CONDENSER
    1.
    发明公开
    CONDENSER 审中-公开

    公开(公告)号:EP4300009A1

    公开(公告)日:2024-01-03

    申请号:EP22758875.3

    申请日:2022-02-23

    发明人: SU, Xiuping WANG, Li

    IPC分类号: F25B39/04 F28D7/16

    摘要: The present application provides a condenser, comprising: a housing, a first heat exchange tube set, a second heat exchange tube set, and a third heat exchange tube set, a pair of first baffles, a second baffle, and a third baffle, the second heat exchange tube set and the third heat exchange tube set being arranged at two sides of the first heat exchange tube set, each of the pair of first baffles being respectively adjacent to the two sides of the first heat exchange tube set, the second baffle being adjacent to one side of the second heat exchange tube set that is close to the first heat exchange tube set, and the third baffle being adjacent to one side of the third heat exchange tube set that is close to the first heat exchange tube set, wherein the pair of first baffles, the second baffle, and the third baffle are configured to cause the first heat exchange tube set to receive a refrigerant from a refrigerant inlet, and cause the second heat exchange tube set and the third heat exchange tube set to receive the refrigerant from the first heat exchange tube set via a horizontal fluid channel, and a first vertical fluid channel and a second vertical fluid channel. The condenser in the present application has high heat exchange efficiency.

    MEASUREMENT APPARATUS AND REFRIGERATION SYSTEM COMPRISING SAME

    公开(公告)号:EP4279838A1

    公开(公告)日:2023-11-22

    申请号:EP22738916.0

    申请日:2022-01-06

    IPC分类号: F25B49/00 F24F11/00 G01N21/43

    摘要: A measurement apparatus (100), which is arranged on a pipe (101), and is configured to measure the liquid content of a medium within the pipe (101); said apparatus comprises: a light transmission member (210), a light generation device (203), and a light reception device (204); the light generation device (203) is configured to emit emission light toward the light transmission member (210) that passes through an outer boundary wall (214) of the light transmission member (210) and has a preset emission angle, and the light reception device (204) is configured to receive reflection light after the emission light is reflected by an inner boundary wall (215) of the light transmission member (210). The measurement apparatus (100) can directly detect whether liquid is carried in a gaseous refrigerant exiting from an evaporator, as well as measure the amount of carried liquid. The refrigeration system can adjust a throttling apparatus in a timely manner according to a measured result, and prevents the performance of the refrigeration system and a compressor from being affected.

    ECONOMIZER AND REFRIGERATING SYSTEM COMPRISING SAME

    公开(公告)号:EP4411286A1

    公开(公告)日:2024-08-07

    申请号:EP22874566.7

    申请日:2022-09-05

    IPC分类号: F25B41/40 F25B41/30 F25B43/00

    摘要: Disclosed in the present application are an economizer and a refrigeration system comprising same. The economizer comprises: an outer shell that internally comprises a heat exchange cavity and a gas-liquid separation cavity; and a heat exchange tube bundle provided in the heat exchange cavity. The economizer is configured to enable refrigerants from a condenser to be subjected to heat exchange in the heat exchange cavity first, and then to be subjected to gas-liquid separation in the gas-liquid separation cavity after passing through a first-stage throttling device, such that gas refrigerants flow out of a gas outlet of the gas-liquid separation cavity, and liquid refrigerants flow out of a liquid outlet of the gas-liquid separation cavity. According to the economizer of the present application, the heat exchange cavity and the gas-liquid separation cavity are provided in the shell, the gas-liquid separation function of the economizer can be achieved, the heat exchange function of a subcooler can also be achieved, such that the structure of the two-stage compression refrigeration system with the function requirements of the subcooler can be more compact.

    FALLING FILM EVAPORATOR
    8.
    发明公开

    公开(公告)号:EP4407269A1

    公开(公告)日:2024-07-31

    申请号:EP22871759.1

    申请日:2022-08-29

    摘要: The present application provides a falling film evaporator. The falling film evaporator comprises a housing, a gas outlet, a cover, a gas flow channel, and a plurality of flow guide members. The housing has a length direction and a height direction, and the housing defines an accommodating cavity. The gas outlet is provided at the upper portion of the accommodating cavity. The cover is provided in the accommodating cavity and defines a cover accommodating cavity, the cover accommodating cavity has a lower cover opening located below, and the cover accommodating cavity is configured to accommodate at least one part of a heat exchange tube bundle. The gas flow channel is located between the housing and the cover and enables the lower cover opening of the cover accommodating cavity to be in communication with the gas outlet. The plurality of flow guide members are arranged in the gas flow channel along the height direction of the housing. Here, in the height direction of the housing, one of two adjacent flow guide members is connected to the housing and is separated from the cover by a certain distance, and the other of the two adjacent flow guide members is connected to the cover and is separated from the housing by a certain distance. The falling film evaporator in the present application has the advantage of being high in gas-liquid separation efficiency, and the machining process of the flow guide members of the falling film evaporator is simple.

    EVAPORATOR AND REFRIGERATION SYSTEM COMPRISING SAME

    公开(公告)号:EP4400783A1

    公开(公告)日:2024-07-17

    申请号:EP22866470.2

    申请日:2022-08-29

    发明人: SU, Xiuping

    IPC分类号: F25B39/02 F25B41/40

    CPC分类号: F25B39/02 F25B41/40

    摘要: The present application provides an evaporator, comprising: a housing; and a falling film tube bundle disposed in an accommodating cavity and arranged in columns, the falling film tube bundle comprising a plurality of heat exchange tubes, the centers of the heat exchange tubes in each column being arranged along a height direction, and the centers of two adjacent heat exchange tubes in adjacent columns being staggered in a width direction of the accommodating cavity; wherein the falling film tube bundle is configured in a way that among four adjacent heat exchange tubes in two adjacent columns, a minimum distance between outer surfaces of at least two heat exchange tubes in different columns is greater than a minimum distance between outer surfaces of two heat exchange tubes in the same column. In the present application, a flow rate of gas flowing among the corresponding heat exchange tubes is reduced by increasing the flow space of a refrigerant in the width direction W, so that a ratio of the gas phase Reynolds number Rev to the liquid film Reynolds number Refilm is reduced, and thus the heat exchange efficiency of the evaporator is improved.

    GAS-LIQUID SEPARATOR
    10.
    发明公开

    公开(公告)号:EP4183466A1

    公开(公告)日:2023-05-24

    申请号:EP21846446.9

    申请日:2021-07-07

    IPC分类号: B01D45/16 B01D45/06

    摘要: Provided in the present application is a gas-liquid separator. The gas-liquid separator comprises a housing and a separation cylinder assembly. The housing comprises a cylindrical housing side wall, and a first end plate and a second end plate that are located at opposite ends of the housing side wall. The housing comprises a housing inlet and an upper housing outlet, the housing inlet being provided on the first end plate, and the upper housing outlet being provided on an upper part of the housing side wall. The separation cylinder assembly is arranged in a housing accommodating cavity, and the axis of the separation cylinder assembly is arranged transversely to the axis of the cylindrical housing side wall, and the separation cylinder assembly comprises an outer cylinder and an inner cylinder arranged in the outer cylinder, with the outer cylinder being supported at the bottom of the housing side wall; and the separation cylinder assembly further comprises a separation space defined between the outer cylinder and the inner cylinder and located at an upper part of the separation cylinder assembly, a lower space located at the lower part of the separation cylinder assembly and an upper outlet located at the upper part of the separation cylinder assembly, with the separation space being in communication with the housing inlet, and the upper outlet being in communication with the separation space and the housing accommodating cavity. The gas-liquid separator has advantages such as having a high separation efficiency, low noise and a small size.