CN202502089U - Device for diagenesis simulation experiments - Google Patents
Device for diagenesis simulation experiments Download PDFInfo
- Publication number
- CN202502089U CN202502089U CN2011204971232U CN201120497123U CN202502089U CN 202502089 U CN202502089 U CN 202502089U CN 2011204971232 U CN2011204971232 U CN 2011204971232U CN 201120497123 U CN201120497123 U CN 201120497123U CN 202502089 U CN202502089 U CN 202502089U
- Authority
- CN
- China
- Prior art keywords
- rock core
- outlet
- pressure
- burden pressure
- liquid
- 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.)
- Expired - Fee Related
Links
Images
Landscapes
- Sampling And Sample Adjustment (AREA)
Abstract
The utility model relates to a device for diagenesis simulation experiments. The device comprises a rock core clamping mechanism, a warming mechanism, a gas porosity and permeability measuring mechanism, a liquid injection and liquid permeability measuring mechanism, an outlet fluid automatic continuous measurement sampling mechanism, a burden pressure pressurizing control mechanism, a fluid physical property testing mechanism and a data acquisition calculation and automatic control mechanism; an inlet and an outlet of the rock core clamping mechanism are connected with the gas porosity and permeability measuring mechanism and the liquid injection and liquid permeability measuring mechanism respectively; the warming mechanism is sleeved on the periphery of the rock core clamping mechanism, a burden pressure injection port of the rock core clamping mechanism is connected with the burden pressure pressurizing control mechanism, and an outlet of the liquid injection and liquid permeability measuring mechanism is connected onto the sampling mechanism, and the testing mechanism tests samples; and the data acquisition calculation and automatic control mechanism collets, records, stores and calculates temperatures, pressures and flows in the experiment, and controls motions of a corresponding magnetic valve and the sampling mechanism according to experiment conditions simultaneously.
Description
Technical field
The utility model relates to the device that a kind of oil, geology, exploration industry carry out the Diagn simulated experiment, and specifically a kind of factors such as fluid, pressure, temperature of studying in the rock forming process are to the analogue experiment installation of its rerum natura variable effect.
Background technology
After J.Wather in 1893 at first proposed diagenetic notion, people were to the continuous system of diagenetic research and deep.The domestic in recent years research that has a lot of scholars to be engaged in this respect, and obtained bigger progress.Along with the oil-gas exploration and development degree of depth; The increase of precision and difficulty; People begin the diagenetic universal law of system summary; Predict favourable pores'growth band in view of the above, help to seek subtle reservoir, and progressively combine, diagenetic research is played a greater role in exploratory development with the geophysics technology.
Compare with the research of theoretical side, diagenetic in-house laboratory investigation is less relatively, and the fairly perfect instrument that is specifically designed to diagenetic research still less, and this has also limited the progress of in-house laboratory investigation.And it is incomplete on the existing instrumental function few in number; The Diagn tester major side of producing like instrucment and meter plant of China University Of Petroleum Beijing overweights the research of compaction, and the Diagn simulation test device that petroleum exploration and development research institute of China Petrochemical Industry Wuxi is developed lays particular emphasis on dynamic fluid to diagenetic influence.Not ideal enough on the antiseptic property of the selection of material, the instrument of two families all adopts alloy steel material to add the surface-treated way, is difficult to adapt to the corrosion of soda acid; In addition, the technical indicator of instrument is lower, and the highest temperature forcing up the targets of existing instrument is respectively: 250 ℃ and 50MPa are not enough to satisfy the requirement of test comprehensively.Cause the reason of these problems mainly to be the core component of instrument, core holding unit, the Ha Shi core holding unit of still using that existing instrument uses for conventional flowing experiment; It uses rubber tube to cooperate hydraulic pressure to come the clamping rock core; Because the heatproof the highest 250 ℃ (of short duration use) of rubber, so just limited the highest test temperature of instrument, at high temperature rubber can soften; Softening rubber under high pressure can place creep, so limited the highest experimental pressure of instrument again.Therefore development function is complete, and the excellent analogue means of the whole antiseptic property of each item technical indicator and instrument becomes inevitable.
The utility model content
The purpose of the utility model is to provide a kind of Diagn analogue experiment installation, for oil, geology, exploration industry provide the experimental assembly that is more suitable for to diagenetic research.
The technical scheme of the utility model is: a kind of Diagn analogue experiment installation; Described device comprises rock core clamping device, heating mechanism, gas factor of porosity and permeability survey mechanism, liquid injection and measurement of liquid permeability mechanism, outlet fluid automatic continuous measuring sampling mechanism, burden pressure pressurized control mechanism, physical properties of fluids testing agency and data acquisition calculating and automatic controls; The entrance and exit of rock core clamping device injects with permeability survey mechanism, liquid with gas orifice crack degree respectively and measurement of liquid permeability mechanism links to each other; The periphery of rock core clamping device is with heating mechanism; The burden pressure inlet of rock core clamping device connects burden pressure pressurized control mechanism; Liquid injects and the outlet of measurement of liquid permeability mechanism is connected on the outlet fluid automatic continuous measuring sampling mechanism, and physical properties of fluids testing agency is detected the fluid sample of outlet fluid automatic continuous measuring sampling mechanism; By temperature, pressure, flow in data acquisition calculating and automatic controls collection, record, storage and the computing experiment, the action of moving and exporting fluid automatic continuous measuring sampling mechanism according to experimental status control corresponding solenoid valve simultaneously.
Preferably: described rock core clamping device has a columniform clamper cylindrical shell, and the cylindrical shell endoporus is taper, and this taper coincide with the outer wall of splitting taper sheath; One end of cylindrical shell has external thread, connects the burden pressure cylinder, and the other end is an internal thread; The link cover, it is cylindrical splitting the taper sheath endoporus, and thin-walled Hastelloy tube is arranged in it; the outer wall of thin-walled Hastelloy tube be cylindrical and with split the taper sheath endoporus and coincide, the major part section of splitting taper sheath has external thread, and fastening with clamp nut; Dress experiment rock core in the thin-walled Hastelloy tube, the upstream face of rock core contacts with the burden pressure plug, and the burden pressure plug stretches out the burden pressure cylinder, and downstream end face contacts with the downstream plug, downstream plug external part cover.
Preferably: the burden pressure plug is made up of the right cylinder of three sections different-diameters, and right side section contacts with rock core, and diameter equals the diameter of rock core, and the stage casing contacts with burden pressure plug inwall, and diameter is maximum, and left side section diameter minimum is also stretched out in the burden pressure cylinder; There is a through hole at the center of burden pressure plug, and the outer end is rock core clamping device inlet, the inner upstream face that connects rock core; The rock core downstream end face contacts with the downstream plug; The downstream plug is made up of the right cylinder of two sections different-diameters, and left side section contacts with rock core, and diameter equals the diameter of rock core; Right section diameter is less than left side section; And in block and end overlap, stretch out, there is a through hole at the center of downstream plug, and the outer end is the outlet of rock core clamping device; The block retaining is being split between taper sheath and the end cover.
Preferably: between burden pressure plug and downstream plug and the thin-walled Hastelloy tube seal is arranged all; O type circle is arranged between the burden pressure plug and the burden pressure inside wall of cylinder; O type circle is arranged between the outer wall of burden pressure plug and the burden pressure cylinder.
Preferably: described gas factor of porosity and permeability survey mechanism comprise the inlet gas circuit and outlet gas circuit of joining with the rock core clamping device; Be connected with nitrogen cylinder, solenoid valve, inlet gas circuit isolation valve in turn on the inlet gas circuit; Be provided with decompressor between first solenoid valve and second solenoid valve, be provided with pressure transducer and gas between second solenoid valve and the 3rd solenoid valve and give the contrast chamber; Be connected with outlet gas circuit isolation valve, the 5th solenoid valve, pressure transducer and gas meter on the outlet gas circuit in turn; Be connected with the 4th solenoid valve between inlet gas circuit and the outlet gas circuit.
Preferably: liquid injects and measurement of liquid permeability mechanism comprises the inlet liquid road and outlet liquid road that joins with the rock core clamping device, and inlet liquid road is connected with liquid charge pump, intermediate receptacle, preheating can, pressure transducer and inlet liquid road isolation method in turn; Outlet liquid road is connected with outlet liquid road isolation valve, pressure transducer, condenser, back pressure device and fluid egress point in turn; Be connected with backpressure pump, gas cylinder, back pressure table on the back pressure device.
Preferably: burden pressure pressurized control mechanism comprises burden pressure pump, pressure transducer, valve, the burden pressure table that joins with the rock core clamping device.
Preferably: outlet fluid automatic continuous measuring sampling mechanism comprises operator's console, is positioned at support, electronic balance on the operator's console; Electronic balance is provided with the beaker frame, on the beaker frame beaker is arranged; Support is provided with horizontal slide rail and vertical slide rail, and laterally slide rail is provided with transverse slider, and vertically slide rail is installed on the transverse slider, and vertically slide rail is provided with longitudinal sliding block, and fluid egress point is installed on the longitudinal sliding block.
Preferably: described heating mechanism comprise the heating watt and heat-insulation layer.
The beneficial effect of the utility model is: the utility model can be simulated the whole process of compaction, and the situation of change of physical parameter (factor of porosity, permeability) in the real-time testing compaction process; Can simulate when various diagenesis fluids contact with rock sound attitude under the high-temperature and high-pressure conditions influence to rock Diagn (like acid Diagn, alkaline Diagn, corrosion etc.); Can be in the process of diagenesis simulation real-time dynamic monitoring core porosity and changes in permeability situation; Can be in the process of diagenesis simulation the situation of change of real-time dynamic monitoring fluid properties; The utility model energy measurement multiple parameters: measurement of concetration, the resident fluid pH measurement of the different ions that gas porosity measurement, rock core pore compressibility and cumulative volume compressibility coefficient are measured, dynamic or static sub-surface fluid corrosion produces under the rock core measurement of liquid permeability under the different pressures different temperatures, the measurement of the rock core gas permeability under the different pressures, the different pressures.
The benefit of core holding unit: 1, replace rubber tube with thin-walled Hastelloy tube, solved heatproof, the problem of withstand voltage of rubber tube, Hastelloy is the best metal alloy of acid and alkali-resistance so far simultaneously, has also solved the corrosion-resistant problem; The effect of 2, splitting taper sheath is and the endoporus of clamper cylindrical shell is fitted forms the pressure-bearing body, when internally confining thin-walled Hastelloy tube, supports the high pressure in the thin-walled Hastelloy tube, and the design of splitting is convenient to load the operation of rock core again; 3, the design of burden pressure cylinder and burden pressure plug has guaranteed the control that puts on of burden pressure in the experiment; 4, the heating watt and the length of heat-insulation layer only are wrapped on the clamper cylindrical shell that begins from burden pressure cylinder right-hand member; In the experimental temperature that guarantees rock core, avoided the upper-coated pressure system temperature too high again, the risk of having avoided the O type circle in the upper-coated pressure system at high temperature to lose efficacy.
1, the utility model possesses following function:
1) can simulate when various fluids contact with rock sound attitude under the high-temperature and high-pressure conditions Diagn, like acid Diagn, alkaline Diagn, corrosion etc. to rock;
2) compaction of ability simulation test is to the influence of diagenetic process;
3) can be in the process of diagenesis simulation the variation of dynamic monitoring core permeability, the variation of factor of porosity;
4) can be in the process of diagenesis simulation the variation of dynamic monitoring fluid composition;
2, material is selected: liquid-contacting part is selected anti-corrosion alloy material-Hastelloy for use, makes instrument can under the HTHP situation, also can carry out the diagenesis experiment of corrosive fluids such as acid, alkali, salt.
3, heatproof index: can high temperature resistant rock core clamping device more than 300 ℃, the diagenesis experimental period can be effectively shortened in the raising of high temperature index, with the evolution process in 1,000,000 years under the geologic condition in the laboratory short time accomplish.
4, automaticity: the diagenesis experimental period is long, and examination point is many, operating personnel is required very high, and the automaticity that effectively improves instrument will help the smooth completion of testing.The utility model is designed to full-automatic flow process with the testing process of gas factor of porosity, Permeability Parameters, can automatically gas factor of porosity, Permeability Parameters be tested out; In addition; Need the variation of long-time monitoring outlet fluid in the experiment of fluid Diagn; Test period often surpasses 24 hours, and personnel's ten minutes on duty is arduous, so new equipment has been developed outlet fluid automatic continuous measuring sampling mechanism; It can realize unmanned according to the fluid automatic gauge and the timing sampling of designing program outlet.
Description of drawings
Fig. 1 is the utility model instrument overall flow synoptic diagram
Fig. 2 is the utility model rock core clamping device and heating mechanism structural representation
Fig. 3 is the structural representation of the utility model outlet fluid automatic continuous measuring sampling mechanism
Embodiment
Embodiment below in conjunction with description of drawings the utility model:
The utility model comprises rock core clamping device 1, heating mechanism 2, gas factor of porosity and permeability survey mechanism, liquid injection and measurement of liquid permeability mechanism, outlet fluid automatic continuous measuring sampling mechanism 5; Burden pressure pressurized control mechanism 6, physical properties of fluids testing agency, data acquisition calculating and automatic controls.The inlet 1-4 of rock core clamping device 1 injects with permeability survey mechanism, liquid with gas orifice crack degree respectively with outlet 1-14 and measurement of liquid permeability mechanism links to each other; The periphery of rock core clamping device 1 is with heating mechanism 2; The burden pressure inlet 1-2 of rock core clamping device 1 connects burden pressure pressurized control mechanism 6; Liquid injects and the outlet 4-10 of measurement of liquid permeability mechanism is connected in outlet fluid automatic continuous measuring sampling mechanism 5, and available physical properties of fluids testing agency is detected the fluid sample in the beaker 5-5 on the outlet fluid automatic continuous measuring sampling mechanism 5.Parameters such as temperature, pressure, flow are gathered, write down, are stored and computing by data acquisition calculating and automatic controls 8 in the experiment, and data acquisition calculating simultaneously and automatic controls 8 can be controlled the action of corresponding solenoid valve action and outlet fluid automatic continuous measuring sampling mechanism 5 according to experimental status.
Rock core clamping device 1 has a columniform clamper cylindrical shell 1-10, and the cylindrical shell endoporus is taper, and this taper coincide with the outer wall of splitting taper sheath 1-11; One end car of cylindrical shell has external thread, connects burden pressure cylinder 1-3, and the other end is an internal thread; Link cover 1-16, it is cylindrical splitting taper sheath 1-11 endoporus, and thin-walled Hastelloy tube 1-12 is arranged in it; the outer wall of thin-walled Hastelloy tube 1-12 be cylindrical and with split taper sheath 1-11 endoporus and coincide; the major part section car of splitting taper sheath 1-11 has external thread, and coincide in the internal thread of clamp nut 1-1, and clamp nut 1-1 is screwed on the screw thread of splitting taper sheath 1-11 can keep splitting taper sheath 1-11 position with complete taper sheath; open and then split taper sheath 1-11 in two, be easy to the thin-walled Hastelloy tube 1-12 in it is taken out.Dress experiment rock core 1-9 in the thin-walled Hastelloy tube 1-12, hole dimension and rock core 1-9 external diameter coincide in it.The upstream face of rock core 1-9 contacts with burden pressure plug 1-5, and downstream end face contacts with downstream plug 1-15.On burden pressure plug 1-5 and the downstream plug 1-15 seal 1-8 is arranged all, effect is to guarantee and the contact seal of thin-walled Hastelloy tube 1-12 inwall.Burden pressure plug 1-5 is positioned at burden pressure cylinder 1-3; Right cylinder by three sections different-diameters is formed, and the section diameter that contacts with rock core 1-9 equals the diameter of rock core-9, with burden pressure plug 1-5 inwall contact portion O type circle 1-7 is arranged; This section diameter is maximum; When its left end has the fluid pressure that comes from burden pressure pressurized control mechanism 6, can this pressure be applied on the upstream face of rock core 1-9, the left end of burden pressure plug 1-5 is the thinnest and in burden pressure cylinder 1-3, stretch out; There is O type circle 1-6 to be responsible for sealing between his outer wall and the burden pressure cylinder; There is a through hole at the center of burden pressure plug 1-5, and the outer end is rock core clamping device inlet 1-4, the inner upstream face that connects rock core 1-9.Rock core 1-9 downstream end face contacts with downstream plug 1-15; Downstream plug 1-15 is made up of the right cylinder of two sections different-diameters; The section diameter that contacts with rock core 1-9 equals the diameter of rock core 1-9; Thinner part is overlapped in the 1-16 with end from block 1-13 and is stretched out, and there is a through hole at the center of downstream plug 1-15, and the outer end is rock core clamping device outlet 1-14.Block 1-13 retaining is being split between taper sheath 1-11 and the end cover 1-16.
Gas factor of porosity and permeability survey working process of mechanism: at first close inlet liquid road isolation valve 4-5 and outlet liquid road isolation valve 4-6; Open the first isolation valve 3-5 and the second isolation valve 3-13; Rock core clamping device 1 is connected into gas factor of porosity and permeability survey mechanism, measurement gas permeability process: open the first solenoid valve 3-2, the second solenoid valve 3-4, the 3rd solenoid valve 3-6, outlet gas circuit isolation valve 3-13, the 5th solenoid valve 3-12, close the 4th solenoid valve 3-9; Open nitrogen cylinder 3-1 air feed; Regulate the air-flow of reduction valve 3-3 supply certain pressure and give rock core 1-9, pressure transducer 3-7,3-10 measures the pressure of rock core upstream and downstream; Gas meter 3-11 measurement gas flow can be calculated permeability according to the gas Darcy's law then.Measure hole and spend journey: close the 3rd solenoid valve 3-6, the 4th solenoid valve 3-9, the 5th solenoid valve 3-12 earlier; Open the first solenoid valve 3-2, the second solenoid valve 3-4 again; Open nitrogen cylinder 3-1 air feed; Regulate the gas of reduction valve 3-3 supply certain pressure and give contrast chamber 3-8, the pressure that pressure transducer 3-7 writes down this moment is P1, opens the 3rd solenoid valve 3-6, the 4th solenoid valve 3-9 then; Writing down the pressure of this moment by pressure transducer 3-7 after the equal pressure balance is P2, calculates core porosity according to glass horse law then.
Liquid injects and the measurement of liquid permeability working process of mechanism: at first close the first isolation valve 3-5 and the second isolation valve 3-13; Open inlet liquid road isolation valve 4-5 and outlet liquid road isolation valve 4-6; Rock core clamping device 1 is connected into liquid injects and measurement of liquid permeability mechanism, measure the Test Liquid Permeability of Core process: open liquid charge pump 4-1, the hydraulic fluid entering preheating can 4-3 that the fluid of injection intermediate receptacle 4-2 can promote intermediate receptacle 4-2 heats; Get into rock core 1-9 then; Get into condenser 4-8 cooling after flowing out rock core, get into back pressure device 4-9 then, get into outlet fluid automatic continuous measuring sampling mechanism 5 through fluid egress point 4-10; Pressure transducer 4-4 in the process; 4-7 is survey record rock core upstream and downstream pressure respectively, and outlet fluid automatic continuous measuring sampling mechanism 5 is measured and the recording liquid flow, calculates core permeability according to Darcy's law then.The pressure of back pressure device 4-9 is provided by gas cylinder 4-12, when pressure is not enough, can carry out supercharging by backpressure pump 4-11, and the size of back pressure is shown by back pressure table 4-13.
The course of work of burden pressure pressurized control mechanism 6: open valve 6-3, start burden pressure pump 6-1 and suppress, show size, pressure transducer 6-2 measurement and the record burden pressure numerical value of burden pressure by burden pressure table 6-4.The pressure that burden pressure pressurized control mechanism 6 provides is loaded on the rock core 1-9 through burden pressure plug 5.
The structure and the principle of work of outlet fluid automatic continuous measuring sampling mechanism 5 are following: fluid egress point 4-10 is a flexible pipe, is connected to longitudinal sliding block 5-2 and goes up the beaker 5-5 of back outlet towards bottom, and longitudinal sliding block 5-2 is contained on vertical slide rail 5-4; And can slide rail 5-4 longitudinal sliding motion longitudinally under the control of computing machine; And vertically the end of slide rail 5-4 is fixed on the transverse slider 5-1, and transverse slider 5-1 is contained on the horizontal slide rail 5-3, and laterally slide rail 5-3 is fixed on the operator's console 5-9 through support 5-8; Transverse slider 5-1 can laterally slide at the horizontal slide rail 5-3 in the control lower edge of computing machine; Adding longitudinal sliding block 5-2 can slide rail 5-4 longitudinal sliding motion longitudinally under the control of computing machine, can realize two-dimensional localization thereby drive fluid egress point 4-10, guarantees among the selective inflow beaker of the fluid 5-5; Beaker 5-5 has 20; Line up 4 * 5 matrixes and be placed among the beaker frame 5-6, beaker frame 5-6 integral seat is on electronic balance 5-7, and electronic balance 5-7 lies on the operator's console 5-9.When fluid flowed among the beaker 5-5, electronic balance 5-7 measured and write down fluid mass at any time also except that to computing machine, and computing machine can be according to the flow of the change calculations liquid of quality.When the fluid in the beaker was expired soon, computer controlled automatic slide block two dimension moved and allows fluid flow in the next beaker.Fluid in the experiment has also been accomplished the segmentation sampling like this.
The fluid of segmentation sampling can detect with physical properties of fluids testing agency 7, analyzes the variation of its intermediate ion, potential of hydrogen etc.
Data acquisition calculating and automatic controls 8 mainly contain data acquisition module, computing machine, acquisition process Control Software, and control circuit is formed.
Claims (9)
1. Diagn analogue experiment installation; It is characterized in that: described device comprises rock core clamping device (1), heating mechanism (2), gas factor of porosity and permeability survey mechanism, liquid inflow and measurement of liquid permeability mechanism, outlet fluid automatic continuous measuring sampling mechanism (5), burden pressure pressurized control mechanism (6), physical properties of fluids testing agency and data acquisition calculating and automatic controls; The inlet (1-4) of rock core clamping device (1) flows into permeability survey mechanism, liquid with gas orifice crack degree respectively with outlet (1-14) and measurement of liquid permeability mechanism links to each other; The periphery of rock core clamping device (1) is with heating mechanism (2); The burden pressure inlet (1-2) of rock core clamping device (1) connects burden pressure pressurized control mechanism (6); Liquid flows into and the outlet (4-10) of measurement of liquid permeability mechanism is connected on the outlet fluid automatic continuous measuring sampling mechanism (5), and physical properties of fluids testing agency is detected the fluid sample of outlet fluid automatic continuous measuring sampling mechanism (5); By temperature, pressure, flow in data acquisition calculating and automatic controls collection, record, storage and the computing experiment, the action of moving and exporting fluid automatic continuous measuring sampling mechanism (5) according to experimental status control corresponding solenoid valve simultaneously.
2. Diagn analogue experiment installation as claimed in claim 1 is characterized in that: described rock core clamping device has a columniform clamper cylindrical shell (1-10), and the cylindrical shell endoporus is taper; This taper coincide with the outer wall of splitting taper sheath (1-11), and an end of cylindrical shell has external thread, connects burden pressure cylinder (1-3); The other end is an internal thread, link cover (1-16), and it is cylindrical splitting taper sheath (1-11) endoporus; Thin-walled Hastelloy tube (1-12) is arranged in it; the outer wall of thin-walled Hastelloy tube (1-12) be cylindrical and with split taper sheath (1-11) endoporus and coincide, the major part section of splitting taper sheath (1-11) has external thread, and fastening with clamp nut (1-1); Dress experiment rock core (1-9) in the thin-walled Hastelloy tube (1-12); The upstream face of rock core (1-9) contacts with burden pressure plug (1-5); Burden pressure plug (1-5) stretches out burden pressure cylinder (1-3), and downstream end face contacts with downstream plug (1-15), downstream plug (1-15) external part cover (1-16).
3. Diagn analogue experiment installation as claimed in claim 2; It is characterized in that: burden pressure plug (1-5) is made up of the right cylinder of three sections different-diameters; Right section contacts with rock core (1-9), and diameter equals the diameter of rock core (1-9), and the stage casing contacts with burden pressure plug (1-5) inwall; Diameter is maximum, and left side section diameter minimum is also stretched out in burden pressure cylinder (1-3); There is a through hole at the center of burden pressure plug (1-5), and the outer end is rock core clamping device inlet (1-4), the inner upstream face that connects rock core (1-9); Rock core (1-9) downstream end face contacts with downstream plug (1-15); Downstream plug (1-15) is made up of the right cylinder of two sections different-diameters, and left side section contacts with rock core (1-9), and diameter equals the diameter of rock core (1-9); Right section diameter is less than left side section; And in block (1-13) and end cover (1-16), stretch out, there is a through hole at the center of downstream plug (1-15), and the outer end is rock core clamping device outlet (1-14); Block (1-13) retaining is being split between taper sheath (1-11) and the end cover (1-16).
4. Diagn analogue experiment installation as claimed in claim 3 is characterized in that: between burden pressure plug (1-5) and downstream plug (1-15) and the thin-walled Hastelloy tube (1-12) seal (1-8) is arranged all; Between burden pressure plug (1-5) and burden pressure cylinder (1-3) inwall O type circle (1-7) is arranged; Between the outer wall of burden pressure plug (1-5) and the burden pressure cylinder (1-3) O type circle (1-6) is arranged.
5. like any described Diagn analogue experiment installation of claim 1-4; It is characterized in that: described gas factor of porosity and permeability survey mechanism comprise the inlet gas circuit and outlet gas circuit of joining with rock core clamping device (1); Be connected with nitrogen cylinder (3-1), first solenoid valve (3-2), second solenoid valve (3-4), the 3rd solenoid valve (3-6), first isolation valve (3-5) in turn on the inlet gas circuit; Be provided with decompressor (3-3) between first solenoid valve (3-2) and second solenoid valve (3-4), be provided with pressure transducer (3-7) and gas between second solenoid valve (3-4) and the 3rd solenoid valve (3-6) and give contrast chamber (3-8); Be connected with second isolation valve (3-13), the 5th solenoid valve (3-12), pressure transducer (3-10) and gas meter (3-11) in turn on the outlet gas circuit; Be connected with the 4th solenoid valve (3-9) between inlet gas circuit and the outlet gas circuit.
6. like any described Diagn analogue experiment installation of claim 1-4; It is characterized in that: liquid flows into and measurement of liquid permeability mechanism comprises the inlet liquid road and outlet liquid road that joins with rock core clamping device (1), and inlet liquid road is connected with liquid charge pump (4-1), intermediate receptacle (4-2), preheating can (4-3), pressure transducer (4-4) and inlet liquid road isolation method (4-5) in turn; Outlet liquid road is connected with outlet liquid road isolation valve (4-6), pressure transducer (4-7), condenser (4-8), back pressure device (4-9) and fluid egress point (4-10) in turn; Be connected with backpressure pump (4-11), gas cylinder (4-12), back pressure table (4-13) on the back pressure device (4-9).
7. like any described Diagn analogue experiment installation of claim 1-4, it is characterized in that: burden pressure pressurized control mechanism (6) comprises burden pressure pump (6-1), pressure transducer (6-2), valve (6-3), the burden pressure table (6-4) that joins with the rock core clamping device.
8. like any described Diagn analogue experiment installation of claim 1-4, it is characterized in that: outlet fluid automatic continuous measuring sampling mechanism (5) comprises operator's console (5-9), is positioned at support (5-8), electronic balance (5-7) on the operator's console (5-9); Electronic balance (5-7) is provided with beaker frame (5-6), and beaker (5-5) is arranged on the beaker frame (5-6); Support (5-8) is provided with horizontal slide rail (5-3) and vertical slide rail (5-4); Laterally slide rail (5-3) is provided with transverse slider (5-1); Vertically slide rail (5-4) is installed on the transverse slider (5-1); Vertically slide rail (5-4) is provided with longitudinal sliding block (5-2), and fluid egress point (4-10) is installed on the longitudinal sliding block (5-2).
9. like any described Diagn analogue experiment installation of claim 1-4, it is characterized in that: described heating mechanism (2) comprises heating watt (2-1) and heat-insulation layer (2-2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011204971232U CN202502089U (en) | 2011-12-05 | 2011-12-05 | Device for diagenesis simulation experiments |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011204971232U CN202502089U (en) | 2011-12-05 | 2011-12-05 | Device for diagenesis simulation experiments |
Publications (1)
Publication Number | Publication Date |
---|---|
CN202502089U true CN202502089U (en) | 2012-10-24 |
Family
ID=47038700
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN2011204971232U Expired - Fee Related CN202502089U (en) | 2011-12-05 | 2011-12-05 | Device for diagenesis simulation experiments |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN202502089U (en) |
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102411044A (en) * | 2011-12-05 | 2012-04-11 | 中国石油大学(华东) | Diagenesis simulation experimental apparatus and method |
CN102830214A (en) * | 2012-08-15 | 2012-12-19 | 中国石油天然气股份有限公司 | Dynamic physical simulation experiment method and device for water invasion of fractured bottom water gas reservoir |
CN103335928A (en) * | 2013-05-30 | 2013-10-02 | 中国石油天然气集团公司 | Method and apparatus for measuring permeability of porous rock |
CN104034644A (en) * | 2014-06-11 | 2014-09-10 | 河海大学 | Multiphase seepage medium triaxial stress seepage coupling test device capable of rapidly measuring porosity |
CN105784965A (en) * | 2014-12-24 | 2016-07-20 | 中国石油天然气股份有限公司 | Method and system for testing geoscience evolution based on simulation experiment |
CN106872329A (en) * | 2016-12-30 | 2017-06-20 | 中国矿业大学 | A kind of test device and method of testing for surveying Thief zone rock Test Liquid Permeability of Core |
CN110187058A (en) * | 2019-05-13 | 2019-08-30 | 中国地质大学(武汉) | A kind of experimental provision of artificial synthesized fluid inclusion |
CN110196309A (en) * | 2019-05-09 | 2019-09-03 | 中国地质大学(武汉) | The Petrogenetic Simulation experimental provision that controlled fluid flows under a kind of high-temperature and high-pressure conditions |
CN111965085A (en) * | 2020-06-30 | 2020-11-20 | 南通市中京机械有限公司 | Back pressure device for rock core detection |
-
2011
- 2011-12-05 CN CN2011204971232U patent/CN202502089U/en not_active Expired - Fee Related
Cited By (12)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102411044A (en) * | 2011-12-05 | 2012-04-11 | 中国石油大学(华东) | Diagenesis simulation experimental apparatus and method |
CN102411044B (en) * | 2011-12-05 | 2014-04-30 | 中国石油大学(华东) | Diagenesis simulation experimental apparatus |
CN102830214A (en) * | 2012-08-15 | 2012-12-19 | 中国石油天然气股份有限公司 | Dynamic physical simulation experiment method and device for water invasion of fractured bottom water gas reservoir |
CN103335928A (en) * | 2013-05-30 | 2013-10-02 | 中国石油天然气集团公司 | Method and apparatus for measuring permeability of porous rock |
CN103335928B (en) * | 2013-05-30 | 2015-03-04 | 中国石油天然气集团公司 | Method and apparatus for measuring permeability of porous rock |
CN104034644A (en) * | 2014-06-11 | 2014-09-10 | 河海大学 | Multiphase seepage medium triaxial stress seepage coupling test device capable of rapidly measuring porosity |
CN105784965A (en) * | 2014-12-24 | 2016-07-20 | 中国石油天然气股份有限公司 | Method and system for testing geoscience evolution based on simulation experiment |
CN106872329A (en) * | 2016-12-30 | 2017-06-20 | 中国矿业大学 | A kind of test device and method of testing for surveying Thief zone rock Test Liquid Permeability of Core |
CN106872329B (en) * | 2016-12-30 | 2020-05-22 | 中国矿业大学 | Testing device and testing method for measuring liquid permeability of high permeability rock |
CN110196309A (en) * | 2019-05-09 | 2019-09-03 | 中国地质大学(武汉) | The Petrogenetic Simulation experimental provision that controlled fluid flows under a kind of high-temperature and high-pressure conditions |
CN110187058A (en) * | 2019-05-13 | 2019-08-30 | 中国地质大学(武汉) | A kind of experimental provision of artificial synthesized fluid inclusion |
CN111965085A (en) * | 2020-06-30 | 2020-11-20 | 南通市中京机械有限公司 | Back pressure device for rock core detection |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN102411044B (en) | Diagenesis simulation experimental apparatus | |
CN202502089U (en) | Device for diagenesis simulation experiments | |
CN204286989U (en) | A kind of shale gas device for testing diffusion coefficient | |
CN103510944B (en) | A kind of High Temperature High Pressure closure/prevent telling simulating-estimating device and its evaluation methodology | |
CN202882901U (en) | Experimental device for evaluating damage of rock core | |
CN203011791U (en) | Gas absorption/desorption testing device | |
CN105203705B (en) | A kind of heavy component deposition causes the method for testing of reservoir damage | |
CN109470616B (en) | Multifunctional seepage testing system for rock | |
CN206410978U (en) | A kind of tight rock gas phase relative permeability measurement apparatus | |
CN104122147A (en) | Dynamic slit width simulation system and method for slit | |
CN103743661A (en) | rock permeability testing device | |
CN102607991A (en) | Coal/shale adsorption capacity measuring device | |
CN205483902U (en) | Analytic simulating measurement setup of replacement and absorption | |
CN203164111U (en) | Holder and holder-based acidizing etching instrument | |
US10866165B2 (en) | System for automatic sampling and detection of on-line gas by high-temperature and high-pressure simulator and detection method thereof | |
CN202611688U (en) | Thickened oil reservoir thermal extraction linear physical simulation system | |
CN103234971A (en) | Acidic etching instrument and operation method thereof | |
CN105651912A (en) | Rock pyrologger and pyrolytic analysis method | |
CN112362485A (en) | Multifunctional comprehensive test system and test method for hydrate sediments | |
CN205844145U (en) | A kind of shale high temperature imbibition measurement apparatus | |
CN203732405U (en) | rock permeability testing device | |
CN114352238A (en) | Device and method for testing flow conductivity of natural gas hydrate production increasing seam | |
CN107367441B (en) | Device and method for high-precision contrast measurement of gas adsorption equilibrium time | |
CN111693676B (en) | System and method for measuring bubble point pressure of crude oil in porous medium | |
CN109425543A (en) | A kind of two-way breakthrough pressure measurement device of rock sample and method |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
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: 20121024 Termination date: 20151205 |
|
EXPY | Termination of patent right or utility model |