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Featured researches published by Xianmin Zhou.


information processing and trusted computing | 2013

Development of Chemical EOR Formulations for a High Temperature and High Salinity Carbonate Reservoir

Ming Han; Abdulkareem M. AlSofi; Alhasan Fuseni; Xianmin Zhou; Saleh Hassan

Although over 60% of the world-wide hydrocarbon reserves are held in carbonate reservoirs, chemical flooding application and research endeavors have been focused on sandstones rather than carbonates. Challenges to develop chemical EOR formulations for carbonate reservoirs are significant and unique because of the complexity of rock mineral compositions, matrix pore structures, rock surface properties, fracture density, aperture and orientation, as well as oil types. The fact that some chemical EOR technologies have been successfully used in sandstone reservoirs cannot be simply extrapolated to carbonate reservoirs. Carbonate reservoirs are usually characterized as low permeability matrix with fractures, while a considerable portion present high permeability matrix with fractures as shown in the Middle East. This paper presents the development of chemical formulations addressing the challenges of chemical EOR in a representative Middle East carbonate reservoir, which has high reservoir temperature and high brine salinity. In the screening process, more than 50 surfactants and 30 polymers were studied at both ambient and reservoir conditions. Few surfactant-polymer (SP) formulations were optimized in terms of good compatibility with field brines, low interfacial tensions between the crude oil and chemical solution, and low adsorption of chemicals on the carbonate core samples. The results of the compatibility tests showed that an effective SP slug can be prepared in regular Arabian Gulf seawater without the requirement of water softening. Amphoteric surfactants showed a promising performance for the given reservoir conditions. Oil displacement tests using selected SP formulations demonstrated significant recovery potential in tertiary mode. This paper presents an overview of the chemical EOR research for the carbonate reservoir and provides insights of chemical enhanced oil recovery from carbonate rather than sandstone reservoirs.


SPE EOR Conference at Oil and Gas West Asia | 2012

Laboratory Investigation of the Injectivity of Sulfonated Polyacrylamide Solutions into Carbonate Reservoir Rocks

Ming Han; Xianmin Zhou; Alhasan Fuseni; Badr H. Al-Zahrani; Abdulkareem M. AlSofi


SPE Improved Oil Recovery Symposium | 2012

Adsorption of an Amphoteric Surfactant onto Permeable Carbonate Rocks

Xianmin Zhou; Ming Han; Alhasan Fuseni; Ali A. Yousef


SPE Asia Pacific Enhanced Oil Recovery Conference | 2015

A Novel Technique for Enhanced Oil Recovery: In-Situ CO 2 -Emulsion Generation

Fawaz AlOtaibi; Xianmin Zhou; Sunil Kokal; Balasubramanian Senthilmurugan; Almohannad Alhashboul; Amin M. AlAbdulwahab


Sats | 2013

Study of Polyacrylamide/Cr (III) Hydrogels for Conformance Control in Injection Wells to Enhance Chemical Flooding Process

Saleh Hassan; Ming Han; Xianmin Zhou; Dimitrios Krinis; Badr Zahrani


SPE Improved Oil Recovery Conference | 2016

Residual Oil Zone: Paleo Oil Characterization and Fundamental Analysis

Ahmed Aleidan; Hyung T. Kwak; Hendrik Muller; Xianmin Zhou


SPE Asia Pacific Oil & Gas Conference and Exhibition | 2016

A New Approach of Pressure Profile and Oil Recovery During Dual and Single Core Flooding of Seawater and CO2 Injection Process for Carbonate Reservoir

Xianmin Zhou; Fawaz AlOtaibi; Sunil Kokal; Almohannad Alhashboul; Jassi Al-Qahtani


Abu Dhabi International Petroleum Exhibition & Conference | 2016

EOR by CO 2 Emulsions Better Sweep Efficiency and Improved Recovery

Fawaz AlOtaibi; Xianmin Zhou; Abdulla Habah; Sunil Kokal


Sats | 2015

Laboratory Evaluation of Different Mode of Supercritical CO 2 Miscible Flooding for Carbonate Rocks

Fawaz AlOtaibi; Xianmin Zhou; Sunil Kokal


SPE Improved Oil Recovery Symposium | 2014

A Laboratory Study to Investigate CO2 Potential to Mobilize Paleo Oil

Ahmed Aleidan; Xianmin Zhou; Hyung T. Kwak; Sunil Kokal

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