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Featured researches published by Huazhou Andy Li.


RSC Advances | 2017

Effect of asphaltene precipitation on CO2-flooding performance in low-permeability sandstones: a nuclear magnetic resonance study

Chen Wang; Tiantai Li; Hui Gao; Jinsheng Zhao; Huazhou Andy Li

With nuclear magnetic resonance (NMR), a novel experimental study is conducted to reveal the pore-scale formation damage mechanism of tight sandstones caused by asphaltene precipitation during CO2 flooding. For each core-flooding experiment, the T2 responses of the hydrogen nucleus in the core samples are measured before and after CO2 flooding, and then compared to quantitatively determine the asphaltene precipitate distribution in pore throats with different sizes. It is found that in the immiscible flooding stage, the degree of asphaltene precipitation increases with an increase in the CO2 injection pressure. After entering the miscible flooding stage, asphaltene can be still precipitated, but with a much lower magnitude. The core permeability tends to be reduced after CO2 flooding, and the permeability reduction is positively correlated with the amount of asphaltene precipitated. The results of the NMR experiments show that during the immiscible flooding stage, oil is recovered primarily from the relatively larger pores. A small amount of asphaltene precipitation occurs in the larger pores (1–1000 ms), filling up a small portion of these pore spaces, while little asphaltene shows up in the smaller pores (0.01–1 ms). As the pressure increases beyond the minimum miscibility pressure (MMP), more oil contained in smaller pores is able to be recovered. The smaller pores tend to be more affected by the precipitated asphaltene in comparison to the larger pores. With the asphaltene-filling phenomenon taking place more in the smaller pores, the tight-core permeability can be substantially compromised after CO2 flooding.


Journal of Natural Gas Science and Engineering | 2016

Pore structure characterization, permeability evaluation and enhanced gas recovery techniques of tight gas sandstones

Hui Gao; Huazhou Andy Li


Industrial & Engineering Chemistry Research | 2016

Determination of Diffusion Coefficient for Alkane Solvent–CO2 Mixtures in Heavy Oil with Consideration of Swelling Effect

Sixu Zheng; Huazhou Andy Li; Huijuan Sun; Daoyong Yang


Journal of Natural Gas Science and Engineering | 2016

Improved pore-structure characterization in shale formations with FESEM technique

Hucheng Deng; Xiaofei Hu; Huazhou Andy Li; Bin Luo; Wei Wang


Spe Journal | 2017

An Experimental Study of Multiphase Behavior for n-Butane/Bitumen/Water Mixtures

Jianyi Gao; Ryosuke Okuno; Huazhou Andy Li


Journal of Natural Gas Science and Engineering | 2016

Stability and mobility of foam generated by gas-solvent/surfactant mixtures under reservoir conditions

Chao Wang; Huazhou Andy Li


Industrial & Engineering Chemistry Research | 2016

Measurements and Modeling of Interfacial Tension for CO2/CH4/Brine Systems under Reservoir Conditions

Yueliang Liu; Huazhou Andy Li; Ryosuke Okuno


Journal of Natural Gas Science and Engineering | 2016

History matching and production optimization of water flooding based on a data-driven interwell numerical simulation model

Hui Zhao; Ying Li; Shuyue Cui; Genhua Shang; Albert C. Reynolds; Zhenyu Guo; Huazhou Andy Li


SPE Canada Heavy Oil Technical Conference | 2015

Improvement of the Recovery Factor Using Nano-Metal Particles at the Late Stages of Cyclic Steam Stimulation

Jamal Farooqui; Tayfun Babadagli; Huazhou Andy Li


Journal of Petroleum Science and Engineering | 2017

Experimental investigation of combined electromagnetic heating and solvent-assisted gravity drainage for heavy oil recovery

Lanxiao Hu; Huazhou Andy Li; Tayfun Babadagli; Majid Ahmadloo

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Ryosuke Okuno

University of Texas at Austin

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Hai Huang

Xi'an Shiyou University

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Hucheng Deng

Chengdu University of Technology

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Hui Gao

Chinese Ministry of Education

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Hucheng Deng

Chengdu University of Technology

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