Full Name
Chua Hui Tong
(not current staff)
Variants
CHUA, HUI TONG
Chua, H.-T.
Chua, H.T.
 
 
 
Email
mpecht@nus.edu.sg
 

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Type:  Article

Results 1-20 of 38 (Search time: 0.007 seconds).

Issue DateTitleAuthor(s)
1Dec-2002A general model for studying effects of interface layers on thermoelectric devices performanceXuan, X.C. ; Ng, K.C. ; Yap, C. ; Chua, H.T. 
2Sep-2002Adsorption characteristics of silica gel + water systemsChua, H.T. ; Ng, K.C. ; Chakraborty, A. ; Oo, N.M.; Othman, M.A.
3May-1995Centrifugal chillers: Thermodynamic modelling and a diagnostic case studyGordon, J.M. ; Ng, K.C. ; Chua, H.T. 
4Mar-1997Diagnostics and optimization of reciprocating chillers: Theory and experimentNg, K.C. ; Chua, H.T. ; Ong, W.; Lee, S.S.; Gordon, J.M.
521-Jun-1998Entropy generation analysis of two-bed, silica gel-water, non-regenerative adsorption chillersChua, H.T. ; Ng, K.C. ; Malek, A. ; Kashiwagi, T.; Akisawa, A.; Saha, B.B.
61997Entropy production analysis and experimental confirmation of absorption systemsChua, H.T. ; Gordon, J.M.; Ng, K.C. ; Han, Q.
7Nov-2001Experimental investigation of the silica gel-water adsorption isotherm characteristicsNg, K.C. ; Chua, H.T. ; Chung, C.Y.; Loke, C.H.; Kashiwagi, T.; Akisawa, A.; Saha, B.B.
8Jul-1996Experimental study of the fundamental properties of reciprocating chillers and their relation to thermodynamic modeling and chiller designChua, H.T. ; Ng, K.C. ; Gordon, J.M. 
91997Experimental verification of a diagnostic model for reciprocating chillersNg, K.C. ; Chua, H.T. ; Ong, A.S.
101-May-2001General thermodynamic framework for understanding temperature-entropy diagram of batchwise operating thermodynamic cooling cyclesChua, H.T. ; Ng, K.C. ; Malek, A. ; Oo, N.M.
111-Nov-2000General thermodynamic framework for understanding the behaviour of absorption chillersChua, H.T. ; Toh, H.K.; Malek, A. ; Ng, K.C. ; Srinivasan, K.
12Sep-2000Improved thermodynamic property fields of LiBr-H2O solutionChua, H.T. ; Toh, H.K.; Malek, A. ; Ng, K.C. ; Srinivasan, K.
13May-1999Modeling the performance of two-bed, silica gel-water adsorption chillersChua, H.T. ; Ng, K.C. ; Malek, A. ; Kashiwagi, T.; Akisawa, A.; Saha, B.B.
14Mar-2001Multi-bed regenerative adsorption chiller - improving the utilization of waste heat and reducing the chilled water outlet temperature fluctuationChua, H.T. ; Ng, K.C. ; Malek, A. ; Kashiwagi, T.; Akisawa, A.; Saha, B.B.
15Aug-2005Nanotips cold-end contact for microcooling systemsTan, K.-L.; Iliescu, C.; Tay, F. ; Chua, H.-T. ; Miao, J.
16Dec-2002On minimizing the heat leak of current leads in cryogenic vacuum systemsXuan, X.C. ; Ng, K.C. ; Yap, C. ; Chua, H.T. 
17May-1997On the modeling of absorption chillers with external and internal irreversibilitiesNg, K.C. ; Chua, H.T. ; Han, Q.
18Feb-2002Optimization and thermodynamic understanding of conduction-cooled Peltier current leadsXuan, X.C. ; Ng, K.C. ; Yap, C. ; Chua, H.T. 
19Oct-2002Optimization of two-stage thermoelectric coolers with two design configurationsXuan, X.C. ; Ng, K.C. ; Yap, C. ; Chua, H.T. 
201997Optimizing chiller operation based on finite-time thermodynamics: Universal modeling and experimental confirmationGordon, J.M.; Ng, K.C. ; Chua, H.T.