CN205175833U - Detecting instrument pressure resistance test installation in submarine pipeline - Google Patents

Detecting instrument pressure resistance test installation in submarine pipeline Download PDF

Info

Publication number
CN205175833U
CN205175833U CN201520876279.XU CN201520876279U CN205175833U CN 205175833 U CN205175833 U CN 205175833U CN 201520876279 U CN201520876279 U CN 201520876279U CN 205175833 U CN205175833 U CN 205175833U
Authority
CN
China
Prior art keywords
pressure
valve
resistant
flange
cylinder
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201520876279.XU
Other languages
Chinese (zh)
Inventor
李明朝
高慧
张士华
孙永泰
樊敦秋
史永晋
初新杰
李森
王宏安
邬可谊
郭强
刘海超
于丽萍
徐增强
傅忠尧
任红伟
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sinopec Oilfield Service Corp
Sinopec Shengli Petroleum Engineering Corp
Drilling Technology Research Institute of Sinopec Shengli Petroleum Engineering Corp
Original Assignee
Sinopec Oilfield Service Corp
Sinopec Shengli Petroleum Engineering Corp
Drilling Technology Research Institute of Sinopec Shengli Petroleum Engineering Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Sinopec Oilfield Service Corp, Sinopec Shengli Petroleum Engineering Corp, Drilling Technology Research Institute of Sinopec Shengli Petroleum Engineering Corp filed Critical Sinopec Oilfield Service Corp
Priority to CN201520876279.XU priority Critical patent/CN205175833U/en
Application granted granted Critical
Publication of CN205175833U publication Critical patent/CN205175833U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Investigating Strength Of Materials By Application Of Mechanical Stress (AREA)

Abstract

本实用新型涉及一种适用于多种尺寸海底管道内检测仪器的耐压试验装置。包括耐压筒体(3)和设置在耐压筒体(3)两端的法兰端盖(1),在耐压筒体(3)上部连接有注水阀(6)、排气阀(7)、压力表(8)和安全阀(9),在耐压筒体(3)下部连接有底座支架(4)和泄流阀(2)。所述耐压筒体(3)采用低合金高强度结构钢制成的卧式管道状结构,两端固连有带颈法兰,法兰端盖(1)与带颈法兰通过密封垫片和螺栓连接密封;在耐压筒体(3)的外周设置吊耳(5)。底座支架(4)还包括丝杠和与丝杆连接的支撑轮;泄流阀(2)通过带法兰盘的90°弯头与耐压装置筒体(3)连接。本实用新型的装置,保障了耐压试验的安全性和可靠性,具有易操作、安全可靠等特点。

The utility model relates to a pressure-resistant test device suitable for detection instruments in submarine pipelines of various sizes. It includes a pressure-resistant cylinder (3) and flange end covers (1) arranged at both ends of the pressure-resistant cylinder (3), and a water injection valve (6) and an exhaust valve (7) are connected to the upper part of the pressure-resistant cylinder (3). ), a pressure gauge (8) and a safety valve (9), and a base bracket (4) and a discharge valve (2) are connected to the lower part of the pressure-resistant cylinder (3). The pressure-resistant cylinder (3) is a horizontal pipe-like structure made of low-alloy high-strength structural steel, with neck flanges fixed at both ends, and the flange end cover (1) and the neck flange pass through the gasket Sheets and bolts are connected and sealed; lifting lugs (5) are provided on the outer periphery of the pressure-resistant cylinder (3). The base bracket (4) also includes a lead screw and a support wheel connected with the lead screw; the discharge valve (2) is connected to the cylinder body (3) of the pressure-resistant device through a 90° elbow with a flange. The device of the utility model ensures the safety and reliability of the withstand voltage test, and has the characteristics of easy operation, safety and reliability.

Description

一种海底管道内检测仪器耐压试验装置A pressure test device for detection instruments in submarine pipelines

技术领域 technical field

本实用新型属于石油、天然气管道检测领域中的试验装置,主要适用于多种尺寸的海底管道内检测仪器的耐压试验。 The utility model belongs to a test device in the field of detection of oil and natural gas pipelines, and is mainly suitable for the pressure test of detection instruments in various sizes of submarine pipelines.

背景技术 Background technique

海底油气管道担负着输送油气产品的任务,是能源供应、石油石化的基础条件,被誉为国家重大生命线。海底管道在制造、工艺、安装等过程中可能引入微观缺陷,加之运输介质、环境条件等因素使得管道常有腐蚀和裂纹等缺陷出现。对管道实施内检测,准确把握管道状况,并根据一定的优选原则,对一些严重缺陷进行及时维修,这样可以避免管道事故发生,同时也能大大延长管道寿命。目前,我国在不同海域已建成47个油气田,拥有各种规格管道近百条,总长度在3700公里以上,部分海底管道使用时间已经超过18年,个别已经达到25年。一旦出现管道破坏的突发恶性事故不仅会造成油气泄漏,产生巨大的经济损失,还威胁到人民的生命安全、污染环境,产生严重的社会后果。因此,需要对海底管道进行定期的检测和有效的监管,保证海上油气生产的安全运行。 Submarine oil and gas pipelines are responsible for the transportation of oil and gas products. They are the basic conditions for energy supply and petroleum petrochemicals, and are known as the country's major lifeline. Submarine pipelines may introduce microscopic defects in the process of manufacturing, technology, installation, etc., coupled with factors such as transport medium and environmental conditions, the pipelines often have defects such as corrosion and cracks. Implement internal inspection on the pipeline, accurately grasp the pipeline condition, and timely repair some serious defects according to certain optimization principles, so as to avoid pipeline accidents and greatly extend the life of the pipeline. At present, my country has built 47 oil and gas fields in different sea areas, and has nearly 100 pipelines of various specifications with a total length of more than 3,700 kilometers. Some submarine pipelines have been in use for more than 18 years, and some have reached 25 years. Once a sudden malignant accident of pipeline damage occurs, it will not only cause oil and gas leakage and huge economic losses, but also threaten people's lives and pollute the environment, resulting in serious social consequences. Therefore, regular testing and effective supervision of submarine pipelines are required to ensure the safe operation of offshore oil and gas production.

由于海底管道较陆地管道的服役条件苛刻,对管道内检测器的技术指标要求更高。所以管道道内检测仪器在投入生产管线进行检测之前,应当进行一定标准的耐压试验,确保检测仪器的电子设备不会因为压力进水而失效,影响检测结果的准确性。目前国内尚没有形成专业的海底管道内检测队伍,没有专门的海底管道内检测仪器的耐压试验设备。通常借用别的相关类似设备或者通用的耐压测试装置进行海底管道内检测仪器的耐压试验。管道内检测器与实验装置出现外形、尺寸以及压力等测试条件不匹配的情况,影响了试验的准确性,并且存在一定的安全隐患。 Due to the harsher service conditions of submarine pipelines than land pipelines, the requirements for the technical indicators of in-pipeline detectors are higher. Therefore, before the detection instrument in the pipeline is put into the production pipeline for detection, a certain standard pressure test should be carried out to ensure that the electronic equipment of the detection instrument will not fail due to pressure water ingress, which will affect the accuracy of the detection results. At present, there is no professional submarine pipeline inspection team in China, and there is no special pressure test equipment for submarine pipeline inspection instruments. The pressure test of the detection instrument in the submarine pipeline is usually carried out by using other related similar equipment or a general pressure test device. The shape, size and pressure of the in-line detector and the experimental device do not match the test conditions, which affects the accuracy of the test and has certain safety hazards.

实用新型内容 Utility model content

本实用新型的目的在于解决上述问题,提供一种安全可靠的海底管道检测仪器耐压试验装置,以对海底管道内检测器进行整体的耐压试验,确保管道内检测器电子设备的可靠性和准确性。 The purpose of this utility model is to solve the above problems, to provide a safe and reliable submarine pipeline detection instrument pressure test device, to carry out the overall pressure test of the detector in the submarine pipeline, to ensure the reliability and reliability of the electronic equipment of the detector in the pipeline. accuracy.

为了实现上述目的,本实用新型采取以下技术方案: In order to achieve the above object, the utility model takes the following technical solutions:

一种海底管道内检测仪器耐压试验装置,包括耐压筒体3和设置在耐压筒体3两端的法兰端盖1,在耐压筒体3上部连接有注水阀6、排气阀7、压力表8和安全阀9,在耐压筒体3下部连接有底座支架4和泄流阀2。 A pressure test device for a detection instrument in a submarine pipeline, comprising a pressure-resistant cylinder 3 and flange end covers 1 arranged at both ends of the pressure-resistant cylinder 3, and a water injection valve 6 and an exhaust valve connected to the upper part of the pressure-resistant cylinder 3 7. The pressure gauge 8 and the safety valve 9 are connected with the base support 4 and the discharge valve 2 at the lower part of the pressure-resistant cylinder 3 .

上述方案还包括: The above program also includes:

所述耐压筒体3采用低合金高强度结构钢制成的卧式管道状结构,两端固连有带颈法兰,法兰端盖1与带颈法兰通过密封垫片和螺栓连接密封;在耐压筒体3的外周设置吊耳5。 The pressure-resistant cylinder 3 is a horizontal pipe-like structure made of low-alloy high-strength structural steel, with neck flanges fixed at both ends, and the flange end cover 1 and the neck flange are connected by sealing gaskets and bolts Sealing; lifting lugs 5 are set on the outer periphery of the pressure-resistant cylinder 3 .

底座支架4还包括丝杠和与丝杆连接的支撑轮;泄流阀2通过带法兰盘的90°弯头与耐压装置筒体3连接。 The base bracket 4 also includes a lead screw and a support wheel connected with the lead screw; the discharge valve 2 is connected with the cylinder body 3 of the pressure-resistant device through a 90° elbow with a flange.

本实用新型的效果:本实用新型在于提供一种海底管道内检测仪器的耐压试验装置,采用卧式的管道状结构形式,很好的适应了管道内检测器的外形尺寸,端面采取带密封垫片的法兰密封,设置有安全阀、排气阀等安全装置,密封效果好,安全可靠。 The effect of the utility model: the utility model is to provide a pressure test device for detecting instruments in a submarine pipeline, which adopts a horizontal pipeline structure, which is well adapted to the external dimensions of the detector in the pipeline, and the end surface adopts a seal The flange seal of the gasket is equipped with safety devices such as safety valves and exhaust valves, which have good sealing effect and are safe and reliable.

附图说明 Description of drawings

图1是管道内检测仪器耐压实验装置示意图; Fig. 1 is a schematic diagram of the pressure test device of the detection instrument in the pipeline;

图中1.法兰端盖,2.泄流阀,3.耐压筒体,4.底座支架,5.吊耳,6.注水阀,7.排气阀,8.压力表,9.安全阀。 In the figure 1. Flange end cover, 2. Drain valve, 3. Pressure-resistant cylinder, 4. Base bracket, 5. Lifting lug, 6. Water injection valve, 7. Exhaust valve, 8. Pressure gauge, 9. safety valve.

具体实施方式 detailed description

下面结合附图说明中的图1对本实用新型做进一步说明。 Below in conjunction with Fig. 1 in the description of the accompanying drawings, the utility model will be further described.

一种海底管道内检测仪器耐压试验装置,主要是由底座支架4、泄流阀2、耐压筒体3、安全阀9、排气阀7、注水阀6、压力表8、法兰端盖1等部件组成。其中,底座支架4可以通过丝杠旋转,调节支撑轮升降;泄流阀2通过带法兰盘的90°弯头与耐压装置筒体连接,打压结束后打开泄流阀泄流;耐压筒体3采用低合金高强度结构钢的压力容器专用板材,两端焊接有带颈法兰,法兰端面带有密封垫片,法兰端盖1通过螺栓与筒体法兰3端面固定,达到锁紧密封的效果;安全阀9与耐压筒体3连接,可以手动设定压力上限值,当压力超过设定的测试参数时,安全阀自动打开泄压,确保打压过程的安全性;排气阀7与耐压筒体3连接,注水过程中打开排气阀7排出筒体内的气体;注水阀6与耐压筒体3连接,实验时通过注水阀6进行注水和打压;压力表8显示耐压筒体内的压力。 A pressure-resistant test device for detection instruments in submarine pipelines, mainly composed of a base bracket 4, a discharge valve 2, a pressure-resistant cylinder 3, a safety valve 9, an exhaust valve 7, a water injection valve 6, a pressure gauge 8, and a flange end Cover 1 and other components. Among them, the base bracket 4 can be rotated by a screw to adjust the lifting of the support wheel; the discharge valve 2 is connected to the cylinder of the pressure-resistant device through a 90° elbow with a flange, and the discharge valve is opened to discharge after the pressure is completed; the pressure-resistant The cylinder body 3 is made of low-alloy high-strength structural steel special plates for pressure vessels, with neck flanges welded at both ends, and sealing gaskets on the end faces of the flanges. The flange end cover 1 is fixed to the end face of the cylinder flange 3 by bolts. To achieve the effect of locking and sealing; the safety valve 9 is connected with the pressure-resistant cylinder 3, and the upper limit of the pressure can be set manually. When the pressure exceeds the set test parameters, the safety valve will automatically open to release the pressure to ensure the safety of the pressing process The exhaust valve 7 is connected with the pressure-resistant cylinder 3, and the gas in the cylinder is discharged by opening the exhaust valve 7 during the water injection process; the water injection valve 6 is connected with the pressure-resistant cylinder 3, and water injection and pressure are carried out through the water injection valve 6 during the experiment; Table 8 shows the pressure inside the pressure-resistant cylinder.

本实用新型的特点之一:采用卧式管道状的结构形式适合管道内检测仪器的外形尺寸。 One of the characteristics of the utility model: adopting a horizontal pipe-like structure suitable for the external dimensions of the detection instrument in the pipe.

本实用新型的特点之二:装置端面采用带密封垫片的法兰密封形式,密封效果好、耐压等级高、安全性能好。 The second feature of the utility model: the end face of the device adopts the flange sealing form with sealing gasket, which has good sealing effect, high pressure resistance level and good safety performance.

本实用新型的特点之三:装置上设置有安全阀当超过压力上限时,可以自动泄压,保证了打压过程的安全性。 The third feature of the utility model: the device is provided with a safety valve that can automatically release the pressure when the pressure exceeds the upper limit, ensuring the safety of the pressing process.

在图中所示,底座支架4通过焊接与耐压筒体2连接,底座支架带有支撑轮,可以通过丝杠调节支撑轮的高度,实现试验装置的移动。通过吊耳5将装置吊至固定位置后,调节丝杠,升起支撑轮,让底座支架4贴紧地面,固定试验装置的位置;打开法兰端盖1,将被实验的管道内检测器装入耐压筒体3,关闭法兰端盖,上紧固定螺栓;关闭泄流阀2,打开排气阀7,将注水管线连接至注水阀6,开启水泵注水,待排气阀7有水流流出时,关闭排气阀7,关闭注水阀6;设置好安全阀9的压力上限,观察压力表8的数值,开始进行打压;耐压试验结束后,首先慢慢打开排气阀7,缓慢释放耐压装置内的压力,观察压力表8的数值,当压力降为0时,打开泄流阀2,排出试验装置筒体内的液体;松开法兰端面的固定螺栓,打开法兰端盖1,从耐压装置筒体3内取出管道内检测器,试验完毕。 As shown in the figure, the base bracket 4 is connected to the pressure-resistant cylinder 2 by welding, and the base bracket has support wheels, and the height of the support wheels can be adjusted by a screw to realize the movement of the test device. After lifting the device to a fixed position through the lifting lug 5, adjust the lead screw, raise the support wheel, make the base bracket 4 close to the ground, and fix the position of the test device; open the flange end cover 1, and place the detector in the pipeline to be tested Install the pressure-resistant cylinder 3, close the flange end cover, and tighten the fixing bolts; close the discharge valve 2, open the exhaust valve 7, connect the water injection pipeline to the water injection valve 6, turn on the water pump to inject water, and wait until the exhaust valve 7 is activated. When the water flows out, close the exhaust valve 7 and close the water injection valve 6; set the pressure upper limit of the safety valve 9, observe the value of the pressure gauge 8, and start to pressurize; after the pressure test is over, first slowly open the exhaust valve 7, Slowly release the pressure in the pressure-resistant device, observe the value of the pressure gauge 8, and when the pressure drops to 0, open the discharge valve 2 to discharge the liquid in the cylinder of the test device; loosen the fixing bolts on the flange end face, and open the flange end Cover 1, take out the in-line detector from the cylinder body 3 of the pressure-resistant device, and the test is completed.

该装置采用卧式的管道状结构作为耐压装置的试验筒体,可以很好的适应各种管道内检测器的外形尺寸,端面采用带密封垫片的法兰密封有很好的密封效果,设置有安全阀、排气阀等安全装置,大大提高了管道内检测器耐压试验的安全性及可靠性。 The device adopts a horizontal pipe-like structure as the test cylinder of the pressure-resistant device, which can well adapt to the external dimensions of various pipeline detectors. The end face is sealed with a flange with a sealing gasket, which has a good sealing effect. Safety devices such as safety valves and exhaust valves are installed, which greatly improves the safety and reliability of the pressure test of the detector in the pipeline.

Claims (3)

1. detecting instrument Withstand test device in a submarine pipeline, comprise overpressure resistant barrel (3) and be arranged on the flange end cap (1) at overpressure resistant barrel (3) two ends, it is characterized in that: be connected with water injection valve (6), vent valve (7), tensimeter (8) and safety valve (9) on overpressure resistant barrel (3) top, be connected with base support (4) and venting valve (2) in overpressure resistant barrel (3) bottom.
2. detecting instrument Withstand test device in submarine pipeline according to claim 1, it is characterized in that: the horizontal pipeline shape structure that described overpressure resistant barrel (3) adopts low-alloy high-tensile structural steel to make, two ends are fixed with hubbed flange, and flange end cap (1) and hubbed flange are connected by gasket seal and bolt and seal; In the periphery of overpressure resistant barrel (3), hanger (5) is set.
3. detecting instrument Withstand test device in submarine pipeline according to claim 1 and 2, is characterized in that: the support wheel that base support (4) also comprises leading screw and is connected with screw mandrel; Venting valve (2) is connected with pressure-resistant apparatus cylindrical shell (3) by 90 ° of elbows of flanged dish.
CN201520876279.XU 2015-11-05 2015-11-05 Detecting instrument pressure resistance test installation in submarine pipeline Expired - Fee Related CN205175833U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520876279.XU CN205175833U (en) 2015-11-05 2015-11-05 Detecting instrument pressure resistance test installation in submarine pipeline

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520876279.XU CN205175833U (en) 2015-11-05 2015-11-05 Detecting instrument pressure resistance test installation in submarine pipeline

Publications (1)

Publication Number Publication Date
CN205175833U true CN205175833U (en) 2016-04-20

Family

ID=55739811

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520876279.XU Expired - Fee Related CN205175833U (en) 2015-11-05 2015-11-05 Detecting instrument pressure resistance test installation in submarine pipeline

Country Status (1)

Country Link
CN (1) CN205175833U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106680100A (en) * 2015-11-05 2017-05-17 中石化石油工程技术服务有限公司 Withstand test device for detectors in seabed pipelines
CN109696468A (en) * 2018-12-04 2019-04-30 中海油能源发展股份有限公司 A kind of in-pipeline detector go-and-return test platform and test method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106680100A (en) * 2015-11-05 2017-05-17 中石化石油工程技术服务有限公司 Withstand test device for detectors in seabed pipelines
CN109696468A (en) * 2018-12-04 2019-04-30 中海油能源发展股份有限公司 A kind of in-pipeline detector go-and-return test platform and test method

Similar Documents

Publication Publication Date Title
CN106680100A (en) Withstand test device for detectors in seabed pipelines
CN215677912U (en) Hydraulic test device for vertical cylindrical pressure container
CN108982230A (en) A kind of PE pipe external pressure test device
CN201172523Y (en) An adjustable gantry tube containment pressure relief plugging device
CN205175833U (en) Detecting instrument pressure resistance test installation in submarine pipeline
CN205384120U (en) Pressure seal pressure testing frock
CN203929520U (en) A kind of heat exchanger tube pass pressure testing device
CN102901671A (en) Water pressure testing system of manual pressure container
CN205141620U (en) LNG immersed pump is with sealed protection device of electric cable connection
CN202853986U (en) Manual type water pressure testing system for pressure vessel
CN210005507U (en) Waterproof material leakage detection device
CN109916574B (en) Flange sealing and detection simulation device for power station water system equipment
CN201425576Y (en) Buffer device for high temperature and high pressure toxic and harmful gas test equipment
CN202903648U (en) Waterproof instrument used for detecting waterproof material
CN207300469U (en) Industrial pipeline dust-precipitating system aluminium powder subsequent explosion explosion suppression device
CN216103951U (en) Filling station is with anticorrosive prevention of seepage static accumulation double-deck oil storage tank
CN206177538U (en) Large -scale isolation butterfly valve inspection rack of million multikilowatts nuclear power station unit condensate pump entry
CN204314154U (en) A kind of float-type exhaust apparatus
CN203975640U (en) Compound type double-layer oil tank
CN203132924U (en) Local pressure testing structure for pressure vessel
CN209026188U (en) A Novel Double-layer Sealed Early Warning Structure
CN102562558A (en) Large centrifugal compressor pressure testing shell and pressure testing method thereof
CN102944506A (en) Impervious instrument for detecting water-proof materials
CN202350973U (en) Pressure gauge seat capable of automatically preventing leakage
CN203297947U (en) Temperature and pressure measuring data collection head for high pressure pipeline

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160420

Termination date: 20211105

CF01 Termination of patent right due to non-payment of annual fee