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    • 6. 发明公开
    • TEST DEVICE FOR HYPERBARIC TESTING OF A PART OF A SUBSEA DEVICE AND METHOD
    • 用于测试试验装置高压水下设备和方法的一部分
    • EP3115764A1
    • 2017-01-11
    • EP15176266.3
    • 2015-07-10
    • Siemens Aktiengesellschaft
    • Eastoe, Andrew Robert
    • G01M3/28
    • G01M3/2869G01M3/2861
    • A test device for hyperbaric testing of a part of a subsea device (200) is provided. The test device includes a test pot (10) configured to provide a test chamber (30) around of a part of the subsea device (200) that is to be tested. A mount (20) of the test device is configured to attach the test pot (10) to the subsea device (200) such that the test pot (10) is affixed to the subsea device (200) and can be pressurized without becoming detached from the subsea device during testing. The test device further includes at least one seal (40) for sealing the test device to the subsea device (200) such that the test chamber (30) is sealed from the surrounding environment. A pressure port (51) is further provided for pressurizing a medium in the test chamber (30) to a test pressure that is higher than an ambient pressure in the surrounding environment.
    • 提供了一种用于海底装置(200)的一部分的高压测试的测试装置。 该测试设备包括被配置成提供围绕设备海底(200)的一部分的试验室(30)的测试罐(10)那样被进行测试。 测试装置的安装件(20)被配置为将测试罐(10)附接到海底设备(200)检查做了试验锅(10)固定到海底设备(200)并且可以在不脱落被加压 从测试期间的海底设备。 该测试装置包括:至少一个另外的密封件(40),用于测试设备的密封到所述海底设备(200)检查做了测试室(30)与周围环境密封。 压力端口(51)被提供用于进一步的加压在测试室(30)到测试压力的介质所做的是比在周围环境中的环境压力高。
    • 9. 发明公开
    • METHOD AND DEVICE TO DETECT FLUID LEAKAGE IN A JOINT AREA BETWEEN TWO PIPE SECTIONS.
    • 用于检测两个管段之间的接合区域中的流体泄漏的方法和装置。
    • EP3241007A1
    • 2017-11-08
    • EP15875771.6
    • 2015-12-31
    • Odin Connect AS
    • LANGHELLE, Rune
    • G01M3/04G01M3/28
    • G01M3/2861
    • A method is described to detect a fluid leakage in a joint area between two pipe sections (10, 12) that are joined together to provide a continuous fluid-carrying pipeline, where a casing-formed joint element (20) with an inwardly protruding flange part (28) is inserted between the pipe sections (10, 12), the ends of which lie against sealing elements (27a, 27b) at the oppositely directed flange surfaces, and a coupling body (60, 62) on each side of the joint element (20) forms an engagement with respective pipe circumference surfaces (17, 19) and is made to squeeze the pipe ends against each other via the joint element (20). The method is characterised in that a second sealing element (31a, 31b) that seals between the joint element (20), and the pipe section surfaces (17, 19) is set up at the pipe ends, and any fluid leakages past the two sealing systems (27, 31) are monitored in a fluid channel system (30, 32), in connection to the joint element (20), between the sealing systems (27, 31) and which is set up by a radially formed ring-formed hollow space (32a, 32b), outside respective sealing elements (27a, 27b) and defined between respective, oppositely directed flange surfaces (28) and the ends of the pipe sections (10, 12) where the hollow space is fluid connected with another channel system (30) via the joint element and connected to a pressure sensor (P, 52) that registers the pressure in the fluid channel system for alarms and the initiation of relevant actions. A device to carry out the method is also described.