TWO SELECTIVE MODULES FOR A CONTROLLED ATMOSPHERE CONTAINER

    公开(公告)号:WO2019229132A1

    公开(公告)日:2019-12-05

    申请号:PCT/EP2019/063981

    申请日:2019-05-29

    Abstract: The invention relates to a reefer container (1) having a controlled atmosphere system (3) comprising: - a first selective unit (4) comprising an absorber or a membrane (9) being selective for carbon dioxide over oxygen and nitrogen; - a second selective unit (11) comprising an absorber or a membrane (14) being selective for oxygen over nitrogen;and - a vacuum pump (6) for extracting and removing separated gasses from a permeate side (8, 13) of the first and second selective units (4, 11) to outside the container(1), where the system (3) is further comprising a pump (15) for providing an overpressure in the container(1).The pump (15) can be connected to the container (1) through a feed side (12) of the second selective unit (11). The invention further relates to a method of controlling reefer container (1) having a controlled atmosphere system (3).

    METHOD AND REEFER CONTAINER, TRUCK OR TRAILER FOR RIPENING OF VEGETABILE PRODUCE IN A CONTROLLED ATMOSPHERE

    公开(公告)号:WO2019096844A1

    公开(公告)日:2019-05-23

    申请号:PCT/EP2018/081227

    申请日:2018-11-14

    CPC classification number: A23L3/3445 A23B7/152

    Abstract: The invention relates to a method of ripening perishable products during transport in a reefer container or a refrigerated truck or trailer (1), each comprising a controlled atmosphere system (3), which method provides variable ripening time by changing temperature in the container, truck or trailer (1) from a temperature where ripenable produce are kept in an unripening controlled atmosphere to a temperature where the ripenable products ripens in controlled atmosphere. The invention further relates to a reefer container or a refrigerated truck or trailer (1) for shipping perishable products such as fruit and vegetables, which container, truck or trailer (1) comprises a controlled atmosphere system (3) including sensors (7) capable of measuring at least one of following parameters: temperature, O 2 or CO 2 ; a dosing mechanism (8) for dosing ripening agent; and a ripening process controller (9), which controller (9) controls the ripening process based on sensed values of temperature, O 2 and/or CO 2 .

    INTEGRATED FAN GRILLE FOR A COOLING MACHINE IN A REEFER CONTAINER

    公开(公告)号:WO2018114621A1

    公开(公告)日:2018-06-28

    申请号:PCT/EP2017/082900

    申请日:2017-12-14

    Abstract: The invention relates to a back-plate for a cooling machine in a reefer container with an improved fan grille, where a grille or grating (2) defines a section formed integral with the back-plate (1). The grille or grating (2) defined in the back-plate (1) can comprise layers of fibreglass forming the back-plate (1). The grille or grating (2) can surround holes provided by drilling, cutting or another suitable machining of the back-plate (1) after casting. The grille or grating (2) can be provided by a mesh structure having different mesh sizes (3, 4). The grille or grating (2) can be provided with a more dense mesh structure in one or more local areas (4) compared to a remaining part (3) of the grille (2). The grille or grating (2) is provided at an upper part of the back-plate (1).

    BASE FRAME FOR A SHIPPING CONTAINER
    4.
    发明申请
    BASE FRAME FOR A SHIPPING CONTAINER 审中-公开
    运输集装箱的基座

    公开(公告)号:WO2017009326A1

    公开(公告)日:2017-01-19

    申请号:PCT/EP2016/066515

    申请日:2016-07-12

    CPC classification number: B65D90/02 B65D88/121

    Abstract: The invention relates to a base frame (1) for a shipping container, comprising a front (2) end and a rear end (3) separated by a bolster (4), the front end of the base frame (1) comprising a pair of bottom side rails or beams (7) and a pair of gooseneck rails or beams (9) positioned in a longitudinal direction of the container, the rear end (3) of the base frame (1) extending from a door sill (61) to the bolster (4), where the gooseneck rails (9) extends continuously from a front sill (6) to the bolster (4) and that a number of bows (51) extends continuously from a bottom side rail (7) in one side of the front end of the base frame (1) to a bottom side rail (7) in an opposite side of the front end of the base frame (1).

    Abstract translation: 本发明涉及一种用于运输容器的底架(1),其包括由垫子(4)分隔开的前端(2)端和后端(3),所述底架(1)的前端包括一对 的下侧轨道或梁(7)和位于容器的纵向方向上的一对鹅颈轨道或梁(9),底架(1)的后门(3)从门槛(61)延伸, (4),其中鹅颈轨道(9)从前梁(6)连续延伸到枕垫(4),并且多个弓(51)从底侧轨道(7)连续延伸到一个 (1)的前端的一侧连接到底架(1)的前端的相对侧的底侧导轨(7)。

    CARGO TRANSPORTATION CONTAINER AND METHOD OF ASSEMBLING THE SAME
    5.
    发明申请
    CARGO TRANSPORTATION CONTAINER AND METHOD OF ASSEMBLING THE SAME 审中-公开
    货物运输集装箱及其装配方法

    公开(公告)号:WO2015197681A1

    公开(公告)日:2015-12-30

    申请号:PCT/EP2015/064237

    申请日:2015-06-24

    Inventor: GRAM, Tonny

    Abstract: A cargo transportation container (1) where the inside of the container (1) is lined with plates (7, 9, 10), typical the side walls (2) are lined with metal plates (9) and the ceiling (6) is lined with plates (7) made of a polymer based material. The metal plates (9) and the plates (7) of polymer based material are joined together by a connecting plate (10). The connecting plates (10) typically are made of a polymer based material but can also be made of metal. An intermediate layer (13) is used to join the metal plates (9) and the plates (7, 10) of polymer based material.

    Abstract translation: 一种货物运输容器(1),其中容器(1)的内部衬有板(7,9,10),典型的侧壁(2)具有金属板(9),天花板(6)是 衬有由聚合物基材料制成的板(7)。 金属板(9)和聚合物基材料的板(7)通过连接板(10)连接在一起。 连接板(10)通常由聚合物基材料制成,但也可以由金属制成。 中间层(13)用于连接聚合物基材料的金属板(9)和板(7,10)。

    A FLOW GUIDE FOR A RECIPROCATING-TYPE COMPRESSOR OF A COOLING SYSTEM AND A RECIPROCATING-TYPE COMPRESSOR FOR A COOLING SYSTEM COMPRISING SAID FLOW GUIDE

    公开(公告)号:WO2021160797A1

    公开(公告)日:2021-08-19

    申请号:PCT/EP2021/053448

    申请日:2021-02-12

    Abstract: The disclosure relates to a flow guide (1) for a reciprocating-type compressor of a cooling system, the compressor comprising a pressure chamber (2), a suction chamber (3) formed by a valve plate (4) and a cylinder head (5), a cylinder chamber (6) placed on a side of the valve plate (4) opposite the cylinder head (5) wherein the flow guide (1) is formed directly in the cylinder head (5) by drilling, milling or molding of the cylinder head (5), providing the cylinder head (5) with one or more channels (7), guiding intake refrigerant from an inlet opening (8) of the cylinder head (5) to one or more suction openings (9) leading from the suction chamber (3) into the cylinder chamber (6). The disclosure further relates to a flow guide (1) for a reciprocating-type compressor of a cooling system, a reciprocating-type compressor for a cooling system, a reciprocating-type compressor for a cooling system, a use of a flow guide (1), a method of optimizing a reciprocating-type compressor of a cooling system and a method of optimizing a reciprocating-type compressor of a cooling system.

    PROFILE FOR A CONTAINER, METHODS FOR MANUFACTURING A PROFILE, BASE STRUCTURE FOR A CONTAINER AND CONTAINER

    公开(公告)号:WO2020174012A1

    公开(公告)日:2020-09-03

    申请号:PCT/EP2020/055045

    申请日:2020-02-26

    Abstract: The invention relates to a profile in a container, where a profile (5, 6, 7, 8, 101) comprising a cross section where at least a part of the cross section over a length of the profile is provided with a crumple zone, which crumple zone has a critical buckling load being smaller than the critical buckling load for zones abutting the crumple zone.The invention further relates to a method of manufacturing a profile for a container, where one or more profiles (5, 6, 7, 8, 101) in the container (1) is provided with a crumple zone, which crumple zone has a critical buckling load being smaller than the rest of the profile (5, 6, 7, 8, 101). The invention also relates to abase structure for a container,comprising a pair of bottom side rails, a front sill (4) in one end and a door end in an opposite end, a number of crossmembers (8) placed in parallel with the front sill (4) and door end and extending from a bottom side rail (2) in one side of the container (1) to a bottom side rail (2) at the other side of the container (1), wherein the crossmember (8) comprises a cross-section, where at least a part of the cross section over a length of the profile (5, 6, 7, 8, 101) is provided with a crumple zone, which crumple zone has a critical buckling load being smaller than the critical buckling load for zones abutting the crumple zone.

    CALIBRATION METHOD OF REFRIGERANT SATURATION TEMPERATURE IN A REFRIGERATION SYSTEM, A CONTROLLER FOR APPLYING SUCH A METHOD AND A COOLING MACHINE

    公开(公告)号:WO2020148270A1

    公开(公告)日:2020-07-23

    申请号:PCT/EP2020/050797

    申请日:2020-01-14

    Abstract: The invention relates to a method of determining a refrigerant or a composition of refrigerants in a refrigeration system (1) comprising an expansion valve (2), an evaporator (3), one or more evaporator fans (4), a condenser (5), one or more condenser fans (6) one or more temperature sensors (7), one or more pressure sensors (8), a compressor (9), and a controller (25) for controlling the refrigeration system (1), the controller (25) comprising a memory (26), the expansion valve (2), the evaporator (3) and the compressor (6) being fluidly interconnected in a refrigerant path (10) having refrigerant flowing therein, comprising the steps of: a) Running a test run and read out values from one or more of the sensors (7, 8); b) Determining a composition by the result of step a; and c) Adjusting the refrigeration system (1) in relation to the composition determined by step b. The invention further relates to a controller (25) for controlling a refrigeration system(1) and to a cooling machine in a reefer container.

    HEAT EXCHANGER ARRANGEMENT AND METHOD OF CONTROLLING SAME

    公开(公告)号:WO2023079123A1

    公开(公告)日:2023-05-11

    申请号:PCT/EP2022/080887

    申请日:2022-11-04

    Abstract: Provided is a heat exchanger arrangement (200) for a refrigeration system (100). The heat exchanger arrangement (200) comprises a heat exchanger (210) having a first flow path (211), a second flow path (212), and a heat exchange interface (213) that is configured to transfer heat between a first fluid in the first flow path (211) and a second fluid in the second flow path (212), in use. The heat exchanger arrangement (200) also comprises an inlet arrangement (220) having a first-fluid inlet (221) for receiving the first fluid from a source, a first opening (224a) into the first flow path (211), and a second opening (224b) into the first flow path (211). The inlet arrangement (220) is operable to control flow of the first fluid from the first-fluid inlet (221) to the first opening (224a) and to the second opening (224b).

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