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    • 32. 发明申请
    • Method for washing cooling or air conditioning circuits and device for carrying out said method
    • 用于清洗冷却或空调电路的方法和用于执行所述方法的装置
    • US20080022715A1
    • 2008-01-31
    • US11597998
    • 2005-06-02
    • Janda Frantisek
    • Janda Frantisek
    • F25B45/00F25B43/04
    • F25B45/00F25B47/00
    • The invention relates to a method for washing cooling or air conditioning circuits, according to which a washing agent is conducted through said cooling or air conditioning circuit. Said agent dissolves and absorbs the soluble substances that adhere to the cooling or air conditioning circuits and discharges the mechanical contaminants. The washing agent is conducted through the cooling or air conditioning circuit that is washed in a closed cycle without escaping into the environment, by the pressure differential between the pressure chamber and the distillation chamber and is returned to the pressure chamber after being cleaned in the distillation chamber, compressed by a compressor and cooled in a condenser. The invention also relates to a device for washing cooling or air conditioning circuits, said device consisting of a pressure chamber containing a washing agent. The outlet pipe for fluid of the pressure chamber is connected to the cooling or air conditioning circuit that is washed. A compressor and a condenser, which is connected to a supply line for fluid to the pressure chamber, are connected upstream of said chamber. A distillation chamber is connected between the cooling or air conditioning circuit that is washed and the compressor and inert gas that is compressed by the washing agent is contained in the pressure chamber.
    • 本发明涉及一种用于清洗冷却或空调回路的方法,根据该方法,洗涤剂通过所述冷却或空调回路进行。 所述试剂溶解并吸收附着于冷却或空调回路的可溶性物质并排出机械污染物。 洗涤剂通过冷却或空调回路进行,该冷却或空调回路在密封循环中被洗涤,而不会通过压力室和蒸馏室之间的压力差而逃逸到环境中,并在蒸馏清洗后返回到压力室 由压缩机压缩并在冷凝器中冷却。 本发明还涉及一种用于清洗冷却或空调回路的装置,所述装置由包含洗涤剂的压力室组成。 压力室流体出口管连接到被清洗的冷却或空调回路。 连接到用于压力室的流体供应管线的压缩机和冷凝器连接在所述室的上游。 蒸馏室连接在被清洗的冷却或空调回路之间,压缩机和被洗涤剂压缩的惰性气体被包含在压力室中。
    • 35. 发明申请
    • Refrigerating apparatus
    • 制冷装置
    • US20060150664A1
    • 2006-07-13
    • US10545705
    • 2004-11-24
    • Atsushi YoshimiManabu YoshimiKazuhide MizutaniHiromune Matsuoka
    • Atsushi YoshimiManabu YoshimiKazuhide MizutaniHiromune Matsuoka
    • F25D19/00F25B43/04
    • F25B45/00F25B47/00F25B2313/0233F25B2400/12F25B2400/18
    • The capacity of a compressor (21) in cleaning operation is set based on a Froude number Fr. The Froude number Fr expresses a ratio of an inertial force of a gas refrigerant flowing through a gas side communication pipe (70) to a gravity working on a liquid in the gas side communication pipe (70). The capacity of the compressor (21) in the cleaning operation is set so that the Froude number Fr is larger than 1, whereby the inertial force of the gas refrigerant flowing through the gas side communication pipe (70) becomes larger than the gravity working on the liquid in the gas side communication pipe (70) which contains mineral oil and foreign matters. In this connection, the liquid containing the mineral oil and the foreign matters is pushed up by the gas refrigerant even in a perpendicularly extending portion of the gas side communication pipe (70). Thus, the mineral oil and the foreign matters remaining in the existing liquid side communication pipe (60) and the existing gas side communication pipe (70) are recovered.
    • 压缩机(21)在清洁操作中的容量基于弗劳德数Fr。 弗劳德数Fr表示流过气体侧连通管(70)的气体制冷剂的惯性力与在气体侧连通管(70)中的液体上的重力的比率。 在清洁操作中压缩机21的容量被设定为使得弗劳德数Fr大于1,从而流过气体侧连通管70的气体制冷剂的惯性力大于重力加载 气体侧连通管(70)中含有矿物油和异物的液体。 在这一点上,即使在气体侧连通管70的垂直延伸部分中,含有矿物油和异物的液体也被气体制冷剂推压。 因此,矿物油和留在现有的液体侧连通管(60)和现有的气体侧连通管(70)中的异物被回收。
    • 36. 发明申请
    • Refrigerator
    • 冰箱
    • US20060150663A1
    • 2006-07-13
    • US11283779
    • 2005-11-22
    • Sang-soo KimJong-yeob Kim
    • Sang-soo KimJong-yeob Kim
    • F25D19/00F25B43/00F25B43/04F25B39/04
    • F25B43/003F25B41/067F25B2341/0662F25B2500/12
    • A refrigerator includes a cooling system which has a compressor compressing a refrigerant, a condenser condensing the refrigerant compressed from the compressor, a capillary tube converting the refrigerant from the condenser into a low pressure condition, and an evaporator evaporating the refrigerant supplied from the capillary tube. A dryer is provided on a refrigerant line connecting the condenser and the capillary tube to remove impurities included in the refrigerant from the condenser; and a muffler is provided on a refrigerant line connecting the dryer and the capillary tube to decrease a range of fluctuation of the amount of liquid refrigerant flowing from the dryer to the capillary tube.
    • 冰箱包括冷却系统,该冷却系统具有压缩制冷剂的压缩机,将从压缩机压缩的制冷剂冷凝的冷凝器,将冷凝器中的制冷剂转换成低压状态的毛细管,蒸发器蒸发从毛细管供给的制冷剂 。 在连接冷凝器和毛细管的制冷剂管路上设置有干燥器,以从冷凝器中除去包含在制冷剂中的杂质; 并且在连接干燥器和毛细管的制冷剂管线上设置消音器,以减少从干燥器流向毛细管的液体制冷剂量的波动范围。
    • 40. 发明授权
    • Membrane technology to remove non-condensable gases from refrigeration
systems
    • 从制冷系统中除去不可冷凝气体的膜技术
    • US6128916A
    • 2000-10-10
    • US200872
    • 1998-11-27
    • Richard A. CallahanKishore V. Khandavalli
    • Richard A. CallahanKishore V. Khandavalli
    • B01D53/22F25B43/04
    • B01D53/22F25B43/043
    • An apparatus and method are described for refrigeration employing a condenser, an evaporator, and a compressor, wherein a condenser vent is provided for exhausting accumulated mixtures of non-condensable gas, such as air, and refrigerant gas, wherein accumulated non-condensable gas mixed with refrigerant gas from the condenser vent is provided to a membrane separator comprising at least two chambers separated by a selective membrane, said chambers being a high pressure chamber to which the non-condensable gas mixed with refrigerant gas is supplied, and a low pressure chamber into which the refrigerant gas is selectively permeated through said selective membrane for reintroduction and reuse in the refrigeration cycle, and on said high pressure chamber of said membrane separator, a vent is provided to exhaust non-condensable gas-rich raffinate gas.
    • 对于使用冷凝器,蒸发器和压缩机的制冷装置和方法进行了说明,其中设置冷凝器排气口以排出不可冷凝气体(例如空气)和制冷剂气体的累积混合物,其中累积的不可冷凝气体混合 来自冷凝器排气口的制冷剂气体被提供到包括由选择性膜隔开的至少两个室的膜分离器,所述室是供应与制冷剂气体混合的不可冷凝气体的高压室,以及低压室 制冷剂气体选择性地透过所述选择性膜以在制冷循环中重新引入和再利用,并且在所述膜分离器的所述高压室上设置有用于排出不可冷凝的富含气体的残余气体的排气口。