CN1673489A - Underground gasification production mine - Google Patents

Underground gasification production mine Download PDF

Info

Publication number
CN1673489A
CN1673489A CN 200510063047 CN200510063047A CN1673489A CN 1673489 A CN1673489 A CN 1673489A CN 200510063047 CN200510063047 CN 200510063047 CN 200510063047 A CN200510063047 A CN 200510063047A CN 1673489 A CN1673489 A CN 1673489A
Authority
CN
China
Prior art keywords
gas
coal gas
oxygen
coal
lane
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 200510063047
Other languages
Chinese (zh)
Other versions
CN100406676C (en
Inventor
邢铁寰
梁杰
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.)
DAYAN COAL INDUSTRY Co Ltd
Original Assignee
DAYAN COAL INDUSTRY Co Ltd
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 DAYAN COAL INDUSTRY Co Ltd filed Critical DAYAN COAL INDUSTRY Co Ltd
Priority to CNB2005100630473A priority Critical patent/CN100406676C/en
Publication of CN1673489A publication Critical patent/CN1673489A/en
Application granted granted Critical
Publication of CN100406676C publication Critical patent/CN100406676C/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Processing Of Solid Wastes (AREA)

Abstract

The underground gasifying production mine is used in underground coal gasifying production. The underground gasifying production mine includes three systems: mine exploiting system, mine gas conveying system and underground coal gasifying and extracting system. Inside independent underground gasifying production mine, coal gas is produced in underground coal gasifying mode. The mine gas conveying system has special channels and pipeline for conveying coal, oxygen and water vapor in great amount, and is separated safely from the mine exploiting system. Several underground coal gasifying and extracting sections with underground gasifying furnace group are set, and direct gasifying furnace monitoring technology and sectional isolating regulating and controlling technology are adopted, so as to produce coal gas in stable yield and quality.

Description

Underground gasification production mine
Technical field
The invention belongs to the underground coal gasification(UCG) production field, particularly a kind of underground gasification production mine.
Background technology
People seldom or do not produce the underground gasification production mine of coal gas and study being specifically designed to the underground coal gasification(UCG) mode always for a long time, and similarly patent has: " long-passage and large-section underground coal gasification in mine (publication number CN 1169501A) ", " coal-bed gasifying method of gas-injection point backing while changing tube (publication number CN 1121138A) " etc.These patents are studied the basis that establishes the shaft underground gasification technology, but all do not relate to the overall plan of gasification gasification mine main, with large-scale production big distance are arranged.
Summary of the invention
The objective of the invention is needs, independently underground gasification production mine is set, produce coal gas with the underground coal gasification(UCG) mode specially according to underground coal gasification(UCG).Underground gasification production mine comprises that development, mine gas are carried, three big systems of underground coal gasification(UCG) back production.
1. development system is made of main shaft (1), auxiliary shaft (2), shaft station and Da Xiang (3), concentrated upper and lower mountain (4), district station and crossdrift (5), electric substation (6), pump house and sump (7), and its function is to provide system's support and service to the Gas Production and the exploiting field construction that continues.
2. the mine gas induction system is an independent system, aims at conveying coal gas and oxygen, water vapour setting, with the implement security isolation of development system.The mine gas induction system carries pit shaft (8), coal gas to carry pit shaft (9), oxygen to carry main lane (10), coal gas to carry main lane (11), switch door chamber (12) and the oxygen person in charge (10 '), the coal gas person in charge (11 '), the water vapour person in charge (13), coal gas to concentrate heat sink (38) to constitute by oxygen.
A. consider that coal gas and oxygen or oxygen enrichment conveying capacity are very big, carrying and to lay special-purpose oxygen and to carry pit shaft (8), coal gas conveying pit shaft (9), oxygen to carry main lane (10), coal gas to carry main lane (11) delivering oxygen and coal gas with caliber greater than the 800mm section.The gas transmission roadway is controlled with the two pass switch door that is located in the switch door chamber (12).
B. carry and need change respectively by oxygen is responsible for (10 ') and coal gas is responsible for (11 ') and carry with caliber less than the 800mm section at coal gas or oxygen, the person in charge being laid in pit shaft and crossdrift or the parking lot.Water vapour carry to need insulation and needs with caliber lessly, and therefore be responsible for (13) and carry, and be laid in separately in the roadway of mine air return system with the water vapour of insulation, but supplying nitrogen or other gas when needing.Gas pipeline is controlled with automatically controlled hydraulic operated valve door.
C. gasifying agent is provided by the gasifying agent preparation system (14) on ground, and coal gas is extracted ground out and promptly sent into simple and easy purifier (15), and it is stand-by to be pressed into gas tank after the processing.Carry main lane (11) or coal gas to be responsible for (11 ') head end at coal gas concentrated heat sink (38) is set.
Vertical, inclined shaft or footrill can be selected in described pit shaft (1), (2), (8), (9).
3. the underground coal gasification(UCG) recovery system is made up of section and underground gasification furnace two parts,
A. section is the formant in exploiting field, and length is exploiting field single-blade length, and the inclination width is advisable to be no more than 360m.Carry offset (21), coal gas to carry offset (22) and water vapour arm (23), oxygen manifold (24), branch gas tube (25) and hydraulic power pipe (26), the Monitoring and Controlling communications cable (27), safe isolation strip (28) to form by centralized Control lane (16), return airway (17), sluicing lane (18), mechanical chamber (19), section Monitoring and Controlling station (20), oxygen.
1. described centralized Control lane (16) is positioned at the section top edge, and head end and district station and crossdrift (5) are joined, and end is connected with return airway (17) upper end in the section boundary.
2. it is inboard and in parallel that described return airway (17) is positioned at the section boundary, is connected between centralized Control lane (16) and sluicing lane (18).
3. described sluicing lane (18) is positioned at the section lower limb, arises from return airway (17) end opening, terminates in to concentrate upper and lower mountain or district station and crossdrift (5).
4. described mechanical chamber (19) and section Monitoring and Controlling station (20) be arranged on centralized Control lane (16) head end or near.
5. it is need with caliber greater than the 800mm section to carry at oxygen and coal gas that described oxygen carries offset (21) and coal gas to carry offset (22), parallel with centralized Control lane (16) and at a distance of about 10m, divides in the setting of the position of both sides.Need be substituted by oxygen manifold (24) and branch gas tube (25) with caliber less than the 800mm section at oxygen and gas flow, two sub tube installations are in centralized Control lane (16).
6. described water vapour arm (23) head end connects from water vapour and is responsible for (13), and end terminates in last gasifying agent control alcove (30).
7. the described hydraulic power pipe (26) and the Monitoring and Controlling communications cable (27) are laid in the centralized Control lane (16).
8. described safe isolation strip (28) is respectively at centralized Control lane (16) downside and sluicing lane (18) upside, in parallel and the position at a distance of about the 15m, at the coal seam overall height and extend to top board 0.5m scope, the water sandy soil filling of carrying out width and be 2~3m constitutes.
B. underground gasification furnace is laid in the section, is the place that produces coal gas, mainly adopts U type furnace structure.Form by gasifying agent passage (29), gasifying agent control alcove (30), gasification face (31), gas passage (32), coal gas control alcove (33), hybrid gasification agent pipe (34), band air door divider wall (35), fire dam (36), spray washing cooling water curtain (37).
1. described gasifying agent passage (29) is laid in and is parallel in the coal seam of concentrating upper and lower mountain (4), and alcove (30) is controlled and centralized Control lane (16) join through gasifying agent in the upper end, and the lower end terminates in gasification face (31).
2. described gas passage (32) is laid in and is parallel in the coal seam of concentrating upper and lower mountain (4), and alcove (33) is controlled and centralized Control lane (16) join through coal gas in the upper end, time is terminated at sluicing lane (18).
3. described gasification face (31) is laid in safe isolation strip (28) upside and coal seam in parallel of sluicing lane (18) side, and head end is connected to gasifying agent passage (29) lower end, and end is connected to gas passage (32).
4. described hybrid gasification agent pipe (34) is installed in the total length of gasifying agent passage (29).
5. described band air door divider wall (35) or fire dam (36), be to be provided with, carry offset (21) and coal gas to carry offset (22) and joint, centralized Control lane (16) that twice fire dam (36) also will be set at oxygen in gasifying agent passage (29) and gas passage (32) both sides by safe isolation strip (28).In the bottom of gas passage (32) by safe isolation strip (28) both sides band air door divider walls (35), the U-shaped water seal is set, be convenient to draining.
6. describedly 3~5 annular spray washings cooling water curtains (37) are set at gas passage (32) port of export.
The invention has the beneficial effects as follows:
1) independently underground gasification production mine is set, produces coal gas with the underground coal gasification(UCG) mode specially.
2) set up the mine gas induction system, special-purpose roadway and pipeline are set, the super large tolerance that adapts to coal gas, oxygen, water vapour is carried, with the implement security isolation of development system.
3) a plurality of underground coal gasification(UCG) back production sections are set, in each section, arrange the underground gasification furnace group, adopt direct monitoring technology of gasification furnace and segmentation to isolate broken pipe injecting control technique, accomplish large-scale production coal gas, and can realize the bistable of quality and output.
Below in conjunction with drawings and Examples the present invention is made a detailed description.
Description of drawings
Fig. 1 is the floor map of the single-blade of a mine of underground gasification production mine of the present invention;
Fig. 2 is the principal section schematic diagram of underground gasification production mine of the present invention;
Fig. 3 arranges schematic diagram for underground gasification production mine section individual layer one wing of the present invention.
The specific embodiment
Referring to Fig. 1 and Fig. 2, wherein, main shaft 1, auxiliary shaft 2, concentrate in shaft station and big lane 3, go down the hill 4, district cross-cut and parking lot 5, electric substation 6, pump house and sump 7, oxygen is carried pit shaft 8, and coal gas is carried pit shaft 9, and oxygen is carried main lane 10, the oxygen person in charge 10 ', coal gas is carried main lane 11, the coal gas person in charge 11 ', switch door chamber 12, water vapour is responsible for 13, gasifying agent preparation system 14, simple and easy purifier 15, centralized Control lane 16, return airway 17, sluicing lane 18, mechanical chamber 19, section Monitoring and Controlling station 20, oxygen is carried offset 21, and coal gas is carried offset 22, steam arm 23, oxygen manifold 24, branch gas tube 25, safe isolation strip 28, gasifying agent passage 29, gasification face 31, gas passage 32, hybrid gasification agent pipe 34, coal gas is concentrated heat sink 38.
The present invention opens up mode based on vertical, for expressing the slope development mode, is concentrating the 4 top with dashed lines of going up a hill to mark inclines 1,2.Consider multiple seam, run through each layer with the section crossdrift.The developing, each gas transmission system and the correlation that have shown underground gasification production mine among the figure.Go up a hill 4 can exposure ground or when use slope development when concentrating, and every 2~3 sections electric substation 6 and pump house and sump 7 should be set, and is the simplification drawing, and this figure is omitted.
Referring to Fig. 3, be a typical section layout plan, shown each gas transmission system and relation in the section, the parallel connection relation of a plurality of underground gasification furnaces.Wherein be with gasifying agent control alcove 30, coal gas control alcove 33, air door divider wall 35, fire dam 36, spray washing cooling water curtain 37.
1) main shaft 1 of the development system shown in Fig. 1,2,3, auxiliary shaft 2, shaft station and big lane 3, to concentrate upper and lower mountain (is similar title pit shaft during along layer slope development, down with) 4, district station and crossdrift 5, electric substation 6, pump house and sump 7, form subsystems such as service hoisting, transportation, power supply, row's water supply, ventilation, security monitoring.Except that having cancelled Coal Transport, transhipment, Hoisting System, be analogous to the common coal mine main, function is to provide system's support and service to the Gas Production and the exploiting field construction that continues.
According to ground environment, geological conditions and production scale, pit shaft can be selected vertical, inclined shaft or footrill.Selecting for use and compound mode of above-listed roadway kind will can all be provided with or the part setting as required in accordance with the selection rule in common colliery.
2) the mine gas induction system shown in Fig. 1,2,3 is that independent system and developing system implement security are isolated.
Consider that oxygen or oxygen enrichment conveying capacity in coal gas and the gasifying agent are very big, carrying and to lay special-purpose oxygen and to carry pit shaft 8, coal gas conveying pit shaft 9, oxygen to carry main lane 10 and coal gas to carry main lane 11 delivering oxygens and coal gas with caliber greater than the 800mm section.Control with the special two pass switch door of being located in the switch door chamber 12 in the gas transmission roadway.
Carry to need with caliber less than the 800mm section, change respectively by oxygen be responsible for 10 ' and coal gas be responsible for 11 ' delivering oxygen and coal gas, pipeline laying is in pit shaft and crossdrift or parking lot.Water vapour in the gasifying agent is carried to be needed insulation and needs to use caliber less, therefore carries with utilidor.Water vapour is responsible for 13 and is located at separately in the roadway of mine air return system, but supplying nitrogen or other gas when needing.The control that pipeline gas is carried is with automatically controlled hydraulic operated valve door.
Gasifying agent is provided by the gasifying agent preparation system 14 on ground, and coal gas is extracted ground out and promptly sent into simple and easy purifier 15, and it is stand-by to be pressed into gas tank after the processing.
3) the underground coal gasification(UCG) recovery system shown in Fig. 1,2,3 is divided into section and underground gasification furnace two parts.
A. section is the formant in exploiting field, and length is exploiting field single-blade length, and the inclination width is advisable to be no more than 360m.Establish centralized Control lane 16 at the section top edge, return airway 17 is established in the section boundary, and the section lower limb is established sluicing lane 18.
1. centralized Control lane 16 is key tunnels of section, and head end and district station and crossdrift 5 are joined, and end is connected with return airway 17 upper ends in the section boundary.Total length is laid water vapour arm 23, hydraulic power pipe 26, the Monitoring and Controlling communications cable 27, and the part section is set up oxygen manifold 24, branch gas tube 25.
2. return airway 17 is positioned at inboard, section boundary and in parallel, is connected between centralized Control lane 16 and the sluicing lane 18.Function is that 16 weary wind in the centralized Control lane is sent into sluicing lane 18.
3. the lane 18 that sluices is positioned at the lower limb of section, arises from return airway 17 end openings, terminates in to concentrate upper and lower mountain 4 or district station and crossdrift 5.Function is to tackle gasification zone sluicing and import sump 7 in the gravity flow mode.In the storehouse water except that supply with gas washing cooling with, redundance is discharged ground and is done to discharge after harmless processings.Another function is the double section single-blade return airway of doing.
4. centralized Control lane 16 head ends or near mechanical chamber 19 and section Monitoring and Controlling station 20 are set, install Hydraulic Station and anchor spraying equipment in the mechanical chamber 19, install information processing, storage, the display unit of monitoring system in the section Monitoring and Controlling station 20.
5. carrying at oxygen and coal gas needs with caliber greater than the 800mm section, and the position at a distance of about 10m parallel with centralized Control lane 16 is provided with oxygen respectively and carries offset 21 and coal gas to carry offset 22.Need be at gas flow with caliber less than the 800mm section, change respectively by oxygen manifold 24 and branch gas tube 25 and substitute, two sub tube installations are in centralized Control lane 16.
6. oxygen is carried offset 21 head ends to be connected to oxygen and is carried main lane 10, and end terminates in oxygen manifold 24, and oxygen manifold 24 ends then terminate in last gasifying agent control alcove 30, and function is to be the gasification furnace delivering oxygen.
7. branch gas tube 25 head ends arise from the gas-pipe line in last coal gas control alcove 33, and end is connected to coal gas and carries offset 22 head ends.Coal gas carries offset 22 to be advisable to be located in the rock stratum, and head end is connected to branch gas tube 25, and the terminal coal gas that inserts is carried main lane 11, and function is to be gasification zone output coal gas.
8. water vapour arm 23 head ends are received and are laid in the water vapour conveying person in charge 13 who concentrates in upper and lower mountain 4 or district station and the crossdrift 5, and end terminates in last gasifying agent control alcove 30, and function is to be gasification furnace transporting water steam.
9. hydraulic power pipe 26 head ends are connected to Hydraulic Station, and end terminates in last gasifying agent control alcove 30, for the valve that respectively surges provides power.Track is connected to district station and crossdrift 5, for the gasification zone provides transportation service.
B. underground gasification furnace is laid in the section, is the place that produces coal gas, mainly adopts U type furnace structure.Constitute by gasifying agent passage 29, gasifying agent control alcove 30, gasification face 31, gas passage 32, coal gas control alcove 33, hybrid gasification agent pipe 34 etc.Adopt underground gasification furnace to adjust control technology, make gasifier operation in perfect condition.
1. gasifying agent passage 29 and gas passage 32, generally be parallel to and concentrate upper and lower mountain and be laid in the coal seam, the upper end joins through gasifying agent control alcove 30, coal gas control alcove 33 and centralized Control lane 16 respectively, gasifying agent passage 29 lower ends terminate in gasification face 31, and gas passage is terminated at sluicing lane 18 32 times.Gasification face 31 is laid in the coal seam of sluicing lane 18 upsides, and is parallel with sluicing lane 18 and keep suitable safe distance, head end to be connected to gasifying agent passage 29 lower ends, and end is connected to gas passage 32.
2. in each gasifying agent control alcove 30, oxygen catheter, steam conduit, gasifying agent blender are set, the hybrid gasification agent pipe 34 that picks out by blender, be laid in the gasifying agent passage 29, adopt segmentation to isolate broken pipe injecting technology, gasification face 31 implementation phase formula follow-up modes are injected gasifying agent.Two conduits and hybrid gasification agent pipe 34 are all installed electrically controlled and hydraulically valve and metering direct-reading instrument and respective sensor, in order to monitoring and the regulation and control to gas oxygen ratio and flow.
3. in each coal gas control alcove 33, establish the coal gas output duct, carry offset 22 to be connected with branch gas tube 25 or coal gas gas passage 32, in order to output coal gas.Installing electrically controlled and hydraulically valve and metering direct-reading instrument and respective sensor and the coal gas interface of sampling on the conduit is in order to the monitoring regulation and control of gas flow and the collection of gas composition sample.
4. gasifying agent enters gasification face with suitable intensity and contacts with red-hot rib, generates coal gas through physical change and chemical reaction.Under the effect of gasifying agent malleation and gas exit negative pressure, coal gas enters gas transportation system through gas passage 32, coal gas delivery conduit.
5. gasification furnace district trickle, steam condensate (SC), gasification reaction are separated out water, gas washing cooling water etc., come together in gas passage 32, and the U-shaped water seal of two-track tape air door divider wall 35 bottoms through being located at its lower end flows into sluicing lane 18.
C. 1. having constituted complete coal underground gasifying furnace to a 5. full content among the above-mentioned b, is elementary cell independent, sealing.Because all multifactor impacts, gasification furnace form and compound mode have multiple variation, typically have following several:
1. directly two stoves are combined a shared gasifying agent passage 29 and hybrid gasification agent pipe 34, a perhaps shared gas passage 32.
2. according to exploiting field condition and needs,, lay a plurality of gasification furnaces simultaneously in section, form the underground gasification furnace group with adjacent parallel connection or non-adjacent parallel connection (be analogous to jump and adopt) mode.But (except the two stove amalgamators) will keep personal distance and sealing between two stoves, accomplish independent operating separately, are independent of each other.
3. in same mine, can lay a plurality of exploiting fields and produce simultaneously, in same exploiting field, can lay a plurality of sections and produce simultaneously, in a wing of same section, can lay a plurality of underground gasification furnaces and produce.The underground gasification furnace group that forms of kind mode is gasified simultaneously thus, is the most important means that realize gas quality and output bistable and extensive Gas Production.
D. be timely and effective regulation and control gasification operation, guarantee safety in production, full mine information gathering process control system is set, they are:
1. adopt the underground gasification furnace operating state monitoring device, directly gather the state parameter of gasifier operation status information or gasification furnace periphery.
2. being located at full mine measure monitor direct-reading instrument place everywhere, all will install similar parameter sensor, valve and switch door will be installed the open and-shut mode displacement transducer, gather all kinds of parameters, status information.
3. according to the relevant security regulations in colliery, install harmful gas content, ventilation parameter and safety device state sensor, constitute the mine safety monitoring system at the key position of full mine.
4. to the Gas Production running state information and the mining safety monitoring information of above-listed collection, be sent to respectively in the information processing of installing in the total Control Room of Centralized Monitoring chamber and ground, storage, the display unit through client cables, regulate and control Gas Production according to this and be in ideal and safe condition.
5. respectively at centralized Control lane downside and sluicing lane upside, and with its parallel position at a distance of about 20m and with it, at the coal seam overall height and extend to top board 0.5m scope, the water sandy soil filling safety isolation strip 28 of width 2~3m is set.Each is communicated with the inboard at place in the gasification furnace tunnel and the external world, and two-track tape air door divider wall 35 or fire dam 36 are set.Divider wall bottom in that needs sluice is provided with the U-shaped water seal, realizes safety isolation and sealing that gasification furnace is external.
6. at each gas passage 32 port of export 3~5 annular spray washing cooling water curtains 37 are set, carrying main lane 11 or coal gas to be responsible for 11 ' head end at coal gas is provided with the concentrated heat sink 38 of coal gas indirect type, realizes that preliminary purification, cooling and the non high temperature to coal gas carried.

Claims (11)

1. a underground gasification production mine that carries out Gas Production specially is characterized in that, underground gasification production mine comprises that development, mine gas are carried, three big systems of underground coal gasification(UCG) back production;
1) development system is made of main shaft (1), auxiliary shaft (2), shaft station and Da Xiang (3), concentrated upper and lower mountain (4), district station and crossdrift (5), electric substation (6), pump house and sump (7);
2) the mine gas induction system carries pit shaft (8), coal gas to carry pit shaft (9), oxygen to carry main lane (10), coal gas to carry gasifying agent preparation system (14), the simple and easy purifier of coal gas (15), the coal gas that main lane (11), switch door chamber (12) and oxygen are responsible for (10 '), coal gas is responsible for (11 '), water vapour is responsible for (13), ground to concentrate heat sink (38) to constitute by oxygen;
Vertical, inclined shaft or footrill can be selected in pit shaft (1), (2), (8), (9);
3) the underground coal gasification(UCG) recovery system is made up of section and underground gasification furnace two parts.
2. underground gasification production mine according to claim 1 is characterized in that, in the described mine gas induction system:
1) coal gas and oxygen need with caliber greater than the 800mm section in conveying, lay special-purpose oxygen and carry pit shaft (8), coal gas to carry pit shaft (9), oxygen to carry main lane (10), coal gas to carry main lane (11) delivering oxygen and coal gas, the gas transmission roadway is controlled by the two pass switch door that is located in the switch door chamber (12);
2) coal gas and oxygen need with caliber less than the 800mm section in conveying, change respectively by oxygen is responsible for (10 ') and coal gas is responsible for (11 ') delivering oxygen and coal gas, the person in charge is laid in pit shaft and crossdrift or the parking lot, water vapour is carried with the water vapour of insulation and is responsible for (13) conveying, and be laid in separately in the roadway of mine air return system, but supplying nitrogen or other gas when needing, gas pipeline is controlled by the electrically controlled and hydraulically valve;
3) gasifying agent is provided by the gasifying agent preparation system (14) on ground, and coal gas is extracted ground out and promptly sent into simple and easy purifier [15], and it is stand-by to be pressed into gas tank after the processing.Carry main lane (11) or coal gas to be responsible for (11 ') head end at coal gas the concentrated heat sink (38) of coal gas is set.
3. underground gasification production mine according to claim 1, it is characterized in that described section carries offset (21), coal gas to carry offset (22) and water vapour arm (23), oxygen manifold (24), branch gas tube (25) and hydraulic power pipe (26), the Monitoring and Controlling communications cable (27), safe isolation strip (28) to form by centralized Control lane (16), return airway (17), sluicing lane (18), mechanical chamber (19), section Monitoring and Controlling station (20), oxygen.
4. according to claim 1,3 described underground gasification production mines is characterized in that, described centralized Control lane (16) is positioned at the section top edge, and head end and district station and crossdrift (5) are joined, and end is connected with return airway (17) upper end in the section boundary.It is inboard and in parallel that return airway (17) is positioned at the section boundary, be connected between centralized Control lane (16) and sluicing lane (18), sluicing lane (18) is positioned at the section lower limb, arise from return airway (17) end opening, terminate in concentrate upper and lower mountain (4) or district station and crossdrift (5), mechanical chamber (19) and section Monitoring and Controlling station (20) be arranged on centralized Control lane (16) head end or near.
5. according to claim 1,3 described underground gasification production mines, it is characterized in that, it is to need with caliber greater than the 800mm section at oxygen and coal gas conveying that described oxygen carries offset (21) and coal gas to carry offset (22), parallel with centralized Control lane (16) and at a distance of about the 10m, divide in the position of both sides to be provided with, carrying at oxygen and coal gas needs with caliber less than the 800mm section, substituted by described oxygen manifold (24) and branch gas tube (25) respectively, two sub tube installations are in centralized Control lane (16); Described water vapour arm (23) head end connects from water vapour and is responsible for (13), and end terminates in last gasifying agent control alcove (30).
6. according to claim 1,3 described underground gasification production mines, it is characterized in that, described safe isolation strip (28) is respectively at centralized Control lane (16) downside and sluicing lane (18) upside, in parallel and the position at a distance of about the 15m, at the coal seam overall height and extend to top board 0.5m scope, the water sandy soil filling of carrying out width and be 2~3m constitutes.
7. underground gasification production mine according to claim 1, it is characterized in that, described underground gasification furnace is laid in the section, it is the place that produces coal gas, adopt U type furnace structure, form by gasifying agent passage (29), gasifying agent control alcove (30), gasification face (31), gas passage (32), coal gas control alcove (33), hybrid gasification agent pipe (34), band air door divider wall (35), fire dam (36), spray washing cooling water curtain (37).
8. according to claim 1,7 described underground gasification production mines, it is characterized in that, described gasifying agent passage (29) is laid in and is parallel in the coal seam of concentrating upper and lower mountain (4), the upper end joins through gasifying agent control alcove (30) and centralized Control lane (16), and the lower end terminates in gasification face (31); Described gas passage (32) is laid in and is parallel in the coal seam of concentrating upper and lower mountain (4), and alcove (33) is controlled and centralized Control lane (16) join through coal gas in the upper end, time is terminated at sluicing lane (18); Described hybrid gasification agent pipe (34) is installed in the total length of gasifying agent passage (29).
9. according to claim 1,7,8 each described underground gasification production mines, it is characterized in that described gasification face (31) is laid in safe isolation strip (28) upside and coal seam in parallel of sluicing lane (18) side, head end is connected to gasifying agent passage (29) lower end, and end is connected to gas passage (32).
10. according to claim 1,7 described underground gasification production mines, it is characterized in that described band air door divider wall (35) or fire dam (36), be to be provided with in gasifying agent passage (29) and gas passage (32) both sides by safe isolation strip (28), carry offset (21) and coal gas to carry offset (22) and joint, centralized Control lane (16) that twice fire dam (36) also will be set at oxygen, in the bottom of gas passage (32), the U-shaped water seal is set by safe isolation strip (28) both sides band air door divider walls (35).
11. according to claim 1,7,8 each described underground gasification production mines is characterized in that describedly at gas passage (32) port of export 3~5 annular spray washings cooling water curtains (37) being set.
CNB2005100630473A 2005-04-05 2005-04-05 Underground gasification production mine Expired - Fee Related CN100406676C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2005100630473A CN100406676C (en) 2005-04-05 2005-04-05 Underground gasification production mine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2005100630473A CN100406676C (en) 2005-04-05 2005-04-05 Underground gasification production mine

Publications (2)

Publication Number Publication Date
CN1673489A true CN1673489A (en) 2005-09-28
CN100406676C CN100406676C (en) 2008-07-30

Family

ID=35046243

Family Applications (1)

Application Number Title Priority Date Filing Date
CNB2005100630473A Expired - Fee Related CN100406676C (en) 2005-04-05 2005-04-05 Underground gasification production mine

Country Status (1)

Country Link
CN (1) CN100406676C (en)

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101864941A (en) * 2010-03-23 2010-10-20 邓惠荣 Ultra-deep coal underground gasification technology
CN101915122A (en) * 2010-08-02 2010-12-15 中钢集团马鞍山矿山研究院有限公司 Construction method of underground large water-flow mine emergency water sump
CN102486085A (en) * 2010-12-01 2012-06-06 新奥气化采煤有限公司 Gasifying agent transmission and distribution system and technology for underground gasification of carbon-containing organic matters
CN102536184A (en) * 2012-01-17 2012-07-04 中国石油大学(华东) Method for exploiting coal-bed gas of burned coal bed
CN103953377A (en) * 2014-04-29 2014-07-30 中国矿业大学(北京) Ventilation method for high-temperature mine mining area
US9428978B2 (en) 2012-06-28 2016-08-30 Carbon Energy Limited Method for shortening an injection pipe for underground coal gasification
US9435184B2 (en) 2012-06-28 2016-09-06 Carbon Energy Limited Sacrificial liner linkages for auto-shortening an injection pipe for underground coal gasification
CN110552677A (en) * 2019-09-05 2019-12-10 中国矿业大学(北京) Mine type coal underground gasification furnace and gasification method

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4026357A (en) * 1974-06-26 1977-05-31 Texaco Exploration Canada Ltd. In situ gasification of solid hydrocarbon materials in a subterranean formation
CN1057365C (en) * 1994-10-15 2000-10-11 中国矿业大学 Long-passage large-section underground coal gasification process for mine
CN1425848A (en) * 2002-08-28 2003-06-25 泰安金马科技开发有限责任公司 Underground coal gasifying process

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101864941A (en) * 2010-03-23 2010-10-20 邓惠荣 Ultra-deep coal underground gasification technology
CN101864941B (en) * 2010-03-23 2013-08-28 邓惠荣 Ultra-deep coal underground gasification technology
CN101915122A (en) * 2010-08-02 2010-12-15 中钢集团马鞍山矿山研究院有限公司 Construction method of underground large water-flow mine emergency water sump
CN101915122B (en) * 2010-08-02 2011-12-28 中钢集团马鞍山矿山研究院有限公司 Construction method of underground large water-flow mine emergency water sump
CN102486085A (en) * 2010-12-01 2012-06-06 新奥气化采煤有限公司 Gasifying agent transmission and distribution system and technology for underground gasification of carbon-containing organic matters
CN102536184A (en) * 2012-01-17 2012-07-04 中国石油大学(华东) Method for exploiting coal-bed gas of burned coal bed
US9963949B2 (en) 2012-06-28 2018-05-08 Carbon Energy Limited Sacrificial liner linkages for auto-shortening an injection pipe for underground coal gasification
US9428978B2 (en) 2012-06-28 2016-08-30 Carbon Energy Limited Method for shortening an injection pipe for underground coal gasification
US9435184B2 (en) 2012-06-28 2016-09-06 Carbon Energy Limited Sacrificial liner linkages for auto-shortening an injection pipe for underground coal gasification
US9976403B2 (en) 2012-06-28 2018-05-22 Carbon Energy Limited Method for shortening an injection pipe for underground coal gasification
CN103953377A (en) * 2014-04-29 2014-07-30 中国矿业大学(北京) Ventilation method for high-temperature mine mining area
CN110552677A (en) * 2019-09-05 2019-12-10 中国矿业大学(北京) Mine type coal underground gasification furnace and gasification method
CN110552677B (en) * 2019-09-05 2024-03-15 中国矿业大学(北京) Mine type coal underground gasification furnace and gasification method

Also Published As

Publication number Publication date
CN100406676C (en) 2008-07-30

Similar Documents

Publication Publication Date Title
CN1673489A (en) Underground gasification production mine
CN110714797B (en) System and method for preventing and controlling fire in coal goaf
CN101315026B (en) Underground coal gasification system and producing process
CN103717831A (en) Apparatus and methods for recovery of hydrocarbons
CN101382061A (en) Novel coalbed gas thermal recovery process
US12000626B2 (en) Geothermal development system and the construction method thereof
CN105332384B (en) Super pressure inhales joint pumping system and its method of work
CN206419171U (en) A kind of geothermal exploitation system
WO2023035631A1 (en) Co-associated abandoned mine multi-energy complementary system and application method
CN106704123A (en) Geothermal exploitation system and construction method thereof
CN110700831A (en) Coal mine production system under intelligent mining condition
CN113803104B (en) Method for integrally arranging upper mining area buried pipe and downward drilling and extracting full-period gas
CN114508867A (en) Photovoltaic-pumped storage-geothermal combined development and utilization system for abandoned coal mine and construction method
CN108386196A (en) The mining system and recovery method of seabed combustible ice
CN107461951A (en) A kind of deep earth heart energy development approach
CN105422162B (en) A kind of utilization can absorb heat the goaf heat sink and cool-down method of filler
CN202144749U (en) Pipeline mine emergency rescue equipment
CN109915198A (en) Coal working face advance borehole full blast presses drawing-off gas method
CN220306960U (en) Pumped storage-gravity energy storage-photovoltaic-wind power system utilizing waste coal mine
CN113863910B (en) Underground in-situ gasification and heat energy co-extraction integrated method for coal
CN207700163U (en) Combine water-pumping energy-storage system with earth's surface using the discarded roadway of siphonic effect
CN106437826A (en) Coal-bed gas extraction method achieving automatic adjustment of negative-pressure drill-hole zoning and source differentiating
CN203189029U (en) Deslagging system used for deep vertical shaft full section heading machine
CN110374557A (en) A kind of gas hydrates subsea production system and method based on fluidisation exploitation
CN203345665U (en) Subway shield construction automatic feeding system

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: 20080730

Termination date: 20130405