CN107679739A - A kind of method that marine site zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence - Google Patents

A kind of method that marine site zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence Download PDF

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CN107679739A
CN107679739A CN201710902941.8A CN201710902941A CN107679739A CN 107679739 A CN107679739 A CN 107679739A CN 201710902941 A CN201710902941 A CN 201710902941A CN 107679739 A CN107679739 A CN 107679739A
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张迎朝
甘军
朱继田
刘仕友
尤丽
刘平
杨希冰
范彩伟
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Abstract

The present invention relates to a kind of method that marine site zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence, marine site Songliao basin, geological knowledge degree are low, contrasted two-by-two by certain zone Hydrocarbon Formation Reservoirs key element (life, storage, lid, circle, fortune, guarantor) in marine oil-gas bearing basin, by to Hydrocarbon Formation Reservoirs significance level assignment, establish zone Factors of Oil-gas Reservoir-forming 6 × 6 and sentence knowledge matrix A, 6 × 6 characteristic vector value size for sentencing knowledge matrix A reflects raw, storage in zone, lid, circle, the significance level transported, protect control of six key elements to Hydrocarbon Formation Reservoirs.With reference to synthetic geology research, it is raw to exploration targets in zone, store up, cover, enclosing, transporting, being stored in probability assignment, weigh raw, storage, lid, circle, fortune, the significance level for protecting six key elements in zone, it is integrated ordered to carry out zone favorable exploration object, there is provided oily company's field survey deployment, decision-making.

Description

A kind of marine site zone Factors of Oil-gas Reservoir-forming sentence knowledge and favorable exploration object sequence Method
Method field
The present invention relates to the method that marine site zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence, it is used for Marine site oil-gas bearing basin zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence.
Background technology
Marine site oil-gas bearing basin zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence in qualitatively Matter-geophysics describes the stage, lacks application or sentences to know suitable for Factors of Oil-gas Reservoir-forming and determines with what favorable exploration object sorted Amount evaluation thinking, the Factors of Oil-gas Reservoir-forming for more lacking practicality sentence knowledge and favorable exploration object sequence evaluation method.
The domestic oily existing Factors of Oil-gas Reservoir-forming of company sentences knowledge and favorable exploration object sequence is more with traditional oil Based on geological theory, method, qualitative analysis propose zone Factors of Oil-gas Reservoir-forming and into hide six key element tabulars marking, The mode of summation etc. provides exploration targets sequence, and the Cheng Zangliu that do not formed has differentiation significance level for Hydrocarbon Formation Reservoirs will Plain evaluation method system, means of interpretation is relatively single, and intuitive is not strong, quantitative difference, needs, by practical studies, to be formed into There is the Cheng Zangliu factors evaluation methods of differentiation weight on the basis of the knowledge of regularity of Tibetan, be based particularly on Hydrocarbon Formation Reservoirs key element The evaluation method of petroleum geology modelling, improve low exploration activity field marine site oil-gas bearing basin zone Factors of Oil-gas Reservoir-forming and sentence Knowledge and the reliability of favorable exploration object sequence achievement.
Marine site oil-gas bearing basin zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence is used as petroleum resources An important step in exploration deployment, decision-making, it has also become China and the oil-gas exploration research of whole world marine site, exploration deployment are determined The popular domain of plan.Accurately, reliable marine site oil-gas bearing basin zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object Ranking results can provide the petroleum geology knowledge of regularity of key for marine oil company exploration deployment, decision-making, exploration targets is commented Valency foundation.Therefore, in terms of in marine site, oil-gas bearing basin zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence, Advanced, practical method, technology are badly in need of in scene in marine oil company.
The content of the invention
The invention aims to solve shortcoming present in existing method, and a kind of marine site zone oil gas proposed The method that key factor for biogas accumulation sentences knowledge and favorable exploration object sequence.
To achieve these goals, present invention employs following method scheme:
A kind of method that marine site zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence, including following step Suddenly:
S1. Structural belt Factors of Oil-gas Reservoir-forming sentences knowledge matrix A.
S2. 6 × 6 are asked for and sentences the characteristic vector for knowing the matrix A that S1 is obtained.
S3.6 × 6, which are sentenced, knows the matrix A consistency check that S1 is obtained.
S4. in zone there is probability assignment in exploration targets Hydrocarbon Formation Reservoirs key element.
S5. zone favorable exploration object is integrated ordered.
The contrast relative importance two-by-two that six big Hydrocarbon Formation Reservoirs key elements quantify is determined, according to petroleum geology feature, by letter Clean, easy-operating principle, six big Hydrocarbon Formation Reservoirs key elements contrast two-by-two, and of equal importance is 1, and it is 2 that the former is important compared with the latter, the former Substantially important compared with the latter is 3.
On the basis of zone Factors of Oil-gas Reservoir-forming sentences knowledge, comprehensive oily company technique personnel are to favorable exploration in zone Target geological evaluates achievement, carries out favorable exploration object sequence.
Beneficial effect of the present invention:The present invention is in THE WESTERN SOUTH CHINA SEA marine site Qiong-dongnan Basin profundal zone, Yingge-hai Basin and periphery More than 10 individual zone of basin has carried out practical application, there is provided oil-gas exploration deployment scheme suggestion, Yingge-hai Basin oriental realm high temperature Superpressure field, Qiong-dongnan Basin profundal zone center valley depositional trap group obtain natural gas important breakthrough, improve oil gas into It is horizontal to hide knowledge of regularity, exploration deployment level of decision-making is increased substantially.The present invention is a kind of effective oil-containing in marine site Gas basin area band Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sort method, and research understanding, exploration are explored for lifting Deployment and decision-making provide brand-new means and method.
Embodiment
Below in conjunction with the embodiment of the present invention, the method scheme in the embodiment of the present invention is clearly and completely retouched State, it is clear that described embodiment is only part of the embodiment of the present invention, rather than whole embodiments.
Example one:South Sea Yingge-hai Basin X areas deep high thermal field key factor for biogas accumulation selects with favorable exploration object Select
South Sea Yingge-hai Basin X areas deep is the emphasis exploratory area in high thermal field, by workflow of the present invention, method The knowledge of sentencing for successively having carried out zone key factor for biogas accumulation selects with favorable exploration object, proposes " reservoir-cap rock-trap and fortune Move " four key elements coupling control Tibetan knowledge of regularity, X13-2, X29-2, X13-1 are the favo(u)rable target of row's front three in zone, wherein X13-2, X13-1 have obtained the great discovery of exploration, and X29-2 is classified as lower step exploration deployment.Specific key factor for biogas accumulation sentences knowledges, favorably Exploration targets sequence step is as follows:
S1. establish zone Factors of Oil-gas Reservoir-forming and sentence knowledge matrix A
The contrast relative importance two-by-two that six big Hydrocarbon Formation Reservoirs key elements quantify is determined, according to petroleum geology feature, by letter Clean, easy-operating principle, for oil-gas pool forming process, six big Hydrocarbon Formation Reservoirs key elements contrast two-by-two, and of equal importance is 1, the former compared with Important the latter is 2, and it is 3 that the former is substantially important compared with the latter, and complex zone band geological research recognizes, will by six big Hydrocarbon Formation Reservoirs of zone Element two-by-two contrast assignment (also can use Delphi method by expert's assignment, obtain generally acknowledged assignment), establish the zone oil gas into Hide Dominated Factors 6 × 6 and sentence knowledge matrix A:
S2. 6 × 6 are taken to sentence the characteristic vector for knowing matrix A;
Ask for this and 6 × 6 sentence the geometrical mean for knowing the every row all elements of matrix A, WMi=∏ aij, i=1,2 ... 6;
WMi=(WM1,WM2,……WM6);
WMi=(WM1,WM2,……WM6)=1.5131 1.2599 0.6300 1.1225 1.2599 0.5888;
By WMiStandardization, Wi=WMi/∑WMi, i=1,2 ... 6.Obtain 6 × 6 sentence know matrix A characteristic vector W= (W1,W2,……W6)T, as Hydrocarbon Formation Reservoirs key element, raw, storage, lid, circle, fortune, the weight protected, reflect to zone Hydrocarbon Formation Reservoirs The significance level W of control action:
W=(W1,W2,……W6)=0.0697 0.2194 0.1954 0.2462 0.1707 0.0986;
S3.6 × 6, which are sentenced, knows matrix A consistency check
Consistency check purpose is to know matrix A with the presence or absence of judging inconsistent situation to sentencing, when being estimated to be error When, necessarily cause characteristic value and characteristic vector to have deviation.
Compatibility index C.I=(λmax- n)/(n-1), n=6 (six big Hydrocarbon Formation Reservoirs key elements, only sentence know matrix A it is complete When compatible, λmax=6);
λ in above formulamaxFor Maximum characteristic root;
AW is calculated first:
λmax=6.2107
C.I=(λmax- 6)/(6-1), usual compatibility index C.I<When 0.1, sentence knowledge matrix A and meet consistency check, Think that sentencing knowledge matrix A can be satisfied with.
C.I=0.0421,<0.1.
S4. in zone there is probability assignment in exploration targets Hydrocarbon Formation Reservoirs key element;
Comprehensive Yingge-hai Basin X areas deep high thermal field exploration success or failure reason, Natural Gas Reservoir Formation and exploration mesh Geologic assessment is marked, to 6 exploration targets lifes in zone, storage, lid, encloses, transport, be stored in probability assignment Pi=(P1,P2,…… P6), i=1,2 ... ... 6 (tables 1).
S5. zone favorable exploration object is integrated ordered;
Raw in the zone determined according to above-mentioned second step, storage, lid, circle, fortune, the significance level W=(W for protecting six key elements1, W2,……W6)T, exploration targets is raw in the 4th step zone, stores up, covers, enclosing, transporting, being stored in probability P=(P1,P2,……P6), enter The integrated ordered WP of row zone favorable exploration object, there is provided oily company's field survey deployment, decision-making:
WP=0.8759 0.9185 0.8471 0.8867 0.8451 0.8636
I.e. by favourable successively sequence successively X13-2, X29-2, X13-1, X17-2, X29-1, X17-1, wherein X13-2, X13-1 has obtained exploration and found, X29-2 is classified as lower step exploration deployment, illustrates that the present invention is sentenced based on zone Factors of Oil-gas Reservoir-forming Favorable exploration object ranking results and the exploration practices of knowledge meet.
Example two:South Sea Qiong-dongnan Basin profundal zone Factors of Oil-gas Reservoir-forming selects with favorable exploration object
Qiong-dongnan Basin profundal zone is Northern Part of South China Sea emphasis natural gas exploratory area, first laggard by workflow of the present invention, method Sentencing for profundal zone key factor for biogas accumulation of having gone is known and favorable exploration object selection, proposition " hydrocarbon source rock-reservoir-trap and migration " Knowledge of regularity is hidden in the coupling control of four key elements, and X17-2, X25-1, X18-1, X18-2, X1-1, X25-2 are that first five is arranged in profundal zone Favo(u)rable target, wherein X17-2, X25-1, X18-1, X18-2 have obtained the great discovery of exploration, and it is deep that X25-2, X1-1 etc. is classified as lower step Pool exploration deployment.It is as follows that specific key factor for biogas accumulation sentences knowledge, favorable exploration object sequence step:
S1. Structural belt Factors of Oil-gas Reservoir-forming sentences knowledge matrix A
The contrast relative importance two-by-two that six big Hydrocarbon Formation Reservoirs key elements quantify is determined, according to petroleum geology feature, by letter Clean, easy-operating principle, for oil-gas pool forming process, six big Hydrocarbon Formation Reservoirs key elements contrast two-by-two, and of equal importance is 1, the former compared with Important the latter is 2, and it is 3 that the former is substantially important compared with the latter, and complex zone band geological research recognizes, will by six big Hydrocarbon Formation Reservoirs of zone Element two-by-two contrast assignment (also can use Delphi method by expert's assignment, obtain generally acknowledged assignment), establish the zone oil gas into Hide Dominated Factors 6 × 6 and sentence knowledge matrix A:
S2 asks for 6 × 6 and sentences the characteristic vector for knowing matrix A;
Ask for this and 6 × 6 sentence the geometrical mean for knowing the every row all elements of matrix A, WMi=∏ aij, i=1,2 ... 6;
WMi=(WM1,WM2,……WM6);
WMi=(WM1,WM2,……WM6)=1.5131 1.2599 0.6300 1.1225 1.2599 0.5888;
By WMiStandardization, Wi=WMi/∑WMi, i=1,2 ... 6.Obtain 6 × 6 sentence know matrix A characteristic vector W= (W1,W2,……W6)T, as Hydrocarbon Formation Reservoirs key element, raw, storage, lid, circle, fortune, the weight protected, reflect to zone Hydrocarbon Formation Reservoirs The significance level W of control action:
W=(W1,W2,……W6)=0.2374 0.1977 0.0988 0.1761 0.1977 0.0924;
S3.6 × 6, which are sentenced, knows matrix A consistency check
Consistency check purpose is to know matrix A with the presence or absence of judging inconsistent situation to sentencing, when being estimated to be error When, necessarily cause characteristic value and characteristic vector to have deviation.
Compatibility index C.I=(λmax- n)/(n-1), n=6 (six big Hydrocarbon Formation Reservoirs key elements, only sentence know matrix A it is complete When compatible, λmax=6);
λ in above formulamaxFor Maximum characteristic root;
AW is calculated first:
λmax=6.0564
S4. in zone there is probability assignment in exploration targets Hydrocarbon Formation Reservoirs key element;
Comprehensive Qiong-dongnan Basin deepwater exploration success or failure reason, Natural Gas Reservoir Formation and exploration mesh
Geologic assessment is marked, to 12 exploration targets lifes in zone, storage, lid, encloses, transport, be stored in probability assignment Pi=(P1, P2,……P6), i=1,2 ... ... 12 (tables 2).
S5. zone favorable exploration object is integrated ordered;
Raw in the zone determined according to above-mentioned second step, storage, lid, circle, fortune, the significance level W=(W for protecting six key elements1, W2,……W6)T, exploration targets is raw in the 4th step zone, stores up, covers, enclosing, transporting, being stored in probability P=(P1,P2,……P6), enter The integrated ordered WP of row zone favorable exploration object, there is provided oily company's field survey deployment, decision-making:WP=0.9218 0.8268 0.8893 0.95 0.8940 0.9184 0.8349 0.8214 0.8310 0.8901 0.8901 0.8011 i.e. by favourable Successively sequence successively Y17-2, Y25-1, Y18-2, Y18-1, Y1-1/Y32-1, Y25-2, X8-1, Y8-3, X31-1, Y8-2, Y3-1, wherein Y17-2, Y25-1, Y18-1, Y18-2 have obtained exploration and have found that Y1-1/Y32-1, Y25-2, X8-1, Y8-3 are classified as Exploration deployment is walked under profundal zone, illustrates that the present invention sentences having for knowledge based on marine site oil-gas bearing basin zone Factors of Oil-gas Reservoir-forming Sharp exploration targets ranking results meet with exploration practices.
More than, it is only the preferable embodiment of the present invention, but protection scope of the present invention is not limited thereto, and is appointed What be familiar with the method personnel in this method field the invention discloses method in the range of, the method according to the invention scheme and its Inventive concept is subject to equivalent substitution or change, should all be included within the scope of the present invention.

Claims (3)

1. a kind of method that marine site zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence, it is characterised in that:Bag Include following steps:
S1. Structural belt Factors of Oil-gas Reservoir-forming sentences knowledge matrix A;
S2. 6 × 6 are asked for and sentences the characteristic vector for knowing the matrix A that S1 is obtained;
S3.6 × 6, which are sentenced, knows the matrix A consistency check that S1 is obtained;
S4. in zone there is probability assignment in exploration targets Hydrocarbon Formation Reservoirs key element;
S5. zone favorable exploration object is integrated ordered.
2. the method that zone Factors of Oil-gas Reservoir-forming in marine site sentences knowledge and favorable exploration object sequence according to claim 1, Characterized in that, determining the contrast relative importance two-by-two that six big Hydrocarbon Formation Reservoirs key elements quantify, according to petroleum geology feature, press Succinctly, easy-operating principle, six big Hydrocarbon Formation Reservoirs key elements contrast two-by-two, and of equal importance is 1, and it is 2 that the former is important compared with the latter, the former Substantially important compared with the latter is 3.
3. the method that zone Factors of Oil-gas Reservoir-forming in marine site sentences knowledge and favorable exploration object sequence according to claim 1, Characterized in that, on the basis of zone Factors of Oil-gas Reservoir-forming sentences knowledge, comprehensive oily company technique personnel in zone to favorably surveying Target geological evaluation achievement is visited, carries out favorable exploration object sequence.
CN201710902941.8A 2017-09-29 2017-09-29 A kind of method that marine site zone Factors of Oil-gas Reservoir-forming sentences knowledge and favorable exploration object sequence Pending CN107679739A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109087015A (en) * 2018-08-14 2018-12-25 中国石油大学(华东) Middle Paleozoic group Deep Oil And Gas Exploration exploration play integrated evaluating method
CN112330109A (en) * 2020-10-22 2021-02-05 中国石油大学(华东) Quantitative characterization method, system and equipment for geological comprehensive evaluation of oil and gas exploration zone
CN116540302A (en) * 2023-07-04 2023-08-04 中国石油大学(华东) Method for quantitatively evaluating effectiveness of oil and gas reservoir trapped on source

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104239666A (en) * 2013-06-20 2014-12-24 中国石油化工股份有限公司 Analytic hierarchy process based coal bed methane comprehensive evaluation method
CN104657909A (en) * 2014-11-21 2015-05-27 国家电网公司 Analytic hierarchy process based comprehensive evaluation method for electric energy loss of medium and low voltage distribution network
CN105117820A (en) * 2015-07-29 2015-12-02 江苏大学 Grain storage green degree evaluating method based on DEA-AHP

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104239666A (en) * 2013-06-20 2014-12-24 中国石油化工股份有限公司 Analytic hierarchy process based coal bed methane comprehensive evaluation method
CN104657909A (en) * 2014-11-21 2015-05-27 国家电网公司 Analytic hierarchy process based comprehensive evaluation method for electric energy loss of medium and low voltage distribution network
CN105117820A (en) * 2015-07-29 2015-12-02 江苏大学 Grain storage green degree evaluating method based on DEA-AHP

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
汪少勇等: "层次分析法在致密油有利区优选中的应用", 《地球科学进展》 *

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109087015A (en) * 2018-08-14 2018-12-25 中国石油大学(华东) Middle Paleozoic group Deep Oil And Gas Exploration exploration play integrated evaluating method
CN109087015B (en) * 2018-08-14 2021-10-15 中国石油大学(华东) Comprehensive evaluation method for favorable zone of deep oil-gas exploration in middle ancient world
CN112330109A (en) * 2020-10-22 2021-02-05 中国石油大学(华东) Quantitative characterization method, system and equipment for geological comprehensive evaluation of oil and gas exploration zone
CN116540302A (en) * 2023-07-04 2023-08-04 中国石油大学(华东) Method for quantitatively evaluating effectiveness of oil and gas reservoir trapped on source
CN116540302B (en) * 2023-07-04 2023-11-10 中海石油(中国)有限公司深圳分公司 Method for quantitatively evaluating effectiveness of oil and gas reservoir trapped on source

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