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Dive into the research topics where Kuldeep Chaudhary is active.

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Featured researches published by Kuldeep Chaudhary.


Geochemistry Geophysics Geosystems | 2015

Wettability measurement under high P‐T conditions using X‐ray imaging with application to the brine‐supercritical CO2 system

Kuldeep Chaudhary; Eric J. Guiltinan; M. Bayani Cardenas; Jessica A. Maisano; Richard A. Ketcham; Philip C. Bennett

We present a new method for measuring wettability or contact angle of minerals at reservoir pressure-temperature conditions using high-resolution X-ray computed tomography (HRXCT) and radiography. In this method, a capillary or a narrow slot is constructed from a mineral or a rock sample of interest wherein two fluids are allowed to form an interface that is imaged using X-rays. After some validation measurements at room pressure-temperature conditions, we illustrate this method by measuring the contact angle of CO2-brine on quartz, muscovite, shale, borosilicate glass, polytetrafluoroethylene (PTFE or Teflon), and polyether ether ketone (PEEK) surfaces at 60–71°C and 13.8–22.8 MPa. At reservoir conditions, PTFE and PEEK surfaces were found to be CO2-wet with contact angles of 140° and 127°, respectively. Quartz and muscovite were found to be water-wet with contact angles of 26° and 58°, respectively, under similar conditions. Borosilicate glass-air-brine at room conditions showed strong water-wet characteristics with a contact angle of 9°, whereas borosilicate glass-CO2-brine at 13.8 MPa and 60°C showed a decrease in its water-wetness with contact angle of 54°. This method provides a new application for X-ray imaging and an alternative to other methods.


Geophysical Research Letters | 2013

Pore-scale trapping of supercritical CO2 and the role of grain wettability and shape

Kuldeep Chaudhary; M. Bayani Cardenas; William W. Wolfe; Jessica A. Maisano; Richard A. Ketcham; Philip C. Bennett


Geophysical Research Letters | 2011

The role of eddies inside pores in the transition from Darcy to Forchheimer flows

Kuldeep Chaudhary; M. Bayani Cardenas; Wen Deng; Phillip C. Bennett


Water Resources Research | 2013

Pore geometry effects on intrapore viscous to inertial flows and on effective hydraulic parameters

Kuldeep Chaudhary; M. Bayani Cardenas; Wen Deng; Philip C. Bennett


Journal of Physical Chemistry C | 2014

Chemical and Hydrodynamic Mechanisms for Long-Term Geological Carbon Storage

Susan Jeanne Altman; B. Aminzadeh; Matthew T. Balhoff; Phillip C. Bennett; Steven L. Bryant; M. Bayani Cardenas; Kuldeep Chaudhary; Randall T. Cygan; Wen Deng; Thomas A. Dewers; David A. DiCarlo; Peter Eichhubl; Marc A. Hesse; Chun Huh; Edward N. Matteo; Yashar Mehmani; Craig M. Tenney; Hongkyu Yoon


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2015

Pore-level foam generation and flow for mobility control in fractured systems

Jarand Gauteplass; Kuldeep Chaudhary; Anthony R. Kovscek; Martin A. Fernø


Journal of Petroleum Science and Engineering | 2017

Experimental and simulation study of carbon dioxide, brine, and muscovite surface interactions

Craig M. Tenney; Thomas A. Dewers; Kuldeep Chaudhary; Edward N. Matteo; M. Bayani Cardenas; Randall T. Cygan


Archive | 2015

Colloids and Surfaces A: Physicochemical and Engineering Aspects

Jarand Gauteplass; Kuldeep Chaudhary; Anthony R. Kovscek; Martin A. Fernø


Archive | 2011

The coupled effects of microbial and physic-chemical processes on geological carbon storage.

Matthew F. Kirk; Susan Jeanne Altman; Philip C. Bennett; Bayani Cardenas; Thomas A. Dewers; Mojdeh Delshad; Eugenio F.U. Santillan; Wen Deng; Kuldeep Chaudhary; Hongkyu Yoon


Geophysical Research Letters | 2011

The role of eddies inside pores in the transition from Darcy to Forchheimer flows: DARCY-NONDARCY FLOWS DUE TO EDDY GROWTH

Kuldeep Chaudhary; M. Bayani Cardenas; Wen Deng; Philip C. Bennett

Collaboration


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M. Bayani Cardenas

University of Texas at Austin

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Philip C. Bennett

University of Texas at Austin

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Wen Deng

University of Texas at Austin

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Thomas A. Dewers

Sandia National Laboratories

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Craig M. Tenney

Sandia National Laboratories

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Edward N. Matteo

Sandia National Laboratories

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Hongkyu Yoon

Sandia National Laboratories

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Jessica A. Maisano

University of Texas at Austin

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Phillip C. Bennett

University of Texas at Austin

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