CN1693659A - Device for measuring multiphase fluid of water, sand and air in air well drilling and its method - Google Patents

Device for measuring multiphase fluid of water, sand and air in air well drilling and its method Download PDF

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Publication number
CN1693659A
CN1693659A CNA2005100426429A CN200510042642A CN1693659A CN 1693659 A CN1693659 A CN 1693659A CN A2005100426429 A CNA2005100426429 A CN A2005100426429A CN 200510042642 A CN200510042642 A CN 200510042642A CN 1693659 A CN1693659 A CN 1693659A
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China
Prior art keywords
sand
air
water
gas
differential pressure
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CNA2005100426429A
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CN1323223C (en
Inventor
周芳德
刘海浪
曾亚勤
刘磊
马怀彦
周思怡
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Xian Jiaotong University
Xian Changqing Technology Engineering Co Ltd
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Xian Jiaotong University
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Abstract

This invention discloses a measuring device and its method of water, sand and air in air drilling well. The device includes gas and liquor and solid separator connected on pipeline of water, sand and air drainage, inverse U type tube, the first differential pressure transducer is set on ascend part of the inverse U type tube, and the second differential pressure transducer is set on descend part. The inverse U type tube is connected to outlet of drainage through Venturi tube and mixer set on pipeline. One way valve, Venturi tube sprayer, Venturi tube, the first differential pressure transducer and the second differential pressure transducer are in turn set on the separator, and they also connected to computer. The Venturi tube sprayer is used to test gas flow, and gas density is revised by manometer. Pressure difference of both sides of the inverse U type is tested by the Venturi tube and then phase ratio of water and sand is got. Computer solves according to multiple items fluid flow to get the volume or weight flow of water and sand.

Description

The water of heterogeneous fluid, sand, air measurement mechanism and method thereof in the air drilling
Technical field
The invention belongs to the measuring apparatus of Petroleum Production technical field, relate to a kind of flow-measuring method and device, the water of heterogeneous fluid, sand, air measurement mechanism and method thereof in particularly a kind of air drilling.
Background technology
With the drilling well of air cooling drill bit method is a new technology that is used for natural gas extraction, new method, and this new technology is compared with the mud cools drill bit, has bit speed height, advantage that cost is low.And a key technology using this new method is to the drilling well effluent--the flow of-gas, water, sand is measured, and monitoring is to monitor the geology state in the drilling process at any time.At present also not having effective ways to monitor the flow of gas, water and sand, can only be estimation, measuring and calculating qualitatively, does not also have accurate method to use.Up to the present, also not having both at home and abroad can this gas-liquid-solid three-phase flow of on-line measurement air water sand equipment.Use the method for gas/water/solid-state three-phase flow of sand gas-liquid and instantaneous delivery and the integrated flux that device can be understood gas in the drilling process, water, sand, extremely important meaning is arranged for gas drilling.
Summary of the invention
The objective of the invention is to, provide a kind of on-line continuous to measure the measurement mechanism of multinomial fluid Zhong Shui, sand, air mass flow and provide measuring method.
To achieve these goals, the technical scheme that the present invention takes is: the water of heterogeneous fluid, sand, air measurement mechanism in a kind of air drilling, comprise the solution-air solid separator, it is characterized in that, one end of this solution-air solid separator is connected with the pipeline of heterogeneous fluid, the other end is connected with an inverted U pipe, and there is first differential pressure pickup ascent stage of inverted U pipe, and its descending branch is provided with second differential pressure pickup; Outlet with the effluent pipeline is connected the inverted U pipe with blender by the Venturi tube that is provided with on the pipeline;
Be provided with one-way cock, pressure gauge and Venturi nozzle on the solution-air solid separator successively, and be communicated with blender by pipeline;
Pressure gauge, Venturi tube spout, Venturi tube, first differential pressure pickup, second differential pressure pickup also are connected with computer respectively.
The measuring method of above-mentioned measurement mechanism is characterized in that, comprises the following steps:
1) heterogeneous fluid is introduced into the solution-air solid separator, gas and water, sand separation in the solution-air solid separator, gas entered blender after gas upwards flowed through gas unidirectional valve, pressure gauge and Venturi tube nozzle measurement gas flow, and by pressure gauge correction gas density, the gas unidirectional valve only allows gas to flow through, and anti-sealing, sand mixture flow out;
2) water, sand mixture through the ascent stage of inverted U pipe and the differential pressure pickup of descending branch setting, by the pressure differential of these inverted U pipe both sides of Venturi measuring, obtain the phase ratio of water, sand then by the inverted U pipe;
3) computer can obtain the volume or weight flow of water and sand according to multinomial channel theory simultaneous solution.
In the air drilling of the present invention in the air drilling water of heterogeneous fluid, sand, air measurement mechanism and method thereof solved the difficult problem of pneumatic drill WIH, sand, air effluent flow measurement, the certainty of measurement height, data are reliable, and whole measuring process can on-line measurement by computer control.
Description of drawings
Accompanying drawing 1 is a structure principle chart of the present invention.
The present invention is further illustrated below in conjunction with accompanying drawing
The specific embodiment
Referring to accompanying drawing, the measurement mechanism of the water of heterogeneous fluid, sand, air in the air drilling of the present invention, comprise solution-air solid separator 1, one end of this solution-air solid separator 1 is connected with the pipeline of heterogeneous fluid, the other end is connected with an inverted U pipe 4, there is first differential pressure pickup 9 ascent stage of inverted U pipe 4, and its descending branch is provided with second differential pressure pickup 10; Outlet with the effluent pipeline is connected inverted U pipe 4 with blender 6 by the Venturi tube 5 that is provided with on the pipeline;
Be provided with one-way cock 2, pressure gauge 8 and Venturi nozzle 3 on the solution-air solid separator 1 successively, and be communicated with blender 6 by pipeline;
Pressure gauge 8, Venturi nozzle 3, Venturi tube 5, first differential pressure pickup 9, second differential pressure pickup 10 also are connected with computer 7 respectively.
Heterogeneous fluid is introduced into the efficient solution-air solid separator 1 of a cramped construction, and gas and water sand separation gas are upwards flowed through gas unidirectional valve 2, and 2 on valve allows gas to flow through, and anti-sealing sand mixture flows out.Gas is with single-phase flow meter Venturi nozzle 3 measurement gas flows.Pressure gauge 8 is used for revising gas density.
Q g = C · A · Δρ ρ g - - - ( 1 )
In the formula, C is a discharge coefficient, and Q is a gas density under the operating mode, revises by pressure p, and A is the Venturi nozzle throat area;
Inverted U pipe 4 is used to measure water sand mixture density, when water, sand mixture flow through ascent stage of inverted U pipe (4), measures pressure reduction ρ at two first differential pressure pickups 9 of surveying vertical tube place's ascent stages 1, second differential pressure pickup 10 of descending branch measures pressure reduction ρ 2, this pressure reduction is mixture heavy position pressure reduction and friction pressure reduction sum.Its formula is as follows:
Δρ 1=ρ f+Δρ mgh (2)
Δρ 2=Δρ f-Δρ mgh (3)
In the formula, ρ is a water sand mixture density, and h is the differential pressure measurement height, ρ fBe frictional resistance pressure reduction, ρ mBe water sand mixture density;
Can obtain by formula (2), (3):
Δρ m=(Δρ 1-Δρ 2)/2gh (4)
In addition, Δ ρ m=k w* ρ s+ k w* ρ w(5)
In the formula, Ks, Kw are the phase ratio of sand, water, ρ s,, ρ sDensity for sand, water.
Because:
k s+k w=1 (6)
Can obtain the phase ratio k of water, sand by formula (5), (6) w, k s
The water sand mixture is measured the long-pending flow of water sand body with Venturi tube 5:
Q t = C × S × Δρ Δ ρ m - - - ( 7 )
In the formula: Δ ρ is the pressure reduction of differential pressure pickup 9 and differential pressure pickup 10, and C is a discharge coefficient, and S is the throat area of Venturi tube.
Can obtain the volume or weight flow of water and sand by mixture density and water sand mixture volume flow:
Q w=k w×Q t (8)
Q w=k s×Q t (9)
Whole measuring process is by computer 7 controls and processing, all automations.

Claims (2)

1. water, sand, the air measurement mechanism of multinomial fluid in the air drilling, comprise solution-air solid separator (1), it is characterized in that, one end of this solution-air solid separator (1) is connected with the pipeline of water, sand, air effluent, the other end is connected with an inverted U pipe (4), there is first differential pressure pickup (9) ascent stage of inverted U pipe (4), and its descending branch is provided with second differential pressure pickup (10); Inverted U pipe (4) is connected with the outlet of effluent pipeline with blender (6) by the Venturi tube (5) that is provided with on the pipeline;
Be provided with one-way cock (2), pressure gauge (8) and Venturi tube nozzle (3) on the solution-air solid separator (1) successively, and be communicated with blender (6) by pipeline;
Pressure gauge (8), Venturi tube spout (3), Venturi tube (5), first differential pressure pickup (9), second differential pressure pickup (10) also are connected with computer (7) respectively.
2. water, sand, the air measuring method of multinomial fluid in the air drilling is characterized in that, this method adopts the described device of claim 1, and its measuring method comprises the following steps:
1) heterogeneous fluid is introduced into the solution-air solid separator, gas and water, sand separation in the solution-air solid separator, gas entered blender after gas upwards flowed through gas unidirectional valve, pressure gauge and Venturi tube nozzle measurement gas flow, and by pressure gauge correction gas density, the gas unidirectional valve only allows gas to flow through, and anti-sealing, sand mixture flow out;
2) water, sand mixture through the ascent stage of inverted U pipe and the differential pressure pickup of descending branch setting, by the pressure differential of these inverted U pipe both sides of Venturi measuring, obtain the phase ratio of water, sand then by the inverted U pipe;
3) computer can obtain the volume or weight flow of water and sand according to multinomial channel theory simultaneous solution.
CNB2005100426429A 2005-05-08 2005-05-08 Device for measuring multiphase fluid of water, sand and air in air well drilling and its method Expired - Fee Related CN1323223C (en)

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CNB2005100426429A CN1323223C (en) 2005-05-08 2005-05-08 Device for measuring multiphase fluid of water, sand and air in air well drilling and its method

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CNB2005100426429A CN1323223C (en) 2005-05-08 2005-05-08 Device for measuring multiphase fluid of water, sand and air in air well drilling and its method

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CN1323223C CN1323223C (en) 2007-06-27

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102168548A (en) * 2011-03-30 2011-08-31 北京万普隆能源技术有限公司 Exploitation measuring device and method of coal bed gas well
US10698427B2 (en) 2016-10-31 2020-06-30 Ge Oil & Gas Pressure Control Lp System and method for assessing sand flow rate
CN112647896A (en) * 2020-12-21 2021-04-13 中海油田服务股份有限公司 Valve system for measuring flow of underground multiphase fluid

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN85201644U (en) * 1985-04-30 1986-02-12 西安交通大学 Single orifice-plate biphase flowmeter
CN1120981C (en) * 1999-12-29 2003-09-10 西安交通大学 Measuring method of crude petroleum, natural gas and water multiphase flow and its measuring equipment

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102168548A (en) * 2011-03-30 2011-08-31 北京万普隆能源技术有限公司 Exploitation measuring device and method of coal bed gas well
CN102168548B (en) * 2011-03-30 2013-06-19 北京万普隆能源技术有限公司 Exploitation measuring device and method of coal bed gas well
US10698427B2 (en) 2016-10-31 2020-06-30 Ge Oil & Gas Pressure Control Lp System and method for assessing sand flow rate
CN112647896A (en) * 2020-12-21 2021-04-13 中海油田服务股份有限公司 Valve system for measuring flow of underground multiphase fluid

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EE01 Entry into force of recordation of patent licensing contract

Assignee: Shaanxi super Pharmaceutical Co., Ltd.

Assignor: Shaanxi Academy of traditional Chinese Medicine

Contract fulfillment period: 2006.10.22 to 2016.10.22 contract change

Contract record no.: 2009610000190

Denomination of invention: Device for measuring multiphase fluid of water, sand and air in air well drilling and its method

Granted publication date: 20070627

License type: Exclusive license

Record date: 20091224

LIC Patent licence contract for exploitation submitted for record

Free format text: EXCLUSIVE LICENSE; TIME LIMIT OF IMPLEMENTING CONTACT: 2006.10.22 TO 2016.10.22; CHANGE OF CONTRACT

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Effective date: 20091224

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Owner name: XI AN CHANGQING TECHNOLOGY ENGINEERING CO., LTD.

C41 Transfer of patent application or patent right or utility model
C53 Correction of patent for invention or patent application
CB03 Change of inventor or designer information

Inventor after: Liu Hailang

Inventor after: Zhou Zongqiang

Inventor after: Zeng Yaqin

Inventor after: Liu Lei

Inventor after: Ma Huaiyan

Inventor after: Zhou Siyi

Inventor after: Zhou Fangde

Inventor before: Zhou Fangde

Inventor before: Liu Hailang

Inventor before: Zeng Yaqin

Inventor before: Liu Lei

Inventor before: Ma Huaiyan

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COR Change of bibliographic data

Free format text: CORRECT: INVENTOR; FROM: ZHOU FANGDE LIU HAILANG ZENG YAQIN LIU LEI MA HUAIYAN ZHOU SIYI TO: LIU HAILANG ZHOU ZONGQIANG ZENG YAQIN LIU LEI MA HUAIYAN ZHOU SIYI ZHOU FANGDE

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Address after: 710049 Xianning Road, Shaanxi, China, No. 28, No.

Co-patentee after: Xian Changqing Science and Technology Engineering Co., Ltd.

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