文章 作者

Wang, Guo-Xiang

Associate Professor
gwang@uakron.edu

Department of Mechanical Engineering, College of Engineering, The University of Akron, Akron, OH 44325-3903, USA; and State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University
Akron, Ohio 44325-3903, USA; and Xi'an, Shaanxi, 710049, China

Multiphase flows, Melting

Member of ASME, TMS, and ASEE Member of ASME K-15 committee; Member of TMS “Solidification committee”
Ph.D., University of California at Santa Barbara (1995); M.S., Xi'an Jiaotong University, (1986); B.S., Xi'an Jiaotong University (1983)
Associate Professor (Aug. 2004 – ), Dept. Mechanical Engineering, The University of Akron
Chang-Jiang Visiting Professor (May 2006- ), Xi'an Jiaotong University, China
Visiting Research Scientist (May – July, 2002 and July – Aug., 2003) Beckman Laser Institute,
University of California at Irvine.
Assistant Professor (Aug. 1998 – July, 2004), Dept. Mechanical Engineering, The University of Akron
Research Scientist (Jan. 1996 – Aug. 1998) AFOSR/DARPA Consortium for Crystal Growth Research &
NSF Center for Thermal Spray Research, State University of New York at Stony Brook
Post-Doctoral Fellow (Feb. - Dec. 1995), Materials Research Laboratory, UCSB
Research Assistant (1990 - 1995), Materials Processing Laboratory, UCSB
(3 book chapters, 66 International Journal articles, 14 Chinese articles, 88 conference proceedings, 6 PhD student
dissertations, 12 Master student theses, 900 total citation, h-index: 17)
Book Chapters
1. G.-X. Wang and V. Prasad, 2000, “Rapid Solidification: Fundamentals and Modeling,” Annual
Review in Heat Transfer, C.L. Tien (Ed.), Vol. 11, pp. 207-305.
2. T. Kyu, H. Xu, T. Guo, and G.X. Wang, 2010, “Phase Field Modeling on Polymer Crystallization and
Phase Separation in Crystalline Polymer Blends,” in Encyclopedia of Polymer Blends, A. I. Isayev
Eds., Wiley-VCH Verlag, Weinheim, Chapter 4, pp. 113-151.
3. D. Li, G.-X, Wang, and Y.L. He, 2011, “Thermal Modelling for Laser Treatment of Port Wine
Stains,” in Developments in Heat Transfer, Marco A. dos S. Bernardes (ed.), InTech, Chapter 27, pp.
537-556 (ISBN: 978-953-307-569-3). (http://www.intechopen.com/books/developments-in-heattransfer/thermal-modelling-for-laser-treatment-of-port-wine-stains).

Journal Articles
1. Li D., Chen B., Wu W.J., Wang G.X., and He Y.L., 2014, Multi-scale modeling of tissue
freezing during cryogen spray cooling with R134a, R407c and R404a. Applied Thermal
Engineering, (accepted).
2. Li D., Farshidi D., Wang G.X., He Y.L., Kelly K.M., Wu W.J. and Ying Z.X. 2014, A
comparison of microvascular responses to visible and near-infrared lasers. Lasers in Surgery
and Medicine (accepted).
3. Li D., Wang G.X., He Y.L., Wu W.J., and Chen B 2014, A three-temperature model of
selective photothermolysis for laser treatment of port wine stain containing large malformed
blood vessels. Applied Thermal Engineering, Vol. 65, No. 1-2, pp.308-321.
4. Li D., Chen B., Wu W.J., He Y.L. Xing L.Z., and Wang G.X, 2014, Numerical Analysis of
Cold Injury of Skin in Cryogen Spray Cooling for Laser Dermatologic Surgery, American
Journal of Heat and Mass Transfer, Vol. 1, No. 1, pp.38-51.
5. Li D, Wang G.-X., He Y.L., etc., 2013, A Two-Temperature Model for Selective
Photothermolysis Laser Treatment of Port Wine Stains, Applied Thermal Engineering,
Vol.59, pp. 41-51.
6. Zhou Z-F, Wang G-X, Chen B, et al., 2013, Evaluation of Evaporation Models for Single Moving
Droplet with a High Evaporation Rate, Powder Technology, Vol. 240, pp. 95-102.
7. Li D, He Y-L, Wang G-X, et al., 2013, A new model of selective photothermolysis to aid laser
treatment of port wine stains, Chinese Science Bulletin, Vol. 58, pp. 416-426.
8. Sun F, Martinez-Suastegui L, Wang G-X, et al., 2012, Numerical prediction of the intracellular
ice formation zone during cryosurgery on a nodular basal cell carcinoma using liquid nitrogen spray,
Int. J. Spray Combustion Dynamics, Vol.4, No.4, pp. 341-379.
3/17
G.-X. Wang 3/17
9. Zhou, Z.-F., Wu W.T., Chen B., Wang, G.-X., and Guo L.-J., 2012, “An experimental study on the
spray and thermal characteristics of R134a two-phase flashing spray,” Int. J. Heat Mass Transfer,
Vol. 55, no. 15-16, pp. 4460-4468.
10. Zhou, Z.-F., Chen B., Guo L.-J., Wang Y.-S. and G.-X. Wang, 2012, “An Experimental Study on
Pulsed Spray Cooling with Refrigerant R-404a in Laser Surgery,” Applied Thermal Engineering, Vol.
39, pp. 29-36.
11. Ying, Z.-X., Ma, H.-Q., Liu, Y., Xiao, S.-X., Wang, Y.-X., Wang, G.-X., 2011, “A novel mutation of
CYLD in a Chinese family with multiple familial trichoepithelioma,” J. European Academy
Dermatology Venereology (in Press).
12. Qin, Z., Zhe, J., Wang, G.-X., 2011, Effects of particle's off-axis position, shape, orientation and entry
position on resistance changes of micro Coulter counting devices, Measurement Science and
Technology, 22 (4), art. no. 045804.

Ying, Zhaoxia

Experimental Study on the Vascular Thermal Response to Visible Laser Pulses

He, Ya-Ling

A New Theoretical Model of Selectively Photothermolysis to Aid Laser Treatment of Poor Responding Port Wine Stain Blood Vessels

Experimental Study on the Vascular Thermal Response to Visible Laser Pulses

Haque, Raad Shahmat

New phase diagrams with the boundary of liquid/supercritical liquid-like region Discovered

Arona, Adam

CLOSED-FORM SOLUTION FOR THE COMPRESSIBLE FLOW OF IDEAL GAS IN A PIPE WITH BOTH FRICTION AND HEAT TRANSFER

Chen, Bin

A New Theoretical Model of Selectively Photothermolysis to Aid Laser Treatment of Poor Responding Port Wine Stain Blood Vessels

Experimental and Theoretical Study on the Thermal Characteristics of Flashing Spray Cooling UsingR404a

Experimental Study on the Vascular Thermal Response to Visible Laser Pulses

Zhou, Zhifu

Experimental and Theoretical Study on the Thermal Characteristics of Flashing Spray Cooling UsingR404a

Wu, Wenjuan

A New Theoretical Model of Selectively Photothermolysis to Aid Laser Treatment of Poor Responding Port Wine Stain Blood Vessels

Experimental Study on the Vascular Thermal Response to Visible Laser Pulses

Almara, Laura

ANOMALIES IN FLUID'S BEHAVIOR AROUND THE CRITICAL POINT: DELINEATION ON THE PHASE DIAGRAM

New phase diagrams with the boundary of liquid/supercritical liquid-like region Discovered

Matthys, E.F.

INTERFACIAL THERMAL CONTACT DURING RAPID SOLIDIFICATION ON A SUBSTRATE

Li, Dong

A New Theoretical Model of Selectively Photothermolysis to Aid Laser Treatment of Poor Responding Port Wine Stain Blood Vessels

Experimental Study on the Vascular Thermal Response to Visible Laser Pulses

Prasad, Vish

RAPID SOLIDIFICATION: FUNDAMENTALS AND MODELING

ANOMALIES IN FLUID'S BEHAVIOR AROUND THE CRITICAL POINT: DELINEATION ON THE PHASE DIAGRAM

CLOSED-FORM SOLUTION FOR THE COMPRESSIBLE FLOW OF IDEAL GAS IN A PIPE WITH BOTH FRICTION AND HEAT TRANSFER

New phase diagrams with the boundary of liquid/supercritical liquid-like region Discovered