CN108590642A - A kind of fracture hole type carbonate reservoir three-dimensional physical model filling design method - Google Patents

A kind of fracture hole type carbonate reservoir three-dimensional physical model filling design method Download PDF

Info

Publication number
CN108590642A
CN108590642A CN201810434518.4A CN201810434518A CN108590642A CN 108590642 A CN108590642 A CN 108590642A CN 201810434518 A CN201810434518 A CN 201810434518A CN 108590642 A CN108590642 A CN 108590642A
Authority
CN
China
Prior art keywords
filling
porosity
physical model
carbonate reservoir
hole type
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
CN201810434518.4A
Other languages
Chinese (zh)
Other versions
CN108590642B (en
Inventor
张烈辉
路广
赵玉龙
李新华
汪彦
邓光校
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.)
Southwest Petroleum University
Original Assignee
Southwest Petroleum University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Southwest Petroleum University filed Critical Southwest Petroleum University
Priority to CN201810434518.4A priority Critical patent/CN108590642B/en
Publication of CN108590642A publication Critical patent/CN108590642A/en
Application granted granted Critical
Publication of CN108590642B publication Critical patent/CN108590642B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B49/00Testing the nature of borehole walls; Formation testing; Methods or apparatus for obtaining samples of soil or well fluids, specially adapted to earth drilling or wells

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Geology (AREA)
  • Mining & Mineral Resources (AREA)
  • Physics & Mathematics (AREA)
  • Environmental & Geological Engineering (AREA)
  • Fluid Mechanics (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Consolidation Of Soil By Introduction Of Solidifying Substances Into Soil (AREA)

Abstract

The present invention discloses a kind of fracture hole type carbonate reservoir three-dimensional physical model filling design method, includes the following steps:Step S1, the three-dimensional lumen physical model of structure fracture hole type carbonate reservoir target area;Step S2, filling position, filling internal structure and vertical physical property distribution characteristics are determined;Step S3, filling operation is determined according to Seismic reflection character, log explanation, Geologic modeling porosity model;Step S4, charges and cementing agent are selected to be filled three-dimensional lumen physical model.This method can obtain consistent and can react the filling model of fractured-cavernous carbonate reservoir Complex Flows feature with the practical underground space morphosis of oil reservoir, filling property.

Description

A kind of fracture hole type carbonate reservoir three-dimensional physical model filling design method
Technical field
The invention belongs to the physical analogy field of Oil-Gas Field Development Engineering more particularly to a kind of fracture hole type carbonate reservoirs three It ties up physical model and fills design method.
Background technology
Can seam hole structure, connectivity types, the oil water relation of underground understand that understanding is that can fractured-cavernous carbonate reservoir Realize one of the basis of Efficient Development.There are the multiple fluids flow channels such as crack, solution cavity in fractured-cavernous carbonate reservoir, and Crack, solution cavity size is big, dimensional variation is also big, and morphological development is various, distribution is random.Thus lead to the flowing shape of grease therebetween State is extremely complex, and there are a variety of flow performances such as seepage flow, non linear fluid flow through porous medium, Guan Liu, surface current, convection current and Coupled Flow.Accumulation of Hydrocarbon It is also that extremely complex, traditional evaluating production capacity method is mainly referred from sandstone oil reservoir to produce rule, at present still for fracture-pore reservoir Without efficient evaluating production capacity method.These factors make this kind of oil reservoir development level not high, to fracture and vug carbonate reservoir Efficient Development brings huge challenge.
Since oil reservoir many places are in thousands of meters of underground depth, and it is huge, the true of fracture hole oil reservoir can not be observed directly Situation can not see the connection situation between well location.Therefore, it is necessary to carry out the indoor object of fractured-cavernous carbonate reservoir The research for managing simulation, by meet to fracture-pore reservoir Reservoir Body structure, in the form of, the researchs such as connection situation and internal filling property Needs.
And physical model to reaching similar to the true reservoir properties in underground, it is necessary to meet two big key points:First, seam The three-dimensional structure form of hole body;Second is that the inside Filling Characteristics of fracture hole body.At present for fracture and cave reservoir in physical model inside Packing character Quality Research has not been reported, and in known document, is divided into two kinds for the filling of fracture-pore reservoir physical model: It is completely hollow inside solution cavity, only with piping connection between solution cavity first, not filling.This model only reflects cavity middle pipe stream Flowing property, the gravitational differentiation phenomenon of grease is apparent, the characteristics of not meeting the true oil reservoir in underground there are a variety of flow patterns;Two It is arbitrary filling, there is no effective foundations to control the degree of its filling, so this filling cannot carry out its validity Verification.Thus presently done physical model is without reliability.
In fractured-cavernous carbonate reservoir always technology hardly possible is made to carry out the fracture hole physical model of laboratory experiment Topic.In fact, should say in absolute sense that completely hollow solution cavity is not present, only how many charges, filling operation The opposite problem of height, but it is filled with that full, the solution cavity of remaining space is not existing, for this angle, unfilled It is opposite.Therefore, filling operation is summarized as part filling (filling operation is different) and two class of full-filling.The filling journey of solution cavity Degree determines its storage and collection performance, and the solution cavity of part filling is most effective reservoir.The importance of filling property research is:It is molten The Filling Characteristics in hole directly affect solution cavity preserve and transfer ability, therefore, pay close attention to solution cavity inside fill to such reservoir Efficient and fine development have important practical significance.So the Packing character of fracture-pore reservoir is not studied, obtained by the model Experimental result cannot be combined with actual production, cannot reflect oil reservoir real features.
If can not characterize fractured-cavernous carbonate reservoir labyrinth feature and fill the physical model of property, institute The physical analogy done cannot react the real features of oil reservoir, also cannot effectively instruct the exploitation of such oil reservoir.Therefore, It is proposed it is a kind of can make characterization fractured-cavernous carbonate reservoir complex characteristic and fill property physical model method very It is necessary to.
Invention content
The present invention mainly overcomes shortcoming in the prior art, proposes a kind of fracture hole type carbonate reservoir three dimensional physical Model fills design method, can be obtained by this method consistent with the practical underground space morphosis of oil reservoir, filling property And the filling model of fractured-cavernous carbonate reservoir Complex Flows feature can be reacted.
The present invention solves the technical solution that above-mentioned technical problem is provided:A kind of fracture hole type carbonate reservoir three dimensional physical Model fills design method, includes the following steps;
Step S1, the three-dimensional lumen physical model of structure fracture hole type carbonate reservoir target area;
Step S2, filling position, filling internal structure and vertical physical property distribution characteristics are determined;
Step S3, filling journey is determined according to Seismic reflection character, log explanation, Geologic modeling porosity model Degree;
Step S4, charges and cementing agent are selected to be filled three-dimensional lumen physical model.
Further, the step S3 the specific steps are:
The structure of fracture hole type carbonate reservoir target area is judged;
When the structure type of fracture hole type carbonate reservoir target area is solution cavity, filling journey is determined by the following method Degree;
When solution cavity is single well-controlled, filling extent is determined by following formula;
Wherein the fracture hole body volume of single well-controlled determines that single well-controlled liquid volume passes through dynamic by application volume engraving method State reserves calculating method, water drive diminishing method determine;
When solution cavity has log, explain to obtain porosity by log, then filling operation is obtained by porosity, Its filling extent is the difference of 1 and porosity;
When solution cavity is without log, porosity is obtained by assignment method, then filling operation is obtained by porosity, filled Degree is the difference of 1 and porosity;
When the structure type of fracture hole type carbonate reservoir target area is crack, corrosion hole, pass through log solution Release, Geologic modeling porosity model obtains filling operation to determine porosity, then by porosity, filling extent is 1 and hole The difference of porosity.
Further, wherein assignment method determines the specific steps of filling extent:It is surveyed according to the existing emptying well in target area The porosity of well curve interpretation carries out subregion, point band analysis, and analysis result average value carries out assignment and obtains porosity, finally obtains Filling extent.
Further, the step S4 the specific steps are:
Step S401, according to the vertical feature of oil reservoir lithology transitivity, charges and cementing agent are selected;
Step S402, it analyzes filling position, filling internal structure and vertical physical property distribution characteristics in step S2 And obtain analysis result, then by position and internal vertical physical property distributed architecture, determine the filling positions of charges, size distribution and Degree of consolidation;
Step S403, filler is obtained according to the filling extent and three-dimensional lumen physical model volume that are obtained in step S3 Volume, the volume of filler are the product of filling extent and three-dimensional lumen physical model volume;
Step S404, the data obtained according to above-mentioned steps carry out the three-dimensional lumen physical model built in step S1 Filling;
Step S405, after filling, fixing screws and the sealing of butt joint gluing is added in related installation position, spiral shell is used in combination Bar fixes entire model.
The beneficial effects of the invention are as follows:The present invention can obtain and the practical underground space morphosis of oil reservoir, filling property Filling model consistent and that fractured-cavernous carbonate reservoir Complex Flows feature can be reacted.
Specific implementation mode
Further description is done to the present invention with reference to embodiment.
A kind of fracture hole type carbonate reservoir three-dimensional physical model of the present invention fills design method, includes the following steps;
Step S1, the three-dimensional lumen physical model of structure fracture hole type carbonate reservoir target area;
Wherein fracture-pore reservoir can be divided into according to geologic setting:Weathering crust, disconnected melt and ancient stream channel three classes, respectively develop Structure of preserving be different, judge in seismic test data and delimit target area;Pass through existing method structure again The cavity physical model of fracture-pore reservoir is built, and interwell communication relationship is determined according to the peak value of tracer curve;
Step S2, filling position, filling internal structure and vertical physical property distribution characteristics are determined;
Fracture-pore reservoir can be divided into according to geologic setting:Weathering crust, disconnected melt and ancient stream channel three classes.According to the need of research It wants, can will also be extracted in three classes geologic setting and different preserve structure.Wherein based on solution cavity, crack, corrosion hole.Wherein Solution cavity is most good reservoir, crack and the reservoir and flow space that dissolution pore is time level-one.It is often only simple in previous model Solution cavity is depicted, and the reservoir and flow space of secondary level-one is not depict.And dissolution pore and crack are different from addition to morphosis Outside solution cavity.Its porosity, is reflected on physical model that namely porosity is different.And in the list of this background of ancient stream channel In member, the filling of slug formula is often showed, the solution cavity body of development is to fill the slug formula of solution cavity and not-filling solution cavity less to divide Cloth.There is a filling position in the filling of in summary each point, model.Former reservoir pore is distinguished to fill position Spend different development positions.
When filling design, it is reference with reference to seismic profile, geologic section and the geological condition that crude oil is hidden, determines filling part Position.
The filling series and filling phase for analyzing target area, rock vertical on filling series is judged by stratum vertical profile Property combination and lithologic structure feature.There is the dust of certain sorting rounding in bottom, the gap between dust is cementing by silt, physical property Difference;Middle part is the alternating layers of sand mud and dust, shows positive grain sequence, and compaction is weaker, has higher porosity, is potential Reservoir Body;Usually develop the country rock of crazing in top, it may have preferable physical property.Under normal circumstances, whole inside solution cavity Upper filling model shows the positive grain sequence or multiple positive grain sequence characteristics that dust is alternately present with sand mud;
Step S3, filling journey is determined according to Seismic reflection character, log explanation, Geologic modeling porosity model Degree;
Step S4, charges and cementing agent are selected to be filled three-dimensional lumen physical model.
In the present embodiment, the step S3 the specific steps are:
The structure of fracture hole type carbonate reservoir target area is judged;
When the structure type of fracture hole type carbonate reservoir target area is solution cavity, filling journey is determined by the following method Degree;
When solution cavity is single well-controlled, filling extent is determined by following formula;
Wherein the fracture hole body volume of single well-controlled determines that single well-controlled liquid volume passes through dynamic by application volume engraving method State reserves calculating method, water drive diminishing method determine;
When solution cavity has log, explain to obtain porosity by log, then filling operation is obtained by porosity, Its filling extent is the difference of 1 and porosity;
When solution cavity is without log, porosity is obtained by assignment method, then filling operation is obtained by porosity, filled Degree is the difference of 1 and porosity;
Wherein assignment method determines the specific steps of filling extent:According to the existing emptying borehole logging tool curve interpretation in target area Porosity carries out subregion (weathering crust, ancient stream channel, disconnected solution), a point band (Epi-karst, vertical diafiltration band, phreatic zone) is analyzed, Analysis result average value carries out assignment and obtains porosity, finally obtains filling extent;
When the structure type of fracture hole type carbonate reservoir target area is crack, corrosion hole, pass through log solution Release, Geologic modeling porosity model obtains filling operation to determine porosity, then by porosity, filling extent is 1 and hole The difference of porosity.
In the present embodiment, the step S4 the specific steps are:
Step S401, according to the vertical feature of oil reservoir lithology transitivity, charges and cementing agent are selected;
Step S402, it analyzes filling position, filling internal structure and vertical physical property distribution characteristics in step S2 And obtain analysis result, then by position and internal vertical physical property distributed architecture, determine the filling positions of charges, size distribution and Degree of consolidation;
Step S403, filler is obtained according to the filling extent and three-dimensional lumen physical model volume that are obtained in step S3 Volume, the volume of filler are the product of filling extent and three-dimensional lumen physical model volume;
Step S404, the data obtained according to above-mentioned steps carry out the three-dimensional lumen physical model built in step S1 Filling;
Step S405, after filling, fixing screws and the sealing of butt joint gluing is added in related installation position, spiral shell is used in combination Bar fixes entire model.
To sum up, this method can obtain consistent and can be anti-with the practical underground space morphosis of oil reservoir, filling property Answer the filling model of fractured-cavernous carbonate reservoir Complex Flows feature.
The above is not intended to limit the present invention in any form, although the present invention is taken off by above-described embodiment Show, however, it is not intended to limit the invention, any person skilled in the art, is not departing from technical solution of the present invention range It is interior, when the technology contents using the disclosure above make a little equivalent embodiments changed or be modified to equivalent variations, as long as being not Be detached from technical solution of the present invention content, according to the technical essence of the invention to made by above example it is any it is simple modification, Equivalent variations and modification, in the range of still falling within technical solution of the present invention.

Claims (4)

1. a kind of fracture hole type carbonate reservoir three-dimensional physical model fills design method, which is characterized in that include the following steps;
Step S1, the three-dimensional lumen physical model of structure fracture hole type carbonate reservoir target area;
Step S2, filling position, filling internal structure and vertical physical property distribution characteristics are determined;
Step S3, filling operation is determined according to Seismic reflection character, log explanation, Geologic modeling porosity model;
Step S4, charges and cementing agent are selected to be filled three-dimensional lumen physical model.
2. a kind of fracture hole type carbonate reservoir three-dimensional physical model according to claim 1 fills design method, feature Be, the step S3 the specific steps are:
The structure of fracture hole type carbonate reservoir target area is judged;
When the structure type of fracture hole type carbonate reservoir target area is solution cavity, filling extent is determined by the following method;
(1) when solution cavity is single well-controlled, filling extent is determined by following formula;
Wherein the fracture hole body volume of single well-controlled determines that single well-controlled liquid volume is stored up by dynamic by application volume engraving method Gauge algorithm, water drive diminishing method determine;
(2) it when solution cavity has log, explains to obtain porosity by log, then filling operation is obtained by porosity, Its filling extent is the difference of 1 and porosity;
(3) when solution cavity is without log, porosity is obtained by assignment method, then filling operation is obtained by porosity, filled Degree is the difference of 1 and porosity;
When the structure type of fracture hole type carbonate reservoir target area is crack, corrosion hole, explained by log, Matter models porosity model to determine porosity, then obtains filling operation by porosity, and filling extent is 1 and porosity Difference.
3. a kind of fracture hole type carbonate reservoir three-dimensional physical model according to claim 2 fills design method, feature It is, wherein assignment method determines the specific steps of filling extent:According to the hole of the existing emptying borehole logging tool curve interpretation in target area Porosity carries out subregion, point band analysis, and analysis result average value carries out assignment and obtains porosity, finally obtains filling extent.
4. a kind of fracture hole type carbonate reservoir three-dimensional physical model according to claim 3 fills design method, feature Be, the step S4 the specific steps are:
Step S401, according to the vertical feature of oil reservoir lithology transitivity, charges and cementing agent are selected;
Step S402, filling position, filling internal structure and vertical physical property distribution characteristics in step S2 are analyzed and is obtained To analysis result, then by position and internal vertical physical property distributed architecture, the filling positions of charges, size distribution and cementing are determined Degree;
Step S403, the body of filler is obtained according to the filling extent and three-dimensional lumen physical model volume that are obtained in step S3 Product, the volume of filler are the product of filling extent and three-dimensional lumen physical model volume;
Step S404, the data obtained according to above-mentioned steps are filled the three-dimensional lumen physical model built in step S1;
Step S405, after filling, fixing screws and the sealing of butt joint gluing is added in related installation position, are used in combination screw rod will Entire model is fixed.
CN201810434518.4A 2018-05-09 2018-05-09 A kind of fracture hole type carbonate reservoir three-dimensional physical model filling design method Active CN108590642B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810434518.4A CN108590642B (en) 2018-05-09 2018-05-09 A kind of fracture hole type carbonate reservoir three-dimensional physical model filling design method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810434518.4A CN108590642B (en) 2018-05-09 2018-05-09 A kind of fracture hole type carbonate reservoir three-dimensional physical model filling design method

Publications (2)

Publication Number Publication Date
CN108590642A true CN108590642A (en) 2018-09-28
CN108590642B CN108590642B (en) 2019-02-22

Family

ID=63635827

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201810434518.4A Active CN108590642B (en) 2018-05-09 2018-05-09 A kind of fracture hole type carbonate reservoir three-dimensional physical model filling design method

Country Status (1)

Country Link
CN (1) CN108590642B (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112282741A (en) * 2019-07-24 2021-01-29 中国石油化工股份有限公司 Target reservoir well testing analysis method, computer storage medium and computer equipment
CN114215513A (en) * 2022-02-21 2022-03-22 中海油研究总院有限责任公司 Quantitative determination method, device, medium and equipment for buried hill oil reservoir mode
CN114427427A (en) * 2020-09-24 2022-05-03 中国石油化工股份有限公司 Shrinkage split flow method for improving sweep range of fracture-cavity oil reservoir

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102053026A (en) * 2009-10-30 2011-05-11 中国石油化工股份有限公司 Material and method for manufacturing carbonate cave oil reservoir physical model
CN202596722U (en) * 2012-06-07 2012-12-12 中国石油大学(北京) Physical simulation experiment device of fractured-vuggy oil deposit independent karst cave unit
CN103615241A (en) * 2013-12-10 2014-03-05 西南石油大学 Fully-three-dimensional simulated visualized displacement simulation experiment system of fractured-vuggy oil reservoir
CN203685173U (en) * 2014-01-17 2014-07-02 中国石油化工股份有限公司石油勘探开发研究院 Seam cave type carbonate reservoir three-dimensional macro simulation and physical simulation experiment device
CN104727788A (en) * 2015-02-06 2015-06-24 西南石油大学 Three-dimensional single-well gas injection oil replacement simulation experiment device for fracture-cavity reservoir
CN105178926A (en) * 2015-10-28 2015-12-23 中国石油大学(北京) Fracture-cave carbonate reservoir physical model and displacement simulation experimental device and system

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102053026A (en) * 2009-10-30 2011-05-11 中国石油化工股份有限公司 Material and method for manufacturing carbonate cave oil reservoir physical model
CN202596722U (en) * 2012-06-07 2012-12-12 中国石油大学(北京) Physical simulation experiment device of fractured-vuggy oil deposit independent karst cave unit
CN103615241A (en) * 2013-12-10 2014-03-05 西南石油大学 Fully-three-dimensional simulated visualized displacement simulation experiment system of fractured-vuggy oil reservoir
CN203685173U (en) * 2014-01-17 2014-07-02 中国石油化工股份有限公司石油勘探开发研究院 Seam cave type carbonate reservoir three-dimensional macro simulation and physical simulation experiment device
CN104727788A (en) * 2015-02-06 2015-06-24 西南石油大学 Three-dimensional single-well gas injection oil replacement simulation experiment device for fracture-cavity reservoir
CN105178926A (en) * 2015-10-28 2015-12-23 中国石油大学(北京) Fracture-cave carbonate reservoir physical model and displacement simulation experimental device and system

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
胡向阳 等: "塔河油田缝洞型碳酸盐岩油藏溶洞充填特征", 《特种油气藏》 *
邹婧芸 等: "塔河油田奥陶系碳酸盐岩储层古溶洞充填特征与垂向物性分布", 《延安大学学报(自然科学版)》 *

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112282741A (en) * 2019-07-24 2021-01-29 中国石油化工股份有限公司 Target reservoir well testing analysis method, computer storage medium and computer equipment
CN112282741B (en) * 2019-07-24 2024-05-14 中国石油化工股份有限公司 Target reservoir well test analysis method, computer storage medium and computer equipment
CN114427427A (en) * 2020-09-24 2022-05-03 中国石油化工股份有限公司 Shrinkage split flow method for improving sweep range of fracture-cavity oil reservoir
CN114215513A (en) * 2022-02-21 2022-03-22 中海油研究总院有限责任公司 Quantitative determination method, device, medium and equipment for buried hill oil reservoir mode
CN114215513B (en) * 2022-02-21 2022-05-10 中海油研究总院有限责任公司 Quantitative discrimination method, device, medium and equipment for buried hill reservoir mode
WO2023155501A1 (en) * 2022-02-21 2023-08-24 中海油研究总院有限责任公司 Quantitative determination method and apparatus for buried hill oil reservoir mode, and medium and device

Also Published As

Publication number Publication date
CN108590642B (en) 2019-02-22

Similar Documents

Publication Publication Date Title
CN106285646B (en) Drilling well loss horizon recognition methods based on multi-information fusion
CN104914481B (en) A kind of integrated evaluating method of Volcanic Area fault sealing property
Baker et al. Practical reservoir engineering and characterization
CN104747180B (en) A kind of fracture-pore reservoir for waterflooding extraction analyzes method and application thereof
US8983818B2 (en) Method for characterizing the fracture network of a fractured reservoir and method for developing it
CN114372352B (en) Method for predicting peak regulation capacity of gas storage of complex fault block oil reservoir through seepage-temperature double-field coupling numerical simulation
CN108590642B (en) A kind of fracture hole type carbonate reservoir three-dimensional physical model filling design method
CA2890817C (en) System, method and computer program product for determining placement of perforation intervals using facies, fluid boundaries, geobodies and dynamic fluid properties
US9810042B1 (en) Oil well simulation tool
Yielding Trapping of buoyant fluids in fault-bound structures
CN109061766B (en) Quantitative evaluation method for lateral flow-dividing capacity of oil gas prepared by sand-fracturing configuration
CN105404972A (en) Method for reservoir development uncertainty research and risk control
Lucia et al. Geological/stochastic mapping of heterogeneity in a carbonate reservoir
Cander Finding sweet spots in shale liquids and gas plays:(with lessons from the eagle ford shale)
Dommisse et al. The value of building a multiscale, regional geomodel for reserves assessment of the Midland Basin
CN106285657B (en) For determining that the method and system of collapsing event occur for fracture-pore reservoir solution cavity
Halafawi et al. Prediction modeling for combination drive reservoir performance
Smart Subsidiary conduit systems: a hiatus in aquifer monitoring and modelling
Al-Hadhrami et al. A Giant Reservoir is Talking and we are Listening: characterisation and Understanding of a Giant Fractured Reservoir in Oman with Extensive Years of Production
Adeniyi et al. Estimation of Bypassed Oil Volume after Waterflooding an Undersaturated Reservoir
CN110244357A (en) A kind of structure destruction type Foregone pool sentences knowledge method
Clayton et al. Ubit field rejuvenation: a case history of reservoir management of a giant oil field, offshore Nigeria
CN113738344B (en) Oil-water interface depth determining method and early warning method for preventing production well water channeling
Yu et al. Integration of Formation Pressure Data to Improve Reservoir Characterization and Reservoir Management in PL19-3 Oil Field, Bohai Bay
Montaron et al. Cave geomorphology and its effects on oil recovery factors in Tarim karst reservoirs, west China

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant