CN102053141A - Device and method for testing influence of externally added water on desorption characteristic of gas-containing coal body - Google Patents

Device and method for testing influence of externally added water on desorption characteristic of gas-containing coal body Download PDF

Info

Publication number
CN102053141A
CN102053141A CN201010580065XA CN201010580065A CN102053141A CN 102053141 A CN102053141 A CN 102053141A CN 201010580065X A CN201010580065X A CN 201010580065XA CN 201010580065 A CN201010580065 A CN 201010580065A CN 102053141 A CN102053141 A CN 102053141A
Authority
CN
China
Prior art keywords
valve
pressure
tensimeter
water
gas
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
CN201010580065XA
Other languages
Chinese (zh)
Other versions
CN102053141B (en
Inventor
程远平
吴冬梅
汪磊
刘海波
蒋静宇
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.)
China University of Mining and Technology CUMT
Original Assignee
China University of Mining and Technology CUMT
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 China University of Mining and Technology CUMT filed Critical China University of Mining and Technology CUMT
Priority to CN 201010580065 priority Critical patent/CN102053141B/en
Publication of CN102053141A publication Critical patent/CN102053141A/en
Application granted granted Critical
Publication of CN102053141B publication Critical patent/CN102053141B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Sampling And Sample Adjustment (AREA)

Abstract

The invention relates to a device and method for testing the influence of externally added water to a desorption characteristic of a gas-containing coal body. The device comprises a vacuum-pumping system, a pressurization and gas injection system, a constant temperature system, a high-pressure water injection system and a desorption measuring system. The method comprises the following steps: carrying out high-pressure water injection after adsorption balance is carried out on the coal body; stirring to cause the water to be uniformly mixed in the coal body; and testing the desorption characteristic of the coal body. According to the invention, the actual situation after a coal seam is subjected to water injection is fully simulated, and the change of the desorption characteristic of the gas-containing coal body influenced by the externally added water can be tested, thus a gas desorption dynamic process after hydraulic measures are used for outburst prevention of an outburst coal seam can be further researched, the gap that no device for researching the desorption characteristic under the condition of externally adding water exists in China is filled, and the influence of externally added water on the desorption characteristic of the gas-containing coal body is tested; and meanwhile, the structure is simple, the test method is simple and convenient, and the use effect is good.

Description

Add proving installation and the method for moisture to coal containing methane gas body desorption properties
Technical field
The present invention relates to the pressure water injection gas injection adsorbent equipment and the method for surface chemistry, kinetics of adsorption characteristic, and especially a kind of being applicable to simulated the coal containing methane gas layer adds the desorption of mash gas characteristic under the moisture condition in difference device and method in the laboratory.
Background technology
Coal in China output reached 30.3 hundred million t in 2009, had effectively ensured rapid growth of economy, also caused the colliery to be extended to the deep with the speed of 10~20m every year simultaneously, and many mines have entered deep mining.Along with the increase of mining depth, the coal seam terrestrial stress increases, gas pressure increases, and it is low to add gas permeability of coal seam, and gas is adopted preceding extraction difficulty, and coal and gas are given prominence to (hereinafter to be referred as giving prominence to) and explosion disaster is on the rise.For gas penetration potential, the minimizing extraction borehole quantities that increases the coal seam, about scientific research institution research with to have tested multiple waterpowerization anti-reflection and eliminate the technology and the method for outburst hazard, comprise that coal seam water infusion, hydraulic flushing in hole, sluicing, hydraulic slotted liner technique, waterfrac treatment and waterpower extrudes etc.
The reason that coal seam outburst hazard effect is eliminated in the waterpower measure is summarized as follows: (1) increases the crack of coal body, the gas penetration potential in raising coal seam, improves the gas pumping effect; (2) expulsion gas, water under high pressure will speed up the discharging of free gas and part adsorption gas; (3) water enters crack and hole, has sealed the passage of adsorption gas desorb, reduces desorption of mash gas speed, reduces the energy that produces when gas discharges; (4) moistening coal body improves the mechanical property of coal body, makes in the area of stress concentration and moves, and the release guard band length increases.
Various waterpower measure essence all are the moisture that adds that has increased coal body to some extent, original coal body will change coal body pore texture and cranny development situation on the one hand under the effect that adds moisture, add moisture on the other hand and enter coal body hole and crack in free gas of expulsion and part adsorption gas, also can seal the passage of adsorption gas desorb between crack and hole, hinder the desorption of mash gas process.Therefore, after coal body adds the moisture increase, its desorption of mash gas performance will change, and projecting coal bed desorption of mash gas speed, residual gas content, regional eliminating be removed outburst danger index and gas pumping index etc. produce significant impact.
At present, both at home and abroad the desorption of mash gas kinetic procedure research that measure is used for after the projecting coal bed protrusion-dispelling to waterpower rests on site test more, and on-the-spot phenomenon is described, and lacks to add the theoretical research of moisture to the influence of desorption of mash gas dynamic process.Former studies adds moisture and the experiment of desorption of mash gas dynamic process influence is adopted more is injected moisture earlier, carries out the experiment flow of high pressure adsorption gas and desorb gas again, though utilize existing high pressure adsorption experiment device more easily to experimentize, but be not inconsistent with the engineering actual conditions after the water filling of on-the-spot coal containing methane gas layer, and under this experiment flow, earlier the moisture that injects has been seized the adsorption potential of gas, and result of study can not reflect and adds moisture to the sealing process of gas in the coal body pore texture.The water filling coal body desorption of mash gas performance study that The former Russian scholar is carried out, owing to be subjected to the restriction of experiment condition, just in the laboratory, in the tank body of absorption high pressure gas, inject water under high pressure, coal sample is immersed in the water, the desorption performance of research coal sample, this and actual conditions differ greatly.Carrying out the projecting coal bed technological difficulties that add desorption of mash gas dynamic process experimental study under the moisture condition is, must at first in special-purpose tank body, adsorb high pressure gas with the dry coal sample, after reaching adsorption equilibrium, in the high pressure tank body, inject moisture again, by stirring, make moisture enter the coal containing methane gas body and also can evenly distribute, last test coal containing methane gas sample is at the desorption of mash gas dynamic process that adds under the moisture condition.
Summary of the invention
Technical matters: the purpose of this invention is to provide a kind of simple in structure, coal containing methane gas body that method of testing is easy, effective in the desorption properties proving installation and the method that add under the moisture condition.
Technical scheme: the proving installation that adds moisture to the desorption properties of coal containing methane gas body of the present invention, comprise that pumped vacuum systems, pressurization gas injection system, constant temperature system, high pressure water injection system and desorb measure system, wherein: pump drainage tracheae and the 2nd valve that pumped vacuum systems comprises vacuum pump, link to each other with vacuum pump, be located at the pressure vacuum gauge on the pump drainage tracheae and be connected the 3rd valve on this pipeline; The pressurization gas injection system comprises gas cylinder, the high-pressure buffering pot that links to each other with gas cylinder and is located at the 1st valve on the two connecting line, reaches the 4th valve that is connected with the 1st tensimeter with tank connected the 1st tensimeter of high-pressure buffer; Constant temperature system comprises the pressure vessel that links to each other with high-pressure buffering pot and the 5th valve on the two connecting line, the 2nd tensimeter that links to each other with pressure vessel, the constant water bath box that pressure vessel is housed; The high pressure water injection system comprise dosing container, the stirring apparatus that links to each other with pressure vessel and be located at retaining valve and the 6th valve on the two connecting line, link to each other with dosing container increase liquid pump and be connected the two connecting line on the 3rd tensimeter and the two connecting line on the 7th valve, with increase the water tank that liquid pump links to each other and be located at the 8th valve on the two connecting line; Desorb mensuration system comprises the desorb graduated cylinder that is connected with the 6th valve.
The method of testing that adds moisture to the desorption properties of coal containing methane gas body of the present invention, step is as follows:
(a) the to be tested dry coal sample that takes by weighing the 1-3mm particle diameter of about 60g is packed in the pressure vessel, open pressure vessel be connected with vacuum pump the 2nd valve, the 3rd valve, the 5th valve on the pipeline, pressure vessel is vacuumized, and the constant water bath box to fills with water is heated to 60 ℃ simultaneously;
(b) observe the pressure vacuum gauge that is connected with vacuum pump, when the pneumatics power of taking seriously is reduced to 0.4Pa, after continuing to vacuumize 4~6h, closing presure container be connected with vacuum pump the 2nd valve, the 3rd valve, the 5th valve on the pipeline, open the 1st valve, the 4th valve, observe and tank connected the 1st tensimeter of high-pressure buffer, when showing that pressure reaches predetermined pressure, close the 1st valve;
(c) constant water bath box with fills with water is adjusted to about 30 ℃, opens the 5th valve, observes the 2nd tensimeter that is connected with pressure vessel, when showing that pressure no longer rises, closes the 5th valve;
(d) after pressure vessel carries out balance 48h, the 2nd tensimeter that is connected with pressure vessel shows when pressure no longer changes, the record equalized pressure that this moment, the 2nd tensimeter showed;
(e) open the 8th valve, the 7th valve, startup increases liquid pump water in the water tank is forced in the dosing container, observe the 3rd tensimeter be connected with dosing container, when it showed pressure greater than the equalized pressure of the 2nd tensimeter demonstration, dosing container mesohigh water entered in the pressure vessel by retaining valve;
(f) observe water level in the water tank, when water level reduces 1mm, close and increase all valves between liquid pump and water tank and the pressure vessel;
(g) start the stirring apparatus link to each other with pressure vessel, move about 2h after, leave standstill 6h;
(h) open the 6th valve, when the 3rd tensimeter pressure that is connected with dosing container is shown as normal pressure, open the valve that is connected with the desorb graduated cylinder, pick up counting and measure the desorption process of coal sample.
Beneficial effect: the present invention at coal body to the laggard horizontal high voltage water filling of gas adsorption equilibrium, and moisture is evenly mixed in coal body by stirring, afterwards its desorption properties is tested, the actual conditions after the water filling of on-the-spot coal containing methane gas layer have fully been simulated, can test the coal containing methane gas body in the variation that adds its desorption properties under the moisture effects, the desorption of mash gas dynamic process that makes the waterpower measure be used for after the projecting coal bed protrusion-dispelling can access more deep research, fill up domestic to the coal containing methane gas body in the blank that adds desorption properties research device under the moisture condition, test coal containing methane gas body its desorption properties institute after adding moisture is influenced, it is simple in structure, method of testing is easy, result of use is good, has practicality widely.
Description of drawings
Fig. 1 is an installation drawing of the present invention.
Among the figure: 1-gas cylinder, 2-vacuum pump, 3-pressure vacuum gauge, 4-high-pressure buffering pot, 5-a ~ 5-c tensimeter, the 6-pressure vessel, 7-stirring apparatus, 8-constant water bath box, 9-retaining valve, 10-dosing container, 11-increases liquid pump, 12-water tank, 13-desorb graduated cylinder, F-1 ~ F-8 valve.
Embodiment
Below in conjunction with accompanying drawing embodiments of the invention are further described:
Shown in the accompanying drawing, device of the present invention mainly is made up of pumped vacuum systems, pressurization gas injection system, constant temperature system, high pressure water injection system and desorb mensuration system, and wherein: pumped vacuum systems comprises vacuum pump 2, the pump drainage tracheae that links to each other with vacuum pump 2 and the 2nd valve F-2, be located at the pressure vacuum gauge 3 on the pump drainage tracheae and be connected the 3rd valve F-3 on this pipeline; The pressurization gas injection system comprises gas cylinder 1, the high-pressure buffering pot 4 that links to each other with gas cylinder 1 and the valve F-4 that is located at the 1st valve F-1 on the two connecting line, the tensimeter 5-a that is connected with high-pressure buffering pot 4 and is connected with tensimeter 5-a; Constant temperature system comprises the pressure vessel 6 that links to each other with high-pressure buffering pot 4 and the valve F-5 on the two connecting line, the tensimeter 5-b that links to each other with pressure vessel 6, the constant water bath box 8 that pressure vessel 6 is housed; The high pressure water injection system comprise dosing container 10, the stirring apparatus 7 that links to each other with pressure vessel 6 and be located at retaining valve 9 and valve F-6 on the two connecting line, link to each other with dosing container 10 increase liquid pump 11 and be connected the two connecting line on tensimeter 5-c and the two connecting line on valve F-7, with increase the water tank 12 that liquid pump 11 links to each other and be located at valve F-8 on the two connecting line; Desorb mensuration system comprises the desorb graduated cylinder 13 that is connected with valve F-6.
Method of testing of the present invention is as follows:
(a) the to be tested dry coal sample that takes by weighing 60g, 1-3mm particle diameter is packed in the pressure vessel 6, sealed pressure vessel 6, open all valves on pressure vessel 6 and vacuum pump 2 connecting lines, pressure vessel 6 is vacuumized, the water bath with thermostatic control 8 of fills with water is heated to 60 ℃;
(b) observe the pressure vacuum gauge 3 that is connected with vacuum pump 2, the pneumatics power of taking seriously is reduced to below the 0.4Pa, continue to vacuumize 4~6h, after removing the foreign gas of adsorbing in the coal sample, all valves on closing presure container 6 and vacuum pump 2 connecting lines are opened the 1st valve F-1, the 4th valve F-4, observe the 1st tensimeter 5-a that is connected with high-pressure buffering pot 4, when showing that pressure reaches 4MPa, close the 1st valve F-1;
(c) constant water bath box 8 with fills with water is adjusted to about 30 ℃, opens the 5th valve F-5, observes the 2nd tensimeter 5-b that is connected with pressure vessel 6, closes the 5th valve F-5 when showing that pressure no longer rises;
(d) after pressure vessel 6 carries out the about 48h of balance, the 2nd tensimeter 5-b that is connected with pressure vessel 6 shows when pressure no longer changes, the record equalized pressure that this moment, the 2nd tensimeter 5-b showed;
(e) open the 8th valve F-8, the 7th valve F-7, startup increases liquid pump 11 water in the water tank 12 is forced in the dosing container 10, observe the 3rd tensimeter 5-c that is connected with dosing container 10, when it showed the equalized pressure that pressure shows greater than the 2nd tensimeter 5-b, dosing container 10 mesohigh water can enter in the pressure vessel 6 by retaining valve 9;
(f) observe water tank 12 middle water levels, when water level reduces 1mm, close and increase all valves between liquid pump 11 and water tank (12) and the pressure vessel 6;
(g) start the stirring apparatus 7 link to each other with pressure vessel 6, move about 2h after, leave standstill about 6h;
(h) open the 6th valve F-6, when the 3rd tensimeter 5-c pressure that is connected with dosing container 10 is shown as normal pressure, desorb graduated cylinder 13 is connected with the 6th valve F-6, and the desorption process of the mensuration coal sample that picks up counting, the desorption data that record desorb buret is surveyed.

Claims (2)

1. proving installation that adds moisture to coal containing methane gas body desorption properties, it is characterized in that: it comprises that pumped vacuum systems, pressurization gas injection system, constant temperature system, high pressure water injection system and desorb measure system, and wherein: pumped vacuum systems comprises vacuum pump (2), the pump drainage tracheae that links to each other with vacuum pump (2) and the 2nd valve (F-2), be located at the pressure vacuum gauge (3) on the pump drainage tracheae and be connected the 3rd valve (F-3) on this pipeline; The pressurization gas injection system comprises gas cylinder (1), the high-pressure buffering pot (4) that links to each other with gas cylinder (1) and the 4th valve (F-4) that is located at the 1st valve (F-1) on the two connecting line, the 1st tensimeter (5-a) that is connected with high-pressure buffering pot (4) and is connected with the 1st tensimeter (5-a); Constant temperature system comprises the pressure vessel (6) that links to each other with high-pressure buffering pot (4) and the 5th valve (F-5) on the two connecting line, the 2nd tensimeter (5-b) that links to each other with pressure vessel (6), the constant water bath box (8) that pressure vessel (6) are housed; The high pressure water injection system comprise dosing container (10), the stirring apparatus (7) that links to each other with pressure vessel (6) and be located at retaining valve (9) and the 6th valve (F-6) on the two connecting line, link to each other with dosing container (10) increase liquid pump (11) and be connected the two connecting line on the 3rd tensimeter (5-c) and the two connecting line on the 7th valve (F-7), with increase the water tank (12) that liquid pump (11) links to each other and be located at the 8th valve (F-8) on the two connecting line; Desorb mensuration system comprises the desorb graduated cylinder (13) that is connected with the 6th valve (F-6).
One kind according to claim 1 proving installation add the method for testing of moisture to coal containing methane gas body desorption properties, it is characterized in that comprising the steps:
(a) the to be tested dry coal sample that takes by weighing the 1-3mm particle diameter of about 60g is packed in the pressure vessel (6), open pressure vessel (6) be connected with vacuum pump (2) the 2nd valve (F-2), the 3rd valve (F-3), the 5th valve (F-5) on the pipeline, pressure vessel (6) is vacuumized, and the constant water bath box (8) to fills with water is heated to 60 ℃ simultaneously;
(b) observe the pressure vacuum gauge (3) that is connected with vacuum pump (2), when the pneumatics power of taking seriously is reduced to 0.4Pa, after continuing to vacuumize 4~6h, closing presure container (6) be connected with vacuum pump (2) the 2nd valve (F-2), the 3rd valve (F-3), the 5th valve (F-5) on the pipeline, open the 1st valve (F-1), the 4th valve (F-4), observe the 1st tensimeter (5-a) that is connected with high-pressure buffering pot (4), when showing that pressure reaches predetermined pressure, close the 1st valve (F-1);
(c) constant water bath box (8) with fills with water is adjusted to about 30 ℃, opens the 5th valve (F-5), observes the 2nd tensimeter (5-b) that is connected with pressure vessel (6), when showing that pressure no longer rises, closes the 5th valve (F-5);
(d) after pressure vessel (6) carries out balance 48h, the 2nd tensimeter (5-b) that is connected with pressure vessel (6) shows when pressure no longer changes, the equalized pressure that record the 2nd tensimeter this moment (5-b) shows;
(e) open the 8th valve (F-8), the 7th valve (F-7), startup increases liquid pump (11) water in the water tank (12) is forced in the dosing container (10), observe the 3rd tensimeter (5-c) that is connected with dosing container (10), when it showed the equalized pressure that pressure shows greater than the 2nd tensimeter (5-b), dosing container (10) mesohigh water entered in the pressure vessel (6) by retaining valve (9);
(f) observe water level in the water tank (12), when water level reduces 1mm, close and increase all valves between liquid pump (11) and water tank (12) and the pressure vessel (6);
(g) start the stirring apparatus (7) link to each other with pressure vessel (6), move about 2h after, leave standstill 6h;
(h) open the 6th valve (F-6),, open the valve (F-6) that is connected with desorb graduated cylinder (13), pick up counting and measure the desorption process of coal sample when the 3rd tensimeter (5-c) that is connected with dosing container (10) when pressure is shown as normal pressure.
CN 201010580065 2010-12-09 2010-12-09 Method for testing desorption characteristic of externally added water on gas-containing coal body Expired - Fee Related CN102053141B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201010580065 CN102053141B (en) 2010-12-09 2010-12-09 Method for testing desorption characteristic of externally added water on gas-containing coal body

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201010580065 CN102053141B (en) 2010-12-09 2010-12-09 Method for testing desorption characteristic of externally added water on gas-containing coal body

Publications (2)

Publication Number Publication Date
CN102053141A true CN102053141A (en) 2011-05-11
CN102053141B CN102053141B (en) 2013-07-17

Family

ID=43957680

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201010580065 Expired - Fee Related CN102053141B (en) 2010-12-09 2010-12-09 Method for testing desorption characteristic of externally added water on gas-containing coal body

Country Status (1)

Country Link
CN (1) CN102053141B (en)

Cited By (24)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102297829A (en) * 2011-05-19 2011-12-28 中国科学院武汉岩土力学研究所 Method and device for measuring gas adsorption quantity and adsorption deformation of coal rock under stress condition
CN102841192A (en) * 2012-09-25 2012-12-26 成都理工大学 Desorption analysis experimental facility of coal rock
CN102879290A (en) * 2012-09-25 2013-01-16 成都理工大学 Coal rock desorption testing method
CN102901803A (en) * 2012-10-24 2013-01-30 河南理工大学 Water-gas two-phase adsorption-desorption-seepage experimental system and method for loaded coal containing methane
CN102901801A (en) * 2012-09-29 2013-01-30 山西煤炭运销集团科学技术研究有限公司 Experimental method for raising gas desorption property
CN102944660A (en) * 2012-10-19 2013-02-27 中国矿业大学(北京) Simulation test system for gas adsorption and desorption of large-scale coal
CN102979510A (en) * 2012-12-05 2013-03-20 中国矿业大学 Coal seam water injection displacement gas effect simulated experiment system
CN102998204A (en) * 2012-12-20 2013-03-27 中国矿业大学 Device and method for preparing water-containing coal sample and testing adsorption
CN103558357A (en) * 2013-10-25 2014-02-05 河南理工大学 Experiment device for detecting influence of moisture on methane desorption rule
CN103776979A (en) * 2014-01-10 2014-05-07 河南理工大学 Simulation test method and device for inhibiting methane desorption effect by coal seam water injection
CN104502224A (en) * 2014-08-14 2015-04-08 中国石油大学(华东) Device and method for determination of coal rock isothermal desorption curve under saturated water condition
CN105352846A (en) * 2015-12-03 2016-02-24 中国矿业大学 Testing device and method for tectonic coal desorption gas energy distribution curve
CN105738248A (en) * 2016-03-02 2016-07-06 重庆大学 Gas absorption and desorption experimental device with controllable coal sample moisture content and experimental method thereof
CN105807028A (en) * 2016-04-01 2016-07-27 太原理工大学 Test device for desorbing gas by heating coal body through high temperature steam
CN106093338A (en) * 2016-07-13 2016-11-09 煤科集团沈阳研究院有限公司 Down-hole reacting cycle sampling desorption of mash gas process simulation test device and method of testing
CN106290777A (en) * 2016-07-29 2017-01-04 河南理工大学 A kind of coal-bed flooding Reasonable Injection water method for determination of amount
CN106769640A (en) * 2016-12-06 2017-05-31 中国矿业大学 A kind of critical values determination method of Coal and Gas Outbursts Prediction sensitive indicator
CN106896208A (en) * 2017-03-29 2017-06-27 西安科技大学 A kind of quantitative additional water system inhibitor device of high pressure
CN107478541A (en) * 2017-07-28 2017-12-15 太原理工大学 A kind of analogue experiment installation and method of high pressure water injection coal gas Coupled Disturbances
CN109187267A (en) * 2018-09-29 2019-01-11 安徽理工大学 A kind of water logging coal dust adsorption and desorption experimental provision and experimental method
CN109540734A (en) * 2019-01-09 2019-03-29 重庆工业职业技术学院 Coal seam with gas High Pressure Absorption/the test device for desorption and method of controllable moisture
CN109632569A (en) * 2019-01-24 2019-04-16 中煤科工集团重庆研究院有限公司 The measuring method and device of a kind of adscititious gases and moisture to coal containing methane gas grain desorption effects
CN111458260A (en) * 2020-05-26 2020-07-28 中煤科工集团重庆研究院有限公司 Coal gas desorption rule determination device, system and method
CN112946204A (en) * 2021-03-17 2021-06-11 重庆大学 Integrated gas pumping and injecting system for simulation coal and gas outburst experiment

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2148965Y (en) * 1993-01-09 1993-12-08 广东省煤炭工业研究所 Predictive desorption meter
JP3892666B2 (en) * 2000-12-25 2007-03-14 新日本製鐵株式会社 Coal quality evaluation method
CN101034050A (en) * 2007-04-06 2007-09-12 中国石油天然气股份有限公司 Fast desorption meter for gas content of goal seam
CN101135621A (en) * 2006-08-30 2008-03-05 煤炭科学研究总院重庆分院 Direct rapid measuring method capable of desorbing mash gas content with coal seam
CN201066349Y (en) * 2007-08-17 2008-05-28 煤炭科学研究总院重庆分院 Gas decomposition and absorption parameter measuring instrument
CN101502809A (en) * 2009-02-06 2009-08-12 煤炭科学研究总院重庆研究院 Test device for desorption of mash gas
CN201311416Y (en) * 2008-12-11 2009-09-16 煤炭科学研究总院重庆研究院 Underground gas desorption rate tester

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2148965Y (en) * 1993-01-09 1993-12-08 广东省煤炭工业研究所 Predictive desorption meter
JP3892666B2 (en) * 2000-12-25 2007-03-14 新日本製鐵株式会社 Coal quality evaluation method
CN101135621A (en) * 2006-08-30 2008-03-05 煤炭科学研究总院重庆分院 Direct rapid measuring method capable of desorbing mash gas content with coal seam
CN101034050A (en) * 2007-04-06 2007-09-12 中国石油天然气股份有限公司 Fast desorption meter for gas content of goal seam
CN201066349Y (en) * 2007-08-17 2008-05-28 煤炭科学研究总院重庆分院 Gas decomposition and absorption parameter measuring instrument
CN201311416Y (en) * 2008-12-11 2009-09-16 煤炭科学研究总院重庆研究院 Underground gas desorption rate tester
CN101502809A (en) * 2009-02-06 2009-08-12 煤炭科学研究总院重庆研究院 Test device for desorption of mash gas

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
赵东等: "煤层瓦斯解吸影响因素的试验研究", 《煤炭科学技术》, vol. 38, no. 5, 31 May 2010 (2010-05-31), pages 43 - 46 *

Cited By (35)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102297829A (en) * 2011-05-19 2011-12-28 中国科学院武汉岩土力学研究所 Method and device for measuring gas adsorption quantity and adsorption deformation of coal rock under stress condition
CN102841192A (en) * 2012-09-25 2012-12-26 成都理工大学 Desorption analysis experimental facility of coal rock
CN102879290A (en) * 2012-09-25 2013-01-16 成都理工大学 Coal rock desorption testing method
CN102841192B (en) * 2012-09-25 2014-10-29 成都理工大学 Desorption analysis experimental facility of coal rock
CN102879290B (en) * 2012-09-25 2014-10-29 成都理工大学 Coal rock desorption testing method
CN102901801A (en) * 2012-09-29 2013-01-30 山西煤炭运销集团科学技术研究有限公司 Experimental method for raising gas desorption property
CN102944660B (en) * 2012-10-19 2016-06-01 中国矿业大学(北京) A kind of big scale coal gas adsorption-desorption simulation experiment system
CN102944660A (en) * 2012-10-19 2013-02-27 中国矿业大学(北京) Simulation test system for gas adsorption and desorption of large-scale coal
CN102901803A (en) * 2012-10-24 2013-01-30 河南理工大学 Water-gas two-phase adsorption-desorption-seepage experimental system and method for loaded coal containing methane
CN102901803B (en) * 2012-10-24 2014-10-08 河南理工大学 Water-gas different adsorption-desorption-seepage experimental method for loaded coal containing methane
CN102979510A (en) * 2012-12-05 2013-03-20 中国矿业大学 Coal seam water injection displacement gas effect simulated experiment system
CN102979510B (en) * 2012-12-05 2015-06-17 中国矿业大学 Coal seam water injection displacement gas effect simulated experiment system
CN102998204A (en) * 2012-12-20 2013-03-27 中国矿业大学 Device and method for preparing water-containing coal sample and testing adsorption
CN102998204B (en) * 2012-12-20 2015-01-21 中国矿业大学 Device and method for preparing water-containing coal sample and testing adsorption
CN103558357A (en) * 2013-10-25 2014-02-05 河南理工大学 Experiment device for detecting influence of moisture on methane desorption rule
CN103776979B (en) * 2014-01-10 2016-02-24 河南理工大学 A kind of coal seam water infusion suppresses analog detection method and the device of desorption of mash gas effect
CN103776979A (en) * 2014-01-10 2014-05-07 河南理工大学 Simulation test method and device for inhibiting methane desorption effect by coal seam water injection
CN104502224A (en) * 2014-08-14 2015-04-08 中国石油大学(华东) Device and method for determination of coal rock isothermal desorption curve under saturated water condition
CN104502224B (en) * 2014-08-14 2016-04-20 中国石油大学(华东) Saturation water Coal Under rock isothermal desorption curve determination device and method
CN105352846A (en) * 2015-12-03 2016-02-24 中国矿业大学 Testing device and method for tectonic coal desorption gas energy distribution curve
CN105738248A (en) * 2016-03-02 2016-07-06 重庆大学 Gas absorption and desorption experimental device with controllable coal sample moisture content and experimental method thereof
CN105807028A (en) * 2016-04-01 2016-07-27 太原理工大学 Test device for desorbing gas by heating coal body through high temperature steam
CN106093338A (en) * 2016-07-13 2016-11-09 煤科集团沈阳研究院有限公司 Down-hole reacting cycle sampling desorption of mash gas process simulation test device and method of testing
CN106290777A (en) * 2016-07-29 2017-01-04 河南理工大学 A kind of coal-bed flooding Reasonable Injection water method for determination of amount
CN106769640A (en) * 2016-12-06 2017-05-31 中国矿业大学 A kind of critical values determination method of Coal and Gas Outbursts Prediction sensitive indicator
CN106896208A (en) * 2017-03-29 2017-06-27 西安科技大学 A kind of quantitative additional water system inhibitor device of high pressure
CN107478541A (en) * 2017-07-28 2017-12-15 太原理工大学 A kind of analogue experiment installation and method of high pressure water injection coal gas Coupled Disturbances
CN109187267A (en) * 2018-09-29 2019-01-11 安徽理工大学 A kind of water logging coal dust adsorption and desorption experimental provision and experimental method
CN109187267B (en) * 2018-09-29 2024-02-13 安徽理工大学 Experimental device and experimental method for water immersion pulverized coal adsorption and desorption
CN109540734A (en) * 2019-01-09 2019-03-29 重庆工业职业技术学院 Coal seam with gas High Pressure Absorption/the test device for desorption and method of controllable moisture
CN109540734B (en) * 2019-01-09 2023-11-24 重庆工业职业技术学院 Gas-containing coal high-pressure adsorption/desorption test device and method capable of controlling moisture
CN109632569A (en) * 2019-01-24 2019-04-16 中煤科工集团重庆研究院有限公司 The measuring method and device of a kind of adscititious gases and moisture to coal containing methane gas grain desorption effects
CN111458260A (en) * 2020-05-26 2020-07-28 中煤科工集团重庆研究院有限公司 Coal gas desorption rule determination device, system and method
CN111458260B (en) * 2020-05-26 2022-08-30 中煤科工集团重庆研究院有限公司 Coal gas desorption rule determination device, system and method
CN112946204A (en) * 2021-03-17 2021-06-11 重庆大学 Integrated gas pumping and injecting system for simulation coal and gas outburst experiment

Also Published As

Publication number Publication date
CN102053141B (en) 2013-07-17

Similar Documents

Publication Publication Date Title
CN102053141B (en) Method for testing desorption characteristic of externally added water on gas-containing coal body
CN107860681B (en) Gas adsorption and desorption characteristic testing device and method for pre-adsorbing moisture coal sample
CN101915713B (en) Device and method for determining adsorption of supercritical carbon dioxide on coal
CN103132971B (en) Carbon dioxide injection improves the test simulator of coal bed methane recovery rate
CN103776979B (en) A kind of coal seam water infusion suppresses analog detection method and the device of desorption of mash gas effect
CN102830213A (en) Adsorption-desorption-seepage experiment system for loaded coal containing gas under condition of varying temperatures
CN105738248A (en) Gas absorption and desorption experimental device with controllable coal sample moisture content and experimental method thereof
CN104020192A (en) Gas coal hydrofracture field time-space monitoring device and method
CN206439041U (en) A kind of experimental provision for simulating the anti-reflection coal seam of carbon dioxide fracturing
CN202710543U (en) Absorption-desorption-percolation experiment system of loaded coal containing gas under variable temperature condition
CN111579463B (en) Physical simulation device for storing carbon dioxide in water and gas reservoir and simulation method thereof
CN209460105U (en) A kind of visualization based on nuclear magnetic resonance rock core imbibition experimental provision with pressure
CN103048261B (en) Device and method for researching rock physical property parameter change under action of acid fluid
CN105547908A (en) Experimental testing equipment for mixed gas adsorption capacity of coal rock/shale
CN105842275B (en) A kind of test method of steam drive coal gas desorption heat transfer
CN105334142A (en) Experiment device for simulating shield mud membrane formation
Zhiguo et al. Experimental study on inhibitory effect of gas desorption by injecting water into coal-sample
CN108195740A (en) Carbon dioxide displacement methane device under the conditions of coal-bed flooding
CN104655806B (en) A kind of nitrogen fracturing coal seam energy variation and permeability method of testing and device
CN111323359B (en) Core spontaneous imbibition measuring device and method for high-pressure natural gas-water system
CN204462114U (en) A kind of nitrogen fracturing coal seam energy variation and permeability proving installation
Tang et al. Experimental study of coal rank effect on carbon dioxide injection to enhance CBM recovery
CN205262912U (en) Experimental device for it constructs sludge -biofilm formation to be used for simulating shield
CN203130061U (en) Device for stimulating test of improving coal bed methane recovery efficiency by feeding carbon dioxide
CN207336285U (en) A kind of water filling is to desorption of mash gas characteristic experimental apparatus

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

Granted publication date: 20130717

Termination date: 20181209

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