The present invention belongs to the technical field of petroleum exploitation engineering, and relates to a modeling method for generating pore-filling hydrate sediment in a 3D digital rock core.
Natural gas hydrate is clean energy with abundant reserves and is widely distributed undersea and in permafrost in a cementing type or a pore-filling type. It is estimated that the resources of the natural gas hydrate are twice the total reserves of known coal, petroleum and conventional natural gas, and more than 10 times the total amount of all of the global conventional natural gas.
At present, China, India, Korea, Japan and the like have delineated the hydrate development prospect areas, formulated corresponding development plans, and carried out massive research on basic physical properties of hydrate-bearing sediment such as seepage, heat conduction, electricity conduction and mechanics. However, it is difficult and costly to take the core under pressure in the reservoir of the natural gas hydrate, and the hydrate is disturbed and decomposed in the process of sample transfer. Meanwhile, remolding of indoor hydrate samples cannot accurately control the occurrence type and saturation of the hydrate, and experimental repeatability is poor. In contrast, if 3D digital rock cores (the cementing type and the pore-filling type) close to the in situ reservoir structure can be obtained through a numerical simulation method and relevant numerical analysis of the basic physical properties is conducted, the experimental cost of the hydrate will be reduced obviously and the experimental repeatability is good; and the basic physical properties of the hydrate reservoir are rapidly and accurately evaluated.
The present invention relates to a 3D modeling method for pore-filling hydrate sediment based on a CT image. Remolding or in situ rock cores without the natural gas hydrate are scanned by CT; a series of digital rock core image stacks of pore-filling type natural gas hydrate sediment with different saturations are constructed through image morphological calculation to provide a relatively real 3D numerical model for the numerical simulation analysis of the basic physical properties of the reservoir of the natural gas hydrate.
The main purpose of the present invention is to propose a 3D modeling method for pore-filling hydrate sediment based on a CT image to provide a relatively real 3D numerical model for the numerical simulation analysis of the basic physical properties of the reservoir of the natural gas hydrate.
The technical solution of the present invention is as follows:
The present invention has the beneficial effects that: a series of digital rock core image stacks of pore-filling hydrate sediment with different saturations can be constructed based on the remolding or in situ rock cores without the natural gas hydrate through image morphological calculation to provide the relatively real 3D numerical model for the numerical simulation analysis of the basic physical properties of the hydrate reservoir. The experimental cost of the hydrate is reduced obviously and the experimental repeatability is good; and the basic physical properties of the hydrate reservoir are rapidly and accurately evaluated.
Specific embodiments of the present invention are further described below in combination with accompanying drawings and the technical solution.
A 3D modeling method for pore-filling hydrate sediment based on a CT image comprises the following steps:
Number | Date | Country | Kind |
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202010629561.3 | Jul 2020 | CN | national |
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PCT/CN2020/103682 | 7/23/2020 | WO |
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WO2022/000628 | 1/6/2022 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
8909508 | Hurley | Dec 2014 | B2 |
9134457 | Hurley | Sep 2015 | B2 |
10061061 | Ziauddin | Aug 2018 | B2 |
10508997 | Lee | Dec 2019 | B1 |
20120221306 | Hurley | Aug 2012 | A1 |
20120275658 | Hurley | Nov 2012 | A1 |
20160025895 | Ziauddin | Jan 2016 | A1 |
20180024262 | Madof | Jan 2018 | A1 |
20190360948 | Lee | Nov 2019 | A1 |
20220230326 | Song | Jul 2022 | A1 |
Number | Date | Country |
---|---|---|
102323305 | Jan 2012 | CN |
106290537 | Jan 2017 | CN |
108362815 | Aug 2018 | CN |
110082413 | Aug 2019 | CN |
110887881 | Mar 2020 | CN |
WO0242771 | May 2002 | WO |
WO-2016007170 | Jan 2016 | WO |
Entry |
---|
Zhu, Qin, “Study on Highly Selective Detection of Amino Acids by Using Ultrastructure Metal Nanocomposite Membranes”, (Engineering Technology I, China Master's Theses Full-Text Database), No. No. 07, Jul. 15, 2020 (Jul. 15, 2020), ISSN:1674-0246, p. 27, line 1—p. 37, bottom line. (pp. 85). |
Li, Yuqing et al., “Graphene Oxide/Triangular Gold Nanoplates/Nafion Composite Modified Electrode Used for Sensitive Detection of L-Tryptophan”,(Chemical Journal of Chinese Universities),vol. 39, No. 04, Mar. 22, 2018 (Mar. 22, 2018), p. 637, line 39—p. 642, line 21. (pp. 9). |
Number | Date | Country | |
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20220156901 A1 | May 2022 | US |