CN104565827B - Monitoring Pinpelines instrument - Google Patents

Monitoring Pinpelines instrument Download PDF

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Publication number
CN104565827B
CN104565827B CN201410648154.1A CN201410648154A CN104565827B CN 104565827 B CN104565827 B CN 104565827B CN 201410648154 A CN201410648154 A CN 201410648154A CN 104565827 B CN104565827 B CN 104565827B
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China
Prior art keywords
instrument
valve
upstream
downstream
main cylinder
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Expired - Fee Related
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CN201410648154.1A
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Chinese (zh)
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CN104565827A (en
Inventor
方永和
暴喜军
李昆垚
李安君
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Heilongjiang Puce Technology Co ltd
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Individual
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  • Measuring Volume Flow (AREA)
  • Measuring Fluid Pressure (AREA)

Abstract

A kind of Monitoring Pinpelines instrument.The collection of existing Monitoring Pinpelines data sheet one is mainly solved, data acquisition is inconvenient not in time, the problem that data are checked meter by artificial reading.It is characterized in that:Dam and the valve downstream (7) and upstream valve (5) of control valve downstream pod apertures (6) and upstream valve pod apertures (4) are connected with flange (1), there is instrument socket (2) flange that dams (1) side;The main cylinder of instrument (8) right side closed chamber is built-in with battery (12), communication plug, storage circuit, and the main cylinder of instrument (8) left side is built-in with upstream pressure sensor (9), downstream pressure sensor (10), center temperature sensor (11).The Monitoring Pinpelines instrument is applied to the mass flow measurement of various mixing liquids, can bear 25 MPas pipeline pressure and less than 150 degrees Celsius of temperature, flow, pressure and liquid center's temperature can be simultaneously measured, long-term Coutinuous store formula record is realized and is transmitted wirelessly, be provided simultaneously with manual sampling function.

Description

Monitoring Pinpelines instrument
Technical field:
The present invention relates to a kind of monitoring device, especially Monitoring Pinpelines instrument.
Background technology:
The flow of liquid, pressure, temperature are extremely important in field of oil field oil extraction or oil-gas gathering and transportation field, monitoring pipeline. Generally carry out independent acquisition flow, pressure, temperature using various instruments such as independently installed flowmeter, pressure gauge, thermometers at present Data, thus result in management inconvenience, and data acquisition is inconvenient not in time, and data are checked meter by artificial reading, and artificial reading cannot Realize long-term continuous record flow, pressure, temperature.In addition, the liquid mixed for oil, gas and water, or impure more field Close, the complex working condition of HTHP power, under adverse circumstances, test is inconvenient, and flow rate test is inaccurate.
The content of the invention:
In order to solve the collection of existing Monitoring Pinpelines data sheet one, data acquisition is inconvenient not in time, and data are by artificial reading The problem checked meter.The present invention provides a kind of Monitoring Pinpelines instrument.The Monitoring Pinpelines instrument is applied to the mass flow of various mixing liquids Measurement, can bear 25 MPas pipeline pressure and less than 150 degrees Celsius of temperature, can simultaneously measure flow, pressure and liquid Central temperature, realizes that long-term Coutinuous store formula record and directly reading type radio send, and is provided simultaneously with manual sampling function.
The technical scheme is that:The Monitoring Pinpelines instrument includes dam flange, instrument socket, the passage that dams, upstream valve Door pod apertures, upstream valve, valve downstream pod apertures, valve downstream, the main cylinder of instrument, upstream pressure sensor, downstream pressure are passed Sensor, center temperature sensor and battery.Damming has the passage that dams of liquid proper flow in pipeline on flange, and dam flange On be connected with control valve downstream pod apertures valve downstream, be connected with the flange that dams control upstream valve pod apertures upstream Valve, there is the instrument socket for being connected through a screw thread the main cylinder of instrument on the flange that dams;There is sealing ring outside the main cylinder of instrument, the main cylinder of instrument is right Side closed chamber is built-in with battery, communication plug, storage circuit, and the upstream pressure sensor for measuring upstream pressure is placed in instrument The main cylinder left side of device above, and is connected with upstream valve, and the downstream pressure sensor for measuring downstream pressure is placed in instrument master Cylinder left end, and be connected with valve downstream, center temperature sensor is laterally disposed in the valve downstream right side under upstream valve, upstream Pressure sensor, downstream pressure sensor, center temperature sensor communication plug are connected with battery and storage circuit.
Instrument socket in such scheme can be used as sample tap;The main cylinder right-hand member of instrument has direct-reading radiating circuit.
The present invention has the advantages that:The Monitoring Pinpelines instrument has liquid in pipeline normal due to using on the flange that dams The passage that dams of flowing, is connected with the valve downstream of control valve downstream pod apertures on the flange that dams, be connected with the flange that dams The upstream valve of upstream valve pod apertures is controlled, there is the instrument socket for being connected through a screw thread the main cylinder of instrument on the flange that dams;Instrument There is sealing ring outside main cylinder, the main cylinder right side closed chamber of instrument is built-in with battery, communication plug, storage circuit, for measuring upstream The upstream pressure sensor of pressure is placed in the main cylinder left side of instrument above, and is connected with upstream valve, for measuring downstream pressure Downstream pressure sensor be placed in the main cylinder left end of instrument, and be connected with valve downstream, center temperature sensor is laterally disposed in Valve downstream right side under trip valve, upstream pressure sensor, downstream pressure sensor, center temperature sensor communication plug Be connected optimization structure with battery and storage circuit.Using damming, passage ensures liquid proper flow in pipeline;Using instrument socket Connection instrument or sampling;Measured using upstream pressure sensor, downstream pressure sensor, center temperature sensor in the main cylinder of instrument Flow, pressure and liquid center's temperature;Stored using storage circuit or wireless transmission flow, pressure and liquid center's temperature number According to.The Monitoring Pinpelines instrument may operate in high pressure, the industrial environment of high-temperature scope, enough to the flow in pipeline, pressure, temperature The unified monitoring of degree, it is not necessary to use various independent monitoring instruments.Flow rate test is applicable to various mixing liquids, flow measurement Result is mass flow.Temperature survey is quick on the draw, accuracy is high, and temperature measurement result is fluid central temperature.Instrument is installed In the position of original routine sampling device, still possess sampled functions.Thus the Monitoring Pinpelines instrument is applied to various mixed liquors The mass flow measurement of body, can bear 25 MPas pipeline pressure and less than 150 degrees Celsius of temperature, can simultaneously measurement stream Amount, pressure and liquid center's temperature, realize that long-term Coutinuous store formula record and directly reading type radio send, and are provided simultaneously with manual sampling Function.
Brief description of the drawings:
Accompanying drawing 1 is agent structure schematic diagram in the present invention.
1- dams flange in accompanying drawing, 2- instrument sockets, and 3- dams passage, 4- upstream valve pod apertures, 5- upstream valves, 6- Valve downstream pod apertures, 7- valve downstreams, the main cylinder of 8- instruments, 9- upstream pressure sensors, 10- downstream pressure sensors, in 11- Heart temperature sensor, 12- batteries.
Specific embodiment:
The invention will be further described below in conjunction with the accompanying drawings:
As shown in drawings, the Monitoring Pinpelines instrument includes dam flange 1, instrument socket 2, the passage 3 that dams, upstream valve water conservancy diversion Hole 4, upstream valve 5, valve downstream pod apertures 6, the main cylinder 8 of valve downstream 7, instrument, upstream pressure sensor 9, downstream pressure are passed Sensor 10, center temperature sensor 11 and battery 12.Damming has the passage 3 that dams of liquid proper flow in pipeline on flange 1, The side of flange 1 of damming is connected with the valve downstream 7 of control valve downstream pod apertures 6, and the flange 1 that dams is connected with control upstream above There are the instrument socket 2 for being connected through a screw thread the main cylinder 8 of instrument, instrument in the upstream valve 5 of valve pod apertures 4, the another side of flange 1 of damming Device socket 2 also can be used as sample tap;The flange 1 that dams is welded or flange is connected in series with pipeline, and liquid is flowed by four passages 3 that dam Cross.If upstream valve 5 or valve downstream 7 are opened, and instrument socket 2 is not inserted into the main cylinder 8 of instrument, it will have liquid from Flowed out in instrument socket 2, realize manual sampling;If do not sampled also without being monitored, by upstream valve 5 or downstream valve Door 7 is all closed.The main right-hand member of cylinder 8 of instrument has and has sealing ring outside direct-reading radiating circuit, the main cylinder 8 of instrument, and the main right side of cylinder 8 of instrument is close Closed chamber is built-in with battery 12, communication plug, storage circuit, and the upstream pressure sensor 9 for measuring upstream pressure is placed in instrument The main left side of cylinder 8 of device above, and is connected with upstream valve 5, and the downstream pressure sensor 10 for measuring downstream pressure is placed in instrument The main left end of cylinder 8 of device, and be connected with valve downstream 7, center temperature sensor 11 is laterally disposed in the valve downstream under upstream valve 5 7 right sides, upstream pressure sensor 9, downstream pressure sensor 10, the communication of center temperature sensor 11 and are deposited plug and battery 12 Storing up electricity road is connected.When needing to carry out memory-type parameter monitoring, the main cylinder 8 of instrument is inserted into the instrument socket 2 of the flange 1 that dams. When needing to carry out direct-reading parameter monitoring, then the main cylinder 8 of instrument is inserted into the instrument socket 2 of the flange 1 that dams.Instrument is inserted Afterwards, center temperature sensor 11 will be placed exactly in the center of pipeline, monitoring liquid center temperature.By upstream valve 5 with Trip valve 7 is all opened, then the pressure of flow path upstream is transferred to upstream pressure sensor 9 by upstream valve pod apertures 4, in measurement Trip pressure, the pressure of flow paths downstream is transferred to downstream pressure sensor 10 by valve downstream pod apertures 6, measures downstream pressure, According to upstream and downstream pressure difference value, the mass flow of runner can be then calculated using differential flow conversion formula.Store circuit Using battery operated, the data storage record that will be collected in memory, or is launched by direct-reading and connected behind connecting plate Radio-circuit launch.Four passages 3 that dam have fixed aperture and flow channel shape, and liquid flows through four passages that dam When 3, flow is bigger, and the pressure loss of generation is bigger, the pressure measured by upstream pressure sensor 9 and downstream pressure sensor 10 Difference is also bigger, thus can converse the mass flow of liquid.
The Monitoring Pinpelines instrument is a kind of Monitoring Pinpelines instrument of split-type design.During Monitoring Pinpelines instrument insertion pipe main body, Not only isolate upstream and downstream pressure, upstream and downstream pressure is individually directed to corresponding pressure sensor, and simultaneously by TEMP Device implantation runner center.While the Monitoring Pinpelines instrument maintains manual sampling function, storage and direct-reading are not only facilitated Arbitrarily change, and realize the measurement of runner central temperature.The Monitoring Pinpelines instrument is a kind of interior discharge orifice plate-type pipeline flow prison Survey instrument, and be integrated with simultaneously central temperature monitoring and artificial dielectric sampled functions, can adapt in high pressure, high-temperature it is severe The multi-parameter monitoring of industry spot.After Monitoring Pinpelines instrument insertion pipe main body, by upstream and downstream pressure sensor measure differences in pressure Calculate mass flow.
The Monitoring Pinpelines instrument has following main feature:
Centralizing inspection is unified to the flow in pipeline, pressure, temperature, it is not necessary to use various independent monitoring instruments.Energy Enough that various mixing liquids (including Oil, Water, Gas mixture) are measured, measurement result is mass flow.Temperature monitoring is to plant Enter formula measuring method, measurement result is liquid center's temperature, be quick on the draw, accuracy it is high.The Monitoring Pinpelines instrument without running gear, Small volume, it is low in energy consumption, can run steadily in the long term.The replaceable original routine sampling device of the Monitoring Pinpelines instrument is installed on original position Put, be not take up extra pipeline position.It is adapted to high pressure, the industrial environment of high-temperature.

Claims (3)

1. a kind of Monitoring Pinpelines instrument, including the flange that dams (1), instrument socket (2), the passage that dams (3), upstream valve pod apertures (4), upstream valve (5), valve downstream pod apertures (6), valve downstream (7), the main cylinder of instrument (8), upstream pressure sensor (9), Downstream pressure sensor (10), center temperature sensor (11) and battery (12), it is characterised in that:Damming on flange (1) has The passage that dams (3) of liquid proper flow in pipeline, is connected with control valve downstream pod apertures (6) on the flange that dams (1) Trip valve (7), is connected with the upstream valve (5) of control upstream valve pod apertures (4), on the flange that dams (1) on the flange that dams (1) There is the instrument socket (2) for being connected through a screw thread the main cylinder of instrument (8);There are sealing ring, the main cylinder of instrument (8) right side outside the main cylinder of instrument (8) Closed chamber is built-in with battery (12), communication plug, storage circuit, the upstream pressure sensor (9) for measuring upstream pressure It is placed in the main cylinder of instrument (8) left side above, and is connected with upstream valve (5), the downstream pressure for measuring downstream pressure is sensed Device (10) is placed in instrument main cylinder (8) left end, and is connected with valve downstream (7), and center temperature sensor (11) is laterally disposed in Valve downstream (7) right side under trip valve (5), upstream pressure sensor (9), downstream pressure sensor (10), central temperature are passed Sensor (11), communication plug are connected with battery (12) and storage circuit.
2. Monitoring Pinpelines instrument according to claim 1, it is characterised in that:Instrument socket (2) is sample tap.
3. Monitoring Pinpelines instrument according to claim 2, it is characterised in that:Instrument main cylinder (8) right-hand member has direct-reading radiating circuit.
CN201410648154.1A 2014-11-04 2014-11-04 Monitoring Pinpelines instrument Expired - Fee Related CN104565827B (en)

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Application Number Priority Date Filing Date Title
CN201410648154.1A CN104565827B (en) 2014-11-04 2014-11-04 Monitoring Pinpelines instrument

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CN201410648154.1A CN104565827B (en) 2014-11-04 2014-11-04 Monitoring Pinpelines instrument

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CN104565827B true CN104565827B (en) 2017-06-16

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110763280A (en) * 2019-11-14 2020-02-07 湖南中部芯谷科技有限公司 Microelectronic rubber tube monitoring device
CN112502699B (en) * 2020-12-21 2023-05-09 方永和 Pumping unit well load interference communication device and communication method thereof

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102162342A (en) * 2011-02-18 2011-08-24 濮阳市百福瑞德石油科技有限公司 Communicating vessel-type qualitative monitoring method for well kick and lost circulation
CN102967567A (en) * 2012-11-21 2013-03-13 铜陵蓝光电子科技有限公司 Online monitoring instrument for water quality by colorimetry
CN103644459A (en) * 2013-12-10 2014-03-19 苏州苏净保护气氛有限公司 Monitoring and alarming system and method for buried gas pipeline leakage

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1182900A (en) * 1997-09-01 1999-03-26 Tokyo Gas Co Ltd Automatic monitoring system for end gas pressure at cutting-connecting works in gas piping

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102162342A (en) * 2011-02-18 2011-08-24 濮阳市百福瑞德石油科技有限公司 Communicating vessel-type qualitative monitoring method for well kick and lost circulation
CN102967567A (en) * 2012-11-21 2013-03-13 铜陵蓝光电子科技有限公司 Online monitoring instrument for water quality by colorimetry
CN103644459A (en) * 2013-12-10 2014-03-19 苏州苏净保护气氛有限公司 Monitoring and alarming system and method for buried gas pipeline leakage

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Effective date of registration: 20200415

Address after: 163000 business service, No.10, building 48, Xibin community, ranghu District, Daqing City, Heilongjiang Province

Patentee after: Daqing Kaisi Petroleum Technology Development Co.,Ltd.

Address before: 163453 Heilongjiang Province, Daqing City Ranghulu District Yuanwang 5 high-rise building room 904

Co-patentee before: Bao Xijun

Patentee before: Fang Yonghe

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Effective date of registration: 20201016

Address after: No.2, floor 3, unit 4, building 1, Daojian community, Daowai District, Harbin City, Heilongjiang Province

Patentee after: Heilongjiang Mou Tao Technology Co.,Ltd.

Address before: 163000 business service, No.10, building 48, Xibin community, ranghu District, Daqing City, Heilongjiang Province

Patentee before: Daqing Kaisi Petroleum Technology Development Co.,Ltd.

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Effective date of registration: 20210926

Address after: 150000 No.2, 3rd floor, unit 2, no.6, Wenku street, Nangang District, Harbin City, Heilongjiang Province

Patentee after: Heilongjiang puce Technology Co.,Ltd.

Address before: 150000 No.2, 3 / F, unit 4, building 1, Daowai District, Harbin City, Heilongjiang Province (residential)

Patentee before: Heilongjiang Mou Tao Technology Co.,Ltd.

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Termination date: 20211104

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