a compressor (10) has an on/off valve (33) and a decompression mechanism (32); a temperature detecting unit (34) that detects the temperature of the refrigerant decompressed by a decompression mechanism (32) and flowing in the liquid-surface detecting circuit (30); and a refrigerant-amount detecting unit (35) that controls the intermediate pressure in the receiver (15) such that the degree of superheating is 5 deg or more higher than a low-pressure saturated gas temperature and such that a saturated gas line on a pressure-enthalpy diagram is inclined toward the upper right, and that detects the temperature of the refrigerant extracted from the receiver (15) into the liquid-surface detecting circuit (30) with the temperature detecting unit (34), thereby determining the amount of refrigerant filled based on the detected temperature.
    • 本发明提供一种空调和检测空调中的制冷剂量的方法,其总是能够以高精度检测填充的制冷剂量,而不在液体表面检测回路中提供加热单元。 本发明提供一种室外机组(2)和室内机组(3)连接的空调机(1),其具备:液面检测电路(30),其将连接规定高度位置的旁通回路 接收器(15)向压缩机(10)的吸入侧具有开关阀(33)和减压机构(32)。 温度检测单元(34),其检测由减压机构(32)减压的并在液面检测回路(30)中流动的制冷剂的温度; 以及控制所述储液器(15)内的中间压力使得所述过热度比低压饱和气体温度高5度以上,并且使所述过热度为0度以上的饱和气体管路的制冷剂量检测部(35) 压力 - 焓图向右上倾斜,并且利用温度检测单元(34)检测从接收器(15)提取到液体表面检测回路(30)中的制冷剂的温度,从而确定 基于检测到的温度填充制冷剂。
    • 64. 发明公开
    • PROCEDE DE MISE EN TEMPERATURE ET DE MAINTIEN EN TEMPERATURE DE L'INTERIEUR D'UNE ENCEINTE THERMIQUEMENT ISOLEE SANS APPORT D'ENERGIE CONTINU- DISPOSITIF ASSOCIE
    • PROCEDE DE MISE EN TEMPERATURE ET DE MAINTIEN EN TEMPERATURE DE L'INTERIEUR D'UNE ENCEINTE THERMIQUEMENT ISOLEE SANS APPORT D'ENERGIE CONTINU-DISPOSITIF ASSOCIE
    • EP3201538A1
    • 2017-08-09
    • EP15781130.8
    • 2015-09-29
    • Coldway
    • RIGAUD, LaurentKINDBEITER, FrancisTADIOTTO, David
    • F25B17/08
    • F25B17/00F25B17/083F25B2315/005F25B2315/007F25B2400/01F25B2600/2515F25B2700/04
    • The present invention relates to a method for getting the interior volume of a thermally insulated space (5) up to temperature and maintaining it at temperature using two thermochemical systems (TCU1; TCU2). According to the invention, a suitable device is supplied and - steps are taken to ensure that all the fluid of each of said systems (TCU1; TCU2) is contained in the reservoir (1; 2) of each of said systems (TCU1; TCU2); - at least one of said systems (TCU; TCU2) is used to bring said space to a setpoint temperature, a) the reactor (15; 25) of one of said systems (TCU1; TCU2) is heated until fully regenerated, while the other system (TCU1; TCU2) keeps the temperature at said setpoint temperature; b) when the reactor (15; 25) is fully regenerated, said system comprising the reactor that has just been regenerated is used to maintain the temperature and the reactor (15; 25) of the other system (TCU1; TCU2) is heated - as long as said connection means are connected to said external energy source, the aforementioned steps a) and b) are repeated; - when said heating means (19; 29) are disconnected from said external energy source, each of said systems (TCU1; TCU2) is used in turn to keep the temperature of the space (5) at said setpoint temperature.
    • 本发明涉及一种使用两个热化学系统(TCU1; TCU2)使绝热空间(5)的内部容积达到温度并将其保持在温度的方法。 根据本发明,提供合适的装置并采取步骤以确保每个所述系统(TCU1; TCU2)的所有流体都容纳在每个所述系统(TCU1; TCU2)的储存器(1; 2) ); - 至少一个所述系统(TCU; TCU2)用于使所述空间达到设定点温度,a)所述系统(TCU1; TCU2)中的一个的反应器(15; 25)被加热直到完全再生,而 其他系统(TCU1; TCU2)将温度保持在所述设定点温度; b)当反应器(15; 25)完全再生时,所述包含刚刚再生的反应器的系统用于维持温度,并且另一个系统(TCU1; TCU2)的反应器(15; 25) 只要所述连接装置连接到所述外部能量源,重复上述步骤a)和b); - 当所述加热装置(19; 29)与所述外部能量源断开时,依次使用每个所述系统(TCU1; TCU2)以将所述空间(5)的温度保持在所述设定点温度。