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Online since: September 2017
Authors: Zhen Xian Fu, Yu Rong Lin, Guang Ying Zhang, Yang Liu
Wong, Wen J.
Li, Chung Ping Kwong, Hand-written Character Recognition Using MEMS Motion Sensing Technology, Proc. of 2008 IEEE/ASME Int.
Mechatronics, (2008) 1418-1423 [11] Sung-Do Choi, Alexander S.
Electro. 59 (2012) 2998-3007 [14] Shiqi Zhang, Chun Yuan, Yan Zhang, Self-Defined Gesture Recognition on Keyless Handheld Devices using MEMS 3D Accelerometer, Proc. of 2008 IEEE Int.
Nature Computation, Jinan, China, (2008) 237-241 [15] Zhuxin Dong, Guanglie Zhang, Chi Chiu Tsang, Guangyi Shi, Wen J.
Li, Chung Ping Kwong, Hand-written Character Recognition Using MEMS Motion Sensing Technology, Proc. of 2008 IEEE/ASME Int.
Mechatronics, (2008) 1418-1423 [11] Sung-Do Choi, Alexander S.
Electro. 59 (2012) 2998-3007 [14] Shiqi Zhang, Chun Yuan, Yan Zhang, Self-Defined Gesture Recognition on Keyless Handheld Devices using MEMS 3D Accelerometer, Proc. of 2008 IEEE Int.
Nature Computation, Jinan, China, (2008) 237-241 [15] Zhuxin Dong, Guanglie Zhang, Chi Chiu Tsang, Guangyi Shi, Wen J.
Online since: August 2010
Authors: Robert A. Shanks, Susan Wong, Christopher M.L. Preston
Ceramifying Fire-retardant and Fire-barrier Unsaturated
Polyester Composites
Robert A Shanks1, Susan Wong
1 and Christopher M.
Preston2 1 CRC for Polymers, Applied Sciences, RMIT University, GPO Box 2476V, Melbourne 3001, Australia, 2 CRC for Polymers, Division of Materials Science and Engineering, CSIRO, Australia e-mail: robert.shanks@rmit.edu.au, susan.wong@rmit.edu.au, christopher.preston@csiro.au Keywords: Fire-retardant; fire-barrier; composite; ceramic; thermal degradation Abstract.
Degrad Stab., 93 (2008), 1996
Preston2 1 CRC for Polymers, Applied Sciences, RMIT University, GPO Box 2476V, Melbourne 3001, Australia, 2 CRC for Polymers, Division of Materials Science and Engineering, CSIRO, Australia e-mail: robert.shanks@rmit.edu.au, susan.wong@rmit.edu.au, christopher.preston@csiro.au Keywords: Fire-retardant; fire-barrier; composite; ceramic; thermal degradation Abstract.
Degrad Stab., 93 (2008), 1996
Online since: October 2011
Authors: Amin Etminan, K. Akramian, H. Jafarizadeh, M. Moosavi
In fact, the objective of the aforementioned devices is to significantly enhance turbulent transport and the convective heat transfer coefficients with minimal pressure loss
.The earliest experimental studies of ribbed channels considered single pass, stationary channels with no rotation has been declared by Wong et al. [1] and Burggraf [2].
All of the geometrical parameters of a three dimensional ribbed duct, which are presented in Table 1, the duct characters and Wong et al. experimental effort, [1] are observable.
Wong, W.Q.
Wong, Experimental Study of Developing Turbulent Flow and Heat Transfer in Ribbed Convergent / Divergent Square Ducts., Int.
Sohankar, Numerical Study of Rib Inclination and Duct Divergence on Heat Transfer Enhancement and Flow Structure, 16th Iranian International Mechanical Annually Conference, (2008) [5] Ben Lu, Pei-Xue Jiang, Experimental and Numerical Investigation of Convection Heat Transfer in a Rectangular Channel with Angled Ribs , Experimental Thermal and Fluid Science 30, 513– 521, (2006) [6] Hong-Min Kim, Kwang-Yong Kim, Shape Optimization of three-Dimensional Channel Roughened by Angled Ribs with RANS Analysis of Turbulent Heat Transfer, International Journal of Heat and Mass Transfer 49, 4013 to 4022, (2006) [7] A.
All of the geometrical parameters of a three dimensional ribbed duct, which are presented in Table 1, the duct characters and Wong et al. experimental effort, [1] are observable.
Wong, W.Q.
Wong, Experimental Study of Developing Turbulent Flow and Heat Transfer in Ribbed Convergent / Divergent Square Ducts., Int.
Sohankar, Numerical Study of Rib Inclination and Duct Divergence on Heat Transfer Enhancement and Flow Structure, 16th Iranian International Mechanical Annually Conference, (2008) [5] Ben Lu, Pei-Xue Jiang, Experimental and Numerical Investigation of Convection Heat Transfer in a Rectangular Channel with Angled Ribs , Experimental Thermal and Fluid Science 30, 513– 521, (2006) [6] Hong-Min Kim, Kwang-Yong Kim, Shape Optimization of three-Dimensional Channel Roughened by Angled Ribs with RANS Analysis of Turbulent Heat Transfer, International Journal of Heat and Mass Transfer 49, 4013 to 4022, (2006) [7] A.
Online since: June 2013
Authors: H. Wong, X.S. Zhang, C.J. Leo, T.A. Bui
Internal Erosion of earth structures as a coupled hydromechanical process
Wong H.1, a,Zhang X.S.1, 2, b,Leo C.J.3, cand BuiT.A.1, d
1Université de Lyon/LTDS-LGCB (UMR CNRS 5513), ENTPE, 69120 Vaulx en Velin, France
2Department of Geotechnical Engineering, TongjiUniversity,Shanghai 200092, China
3School of Computing, Engineering and Mathematics, University of Western Sydney, Locked Bag 1797, Penrith NSW, 2751 Australia
akwaikwan.wong@entpe.fr, b8xszhang@tongji.edu.cn, cc.leo@uws.edu.au, dTuanAnh.BUI@entpe.fr
Keywords:Internal erosion; three-phase model; seepage; thermodynamics; finite element.
Mécanique, Vol. 336 (2008) No.9, p.731
Mécanique, Vol. 336 (2008) No.9, p.731