Method for evaluating water containing characteristic and occurrence state of compact sandstone storage layer aperture

A technology for tight sandstone reservoirs and occurrence states, applied in water resource assessment, suspension and porous material analysis, measurement devices, etc. problem, to achieve the effect of overcoming rapid self-diffusion

Active Publication Date: 2013-08-28
BC P INC CHINA NAT PETROLEUM CORP +1
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Problems solved by technology

As displacement pressure rises, irreducible water may flow, and the impact of water can be severe during effective development with stimulation process measures
Conventional logging interpretation and traditional nuclear magnetic resonance logging interpretation methods for such reservoirs can no longer obtain satisfactory exploration results, and new technical methods must be studied to open up new prospects
[0003] In the prior art, there are many methods for identifying reservoir fluid properties, most of which use the intersection of acoustic waves and neutrons, the intersection of acoustic waves and resistivity, the overlapping method of acoustic waves, neutrons, and density-porosity, array induction logging, and multiple methods based on conventional logging responses. Parameter artificial intelligence and other fluid p

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  • Method for evaluating water containing characteristic and occurrence state of compact sandstone storage layer aperture
  • Method for evaluating water containing characteristic and occurrence state of compact sandstone storage layer aperture
  • Method for evaluating water containing characteristic and occurrence state of compact sandstone storage layer aperture

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Embodiment Construction

[0027] The specific implementation manners provided by the present invention will be further described in detail below in conjunction with the accompanying drawings.

[0028] see Figure 1-10 , a method for evaluating the water-bearing characteristics and occurrence state of tight sandstone reservoir pores provided by the embodiment of the present invention includes the following steps:

[0029] Step S101: Through the core mercury injection experiment and nuclear magnetic resonance experiment, the NMR T 2 Spectrum to pseudo capillary pressure curve;

[0030] Step S102: Obtain the cumulative contribution value of the permeability through the core mercury injection experiment, and establish the space effectiveness division standard of reservoir pore throats according to the cumulative contribution value;

[0031] Step S103: According to the division standard of reservoir pore-throat space effectiveness, the fluid volume parameters in different intervals are calculated through ...

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Abstract

The invention discloses a method for evaluating a water-containing characteristic and an occurrence state of compact sandstone storage layer apertures, comprising: converting a nuclear magnetic T2 spectrum into a false capillary pressure curve by a rock core intrusive mercury experiment and a nuclear magnetic resonance experiment; obtaining a permeability accumulation contribution value by a rock core intrusive mercury experiment, and establishing a storage layer aperture throat space validity division standard based on the permeability accumulation contribution value; and based on the aperture throat space validity division standard, and calculating a clay bound water volume, an immovable capillary bound water volume and a movable fluid volume by the false capillary pressure curve, to implement evaluation of the water-containing characteristic and the occurrence state of the compact sandstone storage layer apertures.

Description

technical field [0001] The invention belongs to the technical field of well logging engineering, in particular to an evaluation method for water-bearing characteristics and occurrence states of pores in tight sandstone reservoirs. Background technique [0002] Tight sandstone reservoirs have poor physical properties, deep burial, and low abundance. They mainly develop microscopic pores, and they are dominated by sheet-shaped pore throats. The pore-throat ratio is similar, and the water saturation is high. The water trapped in the rock pores occurs in various forms. , the Jiamin effect and the surface molecular force act strongly, and have a starting pressure gradient. As the displacement pressure rises, irreducible water may flow, and the impact of water is serious in the process of effective development with stimulation process measures. Conventional logging interpretation and traditional nuclear magnetic resonance logging interpretation methods for such reservoirs can no ...

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Application Information

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IPC IPC(8): G01N15/08G01N24/08
CPCY02A90/30
Inventor 成志刚罗少成林伟川张蕾席辉杨智新张泽文赵莉郑小敏李戈理
Owner BC P INC CHINA NAT PETROLEUM CORP
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