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Quantitative predication method for feldspar corrosion pore increasing volume

A prediction method and dissolution technology, applied in the field of oil and gas exploration and development, can solve problems such as inability to carry out comprehensive quantitative prediction, one-sidedness, and single prediction method.

Active Publication Date: 2018-08-03
YANGTZE UNIVERSITY
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] At present, in the process of feldspar dissolution research, the existing methods only consider the influence of unilateral factors of feldspar dissolution, such as building a model from a single aspect of temperature, solution pH value or sedimentation rate, but the dissolution is affected by many factors. Factors, cross-effects of various mineral species make the existing prediction methods single and one-sided, and cannot carry out comprehensive quantitative prediction

Method used

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  • Quantitative predication method for feldspar corrosion pore increasing volume
  • Quantitative predication method for feldspar corrosion pore increasing volume
  • Quantitative predication method for feldspar corrosion pore increasing volume

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Experimental program
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Effect test

Embodiment 1

[0083] The quantitative prediction method of feldspar dissolution and porosity increase comprises the following steps:

[0084] 1) Analyze the geological situation of the study area

[0085] Including regional geological background, basin type, structural features, background content of related strata

[0086] 2) Establish a diagenetic stage prediction model

[0087] (1) Determine the evolution period

[0088] According to the development of the overlying strata of the target layer, the evolution stages of the target layer in the geological history period are divided. The overlying stratum of the target layer L has i layers, which are marked from top to bottom: L1, L2, L3...Li-1 , Li, then there are i target layers in the evolution stages of the geological history period, according to the time evolution, the evolution stages of the target layer L are successively counted as Li, Li-1, Li-2...L2, L1;

[0089] (2) Determine the buried depth of different phases

[0090] On the...

Embodiment 2

[0135] Based on the above method, the quantitative prediction of feldspar dissolution and porosity increase in the second member of Dongying Formation in Bozhong sag is carried out. The specific method steps are as follows:

[0136] 1) Analyze the geological situation of the study area

[0137] Taking the second member of the Dongying Formation in the Bozhong Sag as an example, the structural contour maps of the second member of the Dongying Formation at each evolution stage were collected ( figure 1 , figure 2 , image 3 , Figure 4 ), fluid distribution map ( Figure 5 , Figure 6 , Figure 7 ),Geothermal( Figure 8 , Figure 9 , Figure 10 ) to determine the diagenetic stage

[0138] 2) Determine the diagenetic stage

[0139] (1) Determine the evolution period

[0140] The overlying strata of the second member of the Dongying Formation are Pingyuan Formation, Minghuazhen Formation, and Guantao Formation from top to bottom, which are marked as L1, L2, and L3 from...

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Abstract

The invention discloses a quantitative predication method for feldspar corrosion pore increasing volume. According to the invention, the level of influence on feldspar by dissolution effect during a pore increase acting process is taken into account; through lithogenous phase study of a target layer of a research zone, a temperature model and a depth model of feldspar corrosion are established. Through combination with research zone construction depth, diagenetic stages, fluid environments and influence factors of the feldspar during the dissolution acting process, a model formula is established from three aspects including feldspar types, Ph values and temperatures, feldspar dissolution volume and secondary pore increase or decrease condition are determined, so that feldspar corrosion pore increasing volume of a clastic rock reservoir is evaluated quantitatively and basis is provided for porosity evolution.

Description

technical field [0001] The invention relates to the technical field of oil and gas exploration and development, in particular to a quantitative prediction method for feldspar dissolution and porosity increase. Background technique [0002] With the continuous improvement of energy exploration and development research and modern testing technology, the research on the influence of diagenesis on reservoirs has been paid more and more attention. Dissolution in diagenesis can transform tight sandstone into reservoirs. During the process of dissolution, a large number of secondary pores can be generated, which is one of the most important constructive diagenesis for forming reservoirs. Played an important role in petroleum geological exploration. my country such as Sichuan Basin, Ordos Basin. Most of the reservoirs to be studied in the Songliao Basin have poor physical properties, mostly low-porosity and low-permeability formations, and the rock types are mostly tight sandstone...

Claims

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Application Information

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IPC IPC(8): G01V99/00
CPCG01V20/00
Inventor 夏敏尹太举钱文蹈李中超罗波波张锐王浩王萌萌张琪向祥恩严秀瑾
Owner YANGTZE UNIVERSITY