Nothing Special   »   [go: up one dir, main page]

CN102052951A - Measurement device and method for multi-phase interface liquid level based on dual-modality sensor - Google Patents

Measurement device and method for multi-phase interface liquid level based on dual-modality sensor Download PDF

Info

Publication number
CN102052951A
CN102052951A CN 201010542481 CN201010542481A CN102052951A CN 102052951 A CN102052951 A CN 102052951A CN 201010542481 CN201010542481 CN 201010542481 CN 201010542481 A CN201010542481 A CN 201010542481A CN 102052951 A CN102052951 A CN 102052951A
Authority
CN
China
Prior art keywords
electrode
liquid level
row
electrodes
phase interface
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.)
Granted
Application number
CN 201010542481
Other languages
Chinese (zh)
Other versions
CN102052951B (en
Inventor
尹武良
王奔
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.)
Tianjin University
Original Assignee
Tianjin University
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 Tianjin University filed Critical Tianjin University
Priority to CN2010105424810A priority Critical patent/CN102052951B/en
Publication of CN102052951A publication Critical patent/CN102052951A/en
Application granted granted Critical
Publication of CN102052951B publication Critical patent/CN102052951B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Measurement Of Levels Of Liquids Or Fluent Solid Materials (AREA)

Abstract

The invention belongs to the technical field of multi-phase interface liquid level measurement and relates to a measurement device for a multi-phase interface liquid level based on a capacitance/resistance-type dual-modality sensor, which is used for measuring a liquid level of a multi-phase interface. The measurement device comprises an upper computer, a signal generation unit, a power amplifier, an analog multi-way switch, a capacitance/resistance-type dual-modality sensor and a signal collection unit. The invention is characterized in that the capacitance/resistance-type dual-modality sensor comprises an array of electrodes which are distributed in N rows and three columns on the same plane, and N is an integer larger than or equal to 3, wherein the electrodes in the first column and in the second column are all rectangular electrodes, the electrodes in the third column are round in shape, the size of the electrodes in the third column is smaller than that of the electrodes in the first column and in the second column, the electrodes in the same column are made of the same material and have the same size, and the distances between two electrodes in the same column are the same. The invention also provides a measurement method for measuring the multi-phase interface liquid level by use of the measurement device. The device has a simple and reliable structure, is convenient for installation, is not liable to be blocked by the viscose crude oil, and can achieve the accurate measurement of the liquid level of the multi-phase interface.

Description

A kind of measurement mechanism and method of the multi phase interface liquid level based on the bimodal sensor
Technical field
The invention belongs to multi phase interface level gauging technical field, relate to a kind of measuring system based on capacitance/resistance formula bimodal sensor.
Background technology
From oil well, directly contain big water gaging, silt and rock gas in the crude oil of extraction,, will in storage tank, form silt/water, water/oil, several interfaces of rock gas/wet goods by the separation of triphase separator.In order to measure the former oil mass in the storage tank, just must at first measure the last liquid level and the following liquid level of crude oil in the storage tank.Obviously, in order to reach this purpose, need a kind of multinomial interface of design TT﹠C system.
At present, traditional capacitance type liquid level measuring system only can detect single interface location, when detecting the position of multi phase interface simultaneously, is to achieve the goal with pair of electrodes only.Utilize multielectrode sensor construction (adding list of references), can distinguish gas/oil/water termination theoretically, but directly the water of extraction mainly is seawater from oil well, the conductance of seawater higher (can reach 5 west door/rice), because the conduction short-circuiting effect of water, its measurement capacitance is not directly proportional with the specific inductive capacity of water, often much smaller than theoretical value, therefore surveys the interface that electric capacity can't accurately be distinguished seawater/oil in practice.
Summary of the invention
At above defective and the deficiency that prior art exists, a kind of measurement mechanism that utilizes capacitance/resistance formula bimodal sensor of purpose proposition of the present invention mentioned.The present invention utilizes capacitance measurement, can accurately differentiate gas/oily interface, and utilize resistance measurement, can accurately differentiate water/oily interface.The present invention adopts following technical scheme:
A kind of measurement mechanism of the multi phase interface liquid level based on capacitance/resistance formula bimodal sensor, be used to measure the liquid level of multi phase interface, comprise host computer, signal generating unit, power amplifier, analog multichannel switch, capacitance/resistance formula bimodal sensor and signal gathering unit, described capacitance/resistance formula bimodal sensor comprises N * 3 electrod-arrays that are distributed on the same plane, N is the integer more than or equal to 3, wherein, the electrode of first row and secondary series is rectangular electrode, the electrode shape of the 3rd row electrode is circular, its size is less than the electrode of first row and secondary series, the electrode that is positioned at same column is identical material, the electrode of size, the interpolar spacing is also identical; During measurement, this sensor is vertically placed in the multi-phase fluid to be measured, by host computer control analog multichannel switch gating from bottom to up successively gating be positioned at the electrode of first row or an electrode of secondary series, and the electrode of gating and institute's gating is positioned at delegation but is positioned at tertial another electrode simultaneously; Apply the driving voltage signal by signal generating unit and power amplifier to two electrodes of gating, gather the induction current of these two electrodes and send into host computer by signal gathering unit, carry out the measurement of multi phase interface liquid level by host computer according to the induction current of being gathered.
Measurement mechanism based on the multi phase interface liquid level of capacitance/resistance formula bimodal sensor is characterized in that, described capacitance/resistance formula bimodal sensor, and the quantity 9-90000 of electrode, each electrode is to be made by sheet metal, thickness is 0.0001-1mm.
The present invention provides a kind of described multi phase interface liquid Level Measurement Method that realizes based on capacitance/resistance formula bimodal sensor that adopts simultaneously, comprises the following steps:
Induced electricity flow valuve when (1) demarcating pure gas and pure oil, this step can be finished before experiment, get any a pair of rectangular electrode, place pure gas and pure oil respectively, one end applies pumping signal, measure the induced signal of the other end, it is kept in the host computer, suppose that the induced electricity flow valuve of pure gas and pure oil is respectively I a, I o
(2) utilize resistance mode to obtain the following liquid level of oil: host computer control analog multichannel switch is positioned at two electrodes of same row successively from bottom to up in gating secondary series electrode and the 3rd row row, it is applied pumping signal, and measure induction current value sequence I successively, I>0 o'clock, suspend, can get oily following liquid level this moment is h 1=m * (a-1), m is the anode-cathode distance of the 3rd row electrode, and a is the numbering of a column electrode of gating when the I>0, and numbering is numbered for ascending order from bottom to up, and a ∈ (1,2L, N);
(3) utilize electric capacity mode to obtain the last liquid level of oil again, host computer control analog multichannel switch is positioned at the electrode of same row successively from supreme gating first row of a and secondary series, apply pumping signal, and measure induction current value sequence I ' successively; Order
Figure BDA0000031946760000021
When 0<ξ<1, to suspend, can get oily last liquid level this moment
Figure BDA0000031946760000022
P is the anode-cathode distance of secondary series electrode, and H is the width of rectangular electrode, and b numbers for the electrode of gating when 0<I '<1, and b ∈ (a, L, N);
(4) utilize h=h at last 2-h 1Obtain the liquid level of crude oil.
Biggest advantage of the present invention is because capacitance/resistance formula bimodal sensor design is that one pole is board-like, and is therefore simple and reliable for structure, easy for installation, is difficult for being stopped up by viscous crude oil.Comparatively speaking, this technology is practical, and is convenient, is one of survey instrument of the most feasible multi phase interface liquid level.
Description of drawings
Fig. 1 is of the present invention based on bimodal sensor system assemblies schematic diagram;
Fig. 2 is a bimodal sensor synoptic diagram;
Fig. 3 is the tested multi phase interface synoptic diagram of simulation.
Specific implementation method
Below in conjunction with drawings and Examples the present invention is further described.
Fig. 1 is based on bimodal sensor system assemblies schematic diagram according to of the present invention.It is made of host computer 1, signal generating unit 2, power amplifier 3, analog multichannel switch 4, capacitance/resistance formula bimodal sensor 5 and signal gathering unit 6 six parts.Signal generating unit adopts synthetic (DDS) chip AD7008 of Direct Digital, and this chip can produce the sinusoidal excitation signal of different amplitudes and phase place.The amplitude of pumping signal and phase place can be by computer installations, by being installed on the exciting electrode array 8 after the power amplifier amplification.The computer control signal collecting unit is gathered the induced electricity flow valuve to electrod- array 7 and 9.
Adhere to N * 3 electrod-arrays (N is the integer more than or equal to 3) on the same plane in insulation dull and stereotyped 10, electrod- array 7,8 is shaped as rectangle, and electrod-array 9 is circular, as shown in Figure 2.Capacitance/resistance formula bimodal sensor is made up of the electrod-array of evenly arranging, the quantity 9-90000 of electrode, electrode is to be made by sheet metal, thickness is 0.0001-1mm, its size is decided according to the liquid level of the quantity fluid to be measured of electrode, and wherein the size of electrod-array 9 will be much smaller than the size of electrod-array 7,8.Insulation is dull and stereotyped makes for non-conducting material, such as plastics etc.
Liquid level for measuring multi phase interface provides the measurement of fluid position height in the most special gas/oil/water three-phase here, and the present invention also is applicable to other multi phase interface measurement.As shown in Figure 3, gas/oil/water three-phase liquid, measure the liquid level of oil by utilizing electric resistance sensor and capacitive transducer bimodal respectively, utilize resistance mode to obtain the following liquid level of oil, host computer control analog multichannel switch is gate array 8 from bottom to up successively, applies pumping signal, and the induction current value sequence I of array of measure electrodes 9 successively, when I>0, to suspend, can get oily following liquid level this moment is h 1=m * (a-1), m is the anode-cathode distance of electrod-array 9, and a numbers for the electrode of gating when the I>0, and a ∈ (1,2L, N); Utilize electric capacity mode to obtain the last liquid level of oil again, host computer control analog multichannel switch applies pumping signal successively from the supreme gate array 8 of a, and the induction current value sequence I ' of array of measure electrodes 7 successively, when 0<I '<1, to suspend, can get oily last liquid level and be this moment P is the anode-cathode distance of rectangular electrode array, and H is the width of rectangular electrode, and b numbers for the electrode of gating when 0<I '<1, and b ∈ (a, L, N), I a, I oInduced electricity flow valuve during for demarcation pure gas and pure oil.Calibration process places pure gas and pure oil respectively for getting a pair of rectangular electrode, and an end applies pumping signal, measures the induced signal of the other end.Utilize h=h at last 2-h 1Obtain the liquid level of crude oil.
Measuring method of the present invention specifically may further comprise the steps:
(1) at first, induced electricity flow valuve when demarcating pure gas and pure oil, this step can be finished before experiment, get a pair of rectangular electrode, place pure gas and pure oil respectively, an end applies pumping signal, measures the induced signal of the other end, it is kept in the host computer, supposes that the induced signal value of pure gas and pure oil is respectively I a, I o
(2) secondly, utilize resistance mode to obtain the following liquid level of oil, host computer control analog multichannel switch is gate array 8 from bottom to up successively, apply pumping signal, and the induction current value sequence I of array of measure electrodes 9 successively, when I>0, to suspend, can get oily following liquid level this moment is h 1=m * (a-1), m is the anode-cathode distance of electrod-array 9, and a numbers for the electrode of gating when the I>0, and a ∈ (1,2L, N);
(3) utilize electric capacity mode to obtain the last liquid level of oil again, host computer control analog multichannel switch is successively from the supreme gate array 8 of a, apply pumping signal, and the induction current value sequence I ' of array of measure electrodes 7 successively, when 0<I '<1, suspend, can get oily last liquid level and be this moment
Figure BDA0000031946760000032
P is the anode-cathode distance of rectangular electrode array, and H is the width of rectangular electrode, and b numbers for the electrode of gating when 0<I '<1, and b ∈ (a, L, N);
(4) utilize h=h at last 2-h 1Obtain the liquid level of crude oil.

Claims (3)

1. measurement mechanism based on the multi phase interface liquid level of capacitance/resistance formula bimodal sensor, be used to measure the liquid level of multi phase interface, comprise host computer, signal generating unit, power amplifier, analog multichannel switch, capacitance/resistance formula bimodal sensor and signal gathering unit, it is characterized in that, described capacitance/resistance formula bimodal sensor comprises N * 3 electrod-arrays that are distributed on the same plane, N is the integer more than or equal to 3, wherein, the electrode of first row and secondary series is rectangular electrode, the electrode shape of the 3rd row electrode is circular, its size is less than the electrode of first row and secondary series, the electrode that is positioned at same column is identical material, the electrode of size, the interpolar spacing is also identical; During measurement, this sensor is vertically placed in the multi-phase fluid to be measured, by host computer control analog multichannel switch gating from bottom to up successively gating be positioned at the electrode of first row or an electrode of secondary series, and the electrode of gating and institute's gating is positioned at delegation but is positioned at tertial another electrode simultaneously; Apply the driving voltage signal by signal generating unit and power amplifier to two electrodes of gating, gather the induction current of these two electrodes and send into host computer by signal gathering unit, carry out the measurement of multi phase interface liquid level by host computer according to the induction current of being gathered.
2. the measurement mechanism of the multi phase interface liquid level based on capacitance/resistance formula bimodal sensor according to claim 1, it is characterized in that described capacitance/resistance formula bimodal sensor, the quantity 9-90000 of electrode, each electrode is to be made by sheet metal, and thickness is 0.0001-1mm.
3. one kind is adopted the described multi phase interface liquid Level Measurement Method that realizes based on capacitance/resistance formula bimodal sensor of claim 1, comprises the following steps:
Induced electricity flow valuve when (1) demarcating pure gas and pure oil, this step can be finished before experiment, get any a pair of rectangular electrode, place pure gas and pure oil respectively, one end applies pumping signal, measure the induced signal of the other end, it is kept in the host computer, suppose that the induced electricity flow valuve of pure gas and pure oil is respectively I a, I o
(2) utilize resistance mode to obtain the following liquid level of oil: host computer control analog multichannel switch is positioned at two electrodes of same row successively from bottom to up in gating secondary series electrode and the 3rd row row, it is applied pumping signal, and measure induction current value sequence I successively, I>0 o'clock, suspend, can get oily following liquid level this moment is h 1=m * (a-1), m is the anode-cathode distance of the 3rd row electrode, and a is the numbering of a column electrode of gating when the I>0, and numbering is numbered for ascending order from bottom to up, and a ∈ (1,2L, N);
(3) utilize electric capacity mode to obtain the last liquid level of oil again, host computer control analog multichannel switch is positioned at the electrode of same row successively from supreme gating first row of a and the 3rd row, apply pumping signal, and measure induction current value sequence I ' successively; Order
Figure FDA0000031946750000011
When 0<ξ<1, to suspend, can get oily last liquid level this moment
Figure FDA0000031946750000012
P is the anode-cathode distance of secondary series electrode, and H is the width of rectangular electrode, and b numbers for the electrode of gating when 0<I '<1, and b ∈ (a, L, N);
(4) utilize h=h at last 2-h 1Obtain the liquid level of crude oil.
CN2010105424810A 2010-11-12 2010-11-12 Measurement device and method for multi-phase interface liquid level based on dual-modality sensor Expired - Fee Related CN102052951B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010105424810A CN102052951B (en) 2010-11-12 2010-11-12 Measurement device and method for multi-phase interface liquid level based on dual-modality sensor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010105424810A CN102052951B (en) 2010-11-12 2010-11-12 Measurement device and method for multi-phase interface liquid level based on dual-modality sensor

Publications (2)

Publication Number Publication Date
CN102052951A true CN102052951A (en) 2011-05-11
CN102052951B CN102052951B (en) 2012-07-04

Family

ID=43957507

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010105424810A Expired - Fee Related CN102052951B (en) 2010-11-12 2010-11-12 Measurement device and method for multi-phase interface liquid level based on dual-modality sensor

Country Status (1)

Country Link
CN (1) CN102052951B (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103245393A (en) * 2012-02-02 2013-08-14 上海凡宜科技电子有限公司 Proportional multiple switching material liquid level measurement method and device
CN105698827A (en) * 2016-01-28 2016-06-22 东南大学 A resistive sensor array reading circuit based on a two-wire system isopotential method
CN111094908A (en) * 2017-07-20 2020-05-01 埃尔特克有限公司 Device for detecting the level of a medium
CN111912492A (en) * 2020-09-10 2020-11-10 广州极飞科技有限公司 Liquid level measuring device and system
CN114466920A (en) * 2019-10-02 2022-05-10 松下知识产权经营株式会社 Cell culture chip, cell culture device and cell culture method

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4503383A (en) * 1982-01-07 1985-03-05 Agar Corporation, N.V. Device for detecting an interface between two fluids
CN87215727U (en) * 1987-12-26 1988-10-12 东北工学院 Lever detector for heat-tube exchanger
EP0338400A2 (en) * 1988-04-16 1989-10-25 DODUCO GMBH + Co Dr. Eugen DÀ¼rrwächter Capacitive sensor for determining the liquid level in a container
CN1888828A (en) * 2005-06-28 2007-01-03 肖书记 Capacity step-by-step detection sensor

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4503383A (en) * 1982-01-07 1985-03-05 Agar Corporation, N.V. Device for detecting an interface between two fluids
CN87215727U (en) * 1987-12-26 1988-10-12 东北工学院 Lever detector for heat-tube exchanger
EP0338400A2 (en) * 1988-04-16 1989-10-25 DODUCO GMBH + Co Dr. Eugen DÀ¼rrwächter Capacitive sensor for determining the liquid level in a container
CN1888828A (en) * 2005-06-28 2007-01-03 肖书记 Capacity step-by-step detection sensor

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103245393A (en) * 2012-02-02 2013-08-14 上海凡宜科技电子有限公司 Proportional multiple switching material liquid level measurement method and device
CN103245393B (en) * 2012-02-02 2016-01-06 上海凡宜科技电子有限公司 Proportion expression multiple switching thing liquid level measurement method and device
CN105698827A (en) * 2016-01-28 2016-06-22 东南大学 A resistive sensor array reading circuit based on a two-wire system isopotential method
CN111094908A (en) * 2017-07-20 2020-05-01 埃尔特克有限公司 Device for detecting the level of a medium
CN114466920A (en) * 2019-10-02 2022-05-10 松下知识产权经营株式会社 Cell culture chip, cell culture device and cell culture method
CN111912492A (en) * 2020-09-10 2020-11-10 广州极飞科技有限公司 Liquid level measuring device and system

Also Published As

Publication number Publication date
CN102052951B (en) 2012-07-04

Similar Documents

Publication Publication Date Title
CN102052951B (en) Measurement device and method for multi-phase interface liquid level based on dual-modality sensor
CN101840294B (en) Method for scanning projective capacitive touch panel
CN102156223B (en) Novel thyristor-grade impedance testing device for direct-current converter valve
CN106771505B (en) Single-phase overhead transmission line of electricity phase voltage method for self-calibrating based on series capacitance
CN102200463A (en) Liquid level linear measurement method based on impedance measurement
CN103776511B (en) Level information monitoring method, device and system
CN104457907B (en) Non-contact detection device for measuring liquid level in insulating container
CN103760197A (en) Two-phase flow measuring system based on distributed conductivity sensor
CN103675463A (en) Liquid dielectric constant measuring system self-adapting to scale and precision
CN101915788A (en) Capacitance type sensor with liquid electrode for measuring liquid holdup of multiphase flow
CN103776876A (en) Structural parameter optimization method of distributed conductivity sensor
CN101738240A (en) Capacitance sensing type fuel meter
CN104101730B (en) Oil-gas two-phase flow liquid plug movement velocity based on capacitance detecting device and length measurement method
CN201707102U (en) Novel liquid level sensor
JP2012132794A (en) Soil moisture measuring device and method for measuring soil moisture
CN101782417A (en) Method and device for automatically measuring water-level variation
CN103292680A (en) Novel electric nondestructive anchor rod length measuring method and device
CN105974087B (en) One kind is applied to close-in seamses water protection mining solid-liquid coupling analog simulation experimental rig
CN101782543A (en) Method for measuring pure water conductivity
CN104964639B (en) A kind of country rock strain-Sensing device and method based on micro- capacitance detecting
CN201083518Y (en) Waveform height measuring systems
CN202383201U (en) Electrical measuring instrument for rock ore
CN103674169A (en) Method for automatically measuring pipe-free embedded type groundwater level and water level changes
CN104459200B (en) Three axis accelerometer
CN103344300A (en) Detection device of oil-water interface position and detection method thereof

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120704

Termination date: 20121112