Hi, I am Kwok-Wing Chau, My LiveDNA is 86.621
 
   
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Dr. Kwok-Wing Chau
 
Highest Degree: Ph.D. in Water Engineering from University of Queensland, Australia
 
Institute: The Hong Kong Polytechnic University, Hong Kong, China
 
Area of Interest: Engineering
  •   Civil Engineering
  •   Hydraulic Engineering
  •   Artificial Intelligence
  •   Construction Materials Technology
 
URL: http://livedna.org/86.621
 
My SELECTED Publications
1:   Chau, K., 2005. Problem-based learning approach in accomplishing innovation and entrepreneurship of civil engineering undergraduates. Int. J. Eng. Educ., 21: 228-232.
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2:   Chau, K., 2006. A review on the integration of artificial intelligence into coastal modeling. J. Environ. Manage., 80: 47-57.
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3:   Chau, K.W. and C.L. Wu, 2010. Hydrological Predictions: Using Data-Driven Models Coupled with Data Preprocessing Techniques. LAP LAMBERT Academic Publishing, Germany, ISBN-13: 978-3843364461, Pages: 248.
4:   Chau, K.W. and C.L.Wu, 2010. A hybrid model coupled with singular spectrum analysis for daily rainfall prediction. J. Hydroinformatics, 12: 458-473.
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5:   Chau, K.W. and F. Albermani, 2002. Expert system application on preliminary design of water retaining structures. Exp. Syst. Applic., 22: 169-178.
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6:   Chau, K.W. and F. Albermani, 2003. A coupled knowledge-based expert system for design of liquid-retaining structures. Autom. Constr., 12: 589-602.
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7:   Chau, K.W. and F. Albermani, 2003. Knowledge-based system on optimum design of liquid retaining structures with genetic algorithms. J. Struct. Eng. ASCE, 129: 1312-1321.
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8:   Chau, K.W. and F. Albermani, 2004. An expert system on design of liquid-retaining structures with blackboard architecture. Expert Syst., 21: 183-191.
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9:   Chau, K.W. and F. Albermani, 2004. Hybrid knowledge representation in a blackboard KBS for liquid retaining structure design. Eng. Applic. Artif. Intell., 17: 11-18.
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10:   Chau, K.W. and F. Albermani, 2005. A knowledge-based system for liquid retaining structure design with blackboard architecture. Build. Environ., 40: 73-81.
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11:   Chau, K.W. and H. Jin, 2002. Two-layered, 2D unsteady eutrophication model in boundary-fitted coordinate system. Mar. Pollut. Bull., 45: 300-310.
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12:   Chau, K.W. and N. Muttil, 2007. Data mining and multivariate statistical analysis for ecological system in coastal waters. J. Hydroinform., 9: 305-317.
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13:   Chau, K.W. and W. Chen, 2001 2001. An example of expert system on numerical modelling system in coastal processes. Adv. Eng. Software, 32: 695-703.
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14:   Chau, K.W. and W. Chen, 2001. A fifth generation numerical modelling system in coastal zone. Applied Math. Modell., 25: 887-900.
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15:   Chau, K.W. and Y.W. Jiang, 2001. 3D numerical model for Pearl River Estuary. J. Hydraul. Eng., 127: 72-82.
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16:   Chau, K.W. and Y.W. Jiang, 2002. Three-dimensional pollutant transport model for the Pearl River Estuary. Water Res., 36: 2029-2039.
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17:   Chau, K.W. and Y.W. Jiang, 2003. Simulation of transboundary pollutant transport action in the Pearl River delta. Chemosphere, 52: 1615-1621.
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18:   Chau, K.W. and Y.W. Jiang, 2004. A three-dimensional pollutant transport model in orthogonal curvilinear and sigma coordinate system for Pearl river estuary. Int. J. Environ. Pollut., 2: 188-198.
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19:   Chau, K.W., 2002. Field measurements of SOD and sediment nutrient fluxes in a land-locked embayment in Hong Kong. Adv. Environ. Res., 6: 135-142.
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20:   Chau, K.W., 2003. Manipulation of numerical coastal flow and water quality models. Environ. Modell. Software, 18: 99-108.
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21:   Chau, K.W., 2004. A prototype knowledge-based system on unsteady open channel flow in water resources management. Water Int., 29: 54-60.
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22:   Chau, K.W., 2004. A three-dimensional eutrophication modeling in Tolo Harbour. Applied Math. Model., 28: 849-861.
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23:   Chau, K.W., 2004. A two-stage dynamic model on allocation of construction facilities with genetic algorithm. Autom. Constr., 13: 481-490.
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24:   Chau, K.W., 2004. Intelligent manipulation of calibration parameters in numerical modeling. Adv. Environ. Res., 8: 467-476.
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25:   Chau, K.W., 2004. Investigation on effects of aggregate structure in water and wastewater treatment. Water Sci. Technol., 50: 119-124.
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26:   Chau, K.W., 2004. Knowledge-based system on water-resource management in coastal waters. Water Environ. J., 18: 25-28.
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27:   Chau, K.W., 2005. An integrated knowledge-based system on modelling of flow and water quality. Chin. Q. Mech., 26: 696-699.
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28:   Chau, K.W., 2005. An unsteady three-dimensional eutrophication model in Tolo Harbour, Hong Kong. Mar. Pollut. Bull., 51: 1078-1084.
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29:   Chau, K.W., 2005. Characterization of transboundary POP contamination in aquatic ecosystems of Pearl River delta. Mar. Pol. Bull., 51: 960-965.
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30:   Chau, K.W., 2005. Prototype expert system for site selection of a sanitary landfill. Civil Eng. Environ. Syst., 22: 205-215.
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31:   Chau, K.W., 2005. Selection and calibration of numerical modeling in flow and water quality. Environ. Model. Assess., 9: 169-178.
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32:   Chau, K.W., 2005. Three-Dimensional Modeling of Hydrodynamic and Transboundary Pollutant Transport in Pearl River Estuary of South China. In: Trends in Water Pollution Research, Livingston, J.V. (Ed.). Chapter 8, Nova Science Publishers Inc., Hauppauge, USA., ISBN: 1-59454-328-3, pp: 181-201.
33:   Chau, K.W., 2005. Water Quality Models: Mathematical Framework. In: Water Encyclopedia, Volume 2: Water Quality and Resource Development, Lehr, J.H., J.W. Keeley and J.K. Lehr (Eds.). John Wiley and Sons Publishing, Ostrander, USA., ISBN-13: 9780471736868, pp: 273-278.
34:   Chau, K.W., 2006. A review on integration of artificial intelligence into water quality modelling. Mar. Pollut. Bull., 52: 726-733.
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35:   Chau, K.W., 2006. An expert system on site selection of sanitary landfill. Int. J. Environ. Pollut., 28: 402-411.
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36:   Chau, K.W., 2006. Development of an integrated knowledge-based system on flow and water quality in Hong Kong coastal waters. Int. J. Environ. Pollut., 28: 297-309.
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37:   Chau, K.W., 2006. Particle swarm optimization training algorithm for ANNs in stage prediction of shing Mun river. J. Hydrol., 329: 363-367.
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38:   Chau, K.W., 2006. Persistent organic pollution characterization of sediments in Pearl River estuary. Chemosphere, 64: 1545-1549.
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39:   Chau, K.W., 2007. A Prototype Expert System for Design of Liquid Retaining Structures. In: Progress in Expert Systems Research, Lipshitz, A.P. (Ed.). Chapter 3, Nova Science Publishers Inc., Hauppauge, USA., ISBN: 1-60021-690-0, pp: 53-71.
40:   Chau, K.W., 2007. A split-step particle swarm optimization algorithm in river stage forecasting. J. Hydrol., 346: 131-135.
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41:   Chau, K.W., 2007. An ontology-based knowledge management system for flow and water quality modeling. Adv. Eng. Software, 38: 172-181.
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42:   Chau, K.W., 2007. Application of a PSO-based neural network in analysis of outcomes of construction claims. Autom. Constr., 16: 642-646.
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43:   Chau, K.W., 2007. Incorporation of sustainability concepts into a civil engineering curriculum. J. Prof. Issues Eng. Educ. Pract., 133: 188-191.
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44:   Chau, K.W., 2007. Insight into resolving construction disputes by mediation/adjudication in Hong Kong. J. Prof. Issues Eng. Educ. Pract., 133: 143-147.
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45:   Chau, K.W., 2007. Integrated water quality management in Tolo Harbour, Hong Kong: A case study. J. Cleaner Prod., 15: 1568-1572.
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46:   Chau, K.W., 2007. Reliability and performance-based design by artificial neural network. Adv. Eng. Software, 38: 145-149.
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47:   Chau, K.W., 2007. Web-based interactive computer-aided learning package on open-channel flow: Innovations, challenges and experiences. J. Prof. Issues Eng. Edu. Pract., 133: 9-17.
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48:   Chau, K.W., 2008. Application of a Particle Swarm Optimization Algorithm to Hydrological Problems. In: Water Resources Research Progress, Robinson, L.N. (Ed.). Nova Science Publishers Inc., Hauppauge, USA., ISBN-13: 9781600219733, pp: 3-12.
49:   Chau, K.W., 2010. Modelling for Coastal Hydraulics and Engineering. Spon Press (Taylor & Francis), UK., ISBN-13: 978-0415482547, Pages: 240.
50:   Chau, K.W., 2011. An Integrated Knowledge Management System on Flow and Water Quality Modeling. In: New Developments in Environmental Research, Davis, E.B. (Ed.). Nova Science Publishers Inc., Hauppauge, USA., ISBN: 1-59454-629-0, pp: 43-60.
51:   Chau, K.W., 2011. Knowledge-Based System for Analysis and Design of Liquid Retaining Structures. Nova Science Publishers, USA., ISBN-13: 978-1612095509, Pages: 174.
52:   Chau, K.W., C. Chuntian and C.W. Li, 2002. Knowledge management system on flow and water quality modeling. Expert Syst. Applic., 22: 321-330.
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53:   Chau, K.W., C.L. Wu and Y.S. Li, 2005. Comparison of several flood forecasting models in Yangtze river. J. Hydrol. Eng., 10: 485-491.
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54:   Chau, K.W., M. Anson and D.D. De Saram, 2005. 4D dynamic construction management and visualization software: 2. Site trial. Autom. Constr., 14: 525-536.
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55:   Chau, K.W., M. Anson and J.P. Zhang, 2003. Implementation of visualization as planning and scheduling tool in construction. Build. Environ., 38: 713-719.
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56:   Chau, K.W., M. Anson and J.P. Zhang, 2004. Four-dimensional visualization of construction scheduling and site utilization. J. Constr. Eng. Manage., 130: 598-606.
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57:   Chau, K.W., M. Anson and J.P. Zhang, 2005. 4D dynamic construction management and visualization software: 1. Development. Automat. Const., 14: 512-524.
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58:   Chau, K.W., M. Anson, C. Ying and J. Zhang, 2003. Integration of data warehouse into knowledge-based system on construction management decision making. Hong Kong Inst. Eng. Trans., 10: 8-13.
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59:   Chau, K.W., W.B. Kong, C.L. Wu and C.Z. Zhang, 2007. Application of ANFIS on flood prediction in main stream of the Changjiang River. J. Resour. Environ. Yangtze Basin, 16: 697-701.
60:   Chau, K.W., Y. Cao, M. Anson and J. Zhang, 2003. Application of data warehouse and decision support system in construction management. Autom. Constr., 12: 213-224.
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61:   Chen, W. and K.W. Chau, 2006. Intelligent manipulation and calibration of parameters for hydrological models. Int. J. Environ. Pollut., 28: 432-447.
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62:   Cheng, C. and K.W. Chau, 2001. Fuzzy iteration methodology for reservoir flood control operation. J. Am. Water Resour. Assoc., 37: 1381-1388.
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63:   Cheng, C., J. Shen, X. Wu and K.W. Chau, 2012. Short-term hydroscheduling with discrepant objectives using multi-step progressive optimality algorithm. J. Am. Water Resour. Assoc., 48: 464-479.
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64:   Cheng, C.T. and K.W. Chau, 2002. Three-person multi-objective conflict decision in reservoir flood control. Eur. J. Operat. Res., 142: 622-631.
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65:   Cheng, C.T. and K.W. Chau, 2004. Flood control management system for reservoirs. Environ. Modell. Software, 19: 1141-1150.
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66:   Cheng, C.T., C.P. Ou and K.W. Chau, 2002. Combining a fuzzy optimal model with a genetic algorithm to solve multi-objective rainfall-runoff model calibration. J. Hydrol., 268: 72-86.
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67:   Cheng, C.T., J.J. Shen, X.Y. Wu and K.W. Chau, 2012. Operation challenges for fast-growing China's hydropower systems and respondence to energy saving and emission reduction. Renew. Sustain. Energy Rev., 16: 2386-2393.
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68:   Cheng, C.T., J.X. Xie, K.W. Chau and M. Layeghifard, 2008. A new indirect multi-step-ahead prediction model for a long-term hydrologic prediction. J. Hydrol., 361: 118-130.
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69:   Cheng, C.T., K.W. Chau, X.Y. Li and G. Li, 2004. Developing a web-based flood forecasting system for reservoirs with J2EE. Hydrol. Sci. J., 49: 973-986.
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70:   Cheng, C.T., M.Y. Zhao, K.W. Chau and X.Y. Wu, 2006. Using genetic algorithm and TOPSIS for Xinanjiang model calibration with a single procedure. J. Hydrol., 316: 129-140.
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71:   Cheng, C.T., S.L. Liao, X.Y. Wu and K.W. Chau, 2009. Two stage particle swarm optimisation for long-term operation of a hydroelectric power system. Hong Kong Inst. Eng. Trans., 16: 8-14.
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72:   Cheng, C.T., W.C. Wang, D.M. Xu and K.W. Chau, 2008. Optimizing hydropower reservoir operation using hybrid genetic algorithm and chaos. J. Water Resour. Manage., 22: 895-909.
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73:   Cheng, C.T., X.Y. Wu and K.W. Chau, 2005. Multiple criteria rainfall-runoff model calibration using a parallel genetic algorithm in a cluster of computers. Hydrol. Sci. J., 50: 1069-1087.
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74:   Huang, Z.K. and K.W. Chau, 2008. A new image thresholding method based on Gaussian mixture model. Applied Math. Comput., 205: 899-907.
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75:   Jia, W., B. Ling, K.W. Chau and L. Heutte, 2008. Palmprint Identification using restricted fusion. Appl. Math. Comput., 205: 927-934.
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76:   Li, H.X., C.T. Cheng and K.W. Chau, 2007. Parallel resource co-allocation for the computational grid. Comput. Lang. Syst. Struct., 33: 1-10.
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77:   Li, X.Y., K.W. Chau, C.T. Cheng and Y.S. Li, 2006. A web-based flood forecasting system for Shuangpai region. Adv. Eng. Software, 37: 146-158.
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78:   Lin, J.Y., C.T. Cheng and K.W. Chau, 2006. Using support vector machines for long-term discharge prediction. Hydrol. Sci. J., 51: 599-612.
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79:   Maghsoodi, R., M.S. Roozgar, K.W. Chau and H. Sarkardeh, 2012. 3D-simulation of dam-break flows. Dam Eng., 23: 53-70.
80:   Muttil, N. and K.W. Chau, 2006. Neural network and genetic programming for modeling coastal algal blooms. Int. J. Environ. Pollut., 28: 223-238.
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81:   Muttil, N. and K.W. Chau, 2007. Machine-learning paradigms for selecting ecologically significant input variables. Eng. Applic. Artif. Intell., 20: 735-744.
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82:   Taormina, R., K.K. Chau and R. Sethi, 2012. Artificial neural network simulation of hourly groundwater levels in a coastal aquifer system of the Venice lagoon. Eng. Applic. Artif. Intell., 25: 1670-1676.
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83:   Wang, H.J., J.P. Zhang, K.W. Chau and M. Anson, 2004. 4D dynamic management for construction planning and resource utilization. Autom. Constr., 13: 575-589.
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84:   Wang, W.C., C.T. Cheng, K.W. Chau and D.M. Xu, 2012. Calibration of Xinanjiang model parameters using hybrid genetic algorithm based fuzzy optimal model. J. Hydroinform., 14: 784-799.
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85:   Wang, W.C., D.M. Xu, K.W. Chau and S. Chen, 2013. Improved annual rainfall-runoff forecasting using PSO-SVM model based on EEMD. J. Hydroinform., 15: 1377-1390.
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86:   Wang, W.C., K.W. Chau, C.T. Chen and L. Qiu, 2009. A comparison of performance of several artificial intelligence methods for forecasting monthly discharge time series. J. Hydrol., 374: 294-306.
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87:   Wu, C.L. and K.W. Chau, 2006. A flood forecasting neural network model with genetic algorithm. Int. J. Environ. Pollut., 28: 261-273.
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88:   Wu, C.L. and K.W. Chau, 2006. Mathematical model of water quality rehabilitation with rainwater utilisation: A case study at Haigang. Int. J. Environ. Pollut., 28: 534-545.
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89:   Wu, C.L. and K.W. Chau, 2010. Data-driven models for monthly streamflow time series prediction. Eng. Applic. Artif. Intell., 23: 1350-1367.
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90:   Wu, C.L. and K.W. Chau, 2011. Rainfall-runoff modeling using artificial neural network coupled with singular spectrum analysis. J. Hydrol., 399: 394-409.
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91:   Wu, C.L. and K.W. Chau, 2013. Prediction of rainfall time series using modular soft computingmethods. Eng. Applic. Artif. Intell., 26: 997-1007.
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92:   Wu, C.L., K.W. Chau and C. Fan, 2010. Prediction of rainfall time series using modular artificial neural networks coupled with data-preprocessing techniques. J. Hydrol., 389: 146-167.
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93:   Wu, C.L., K.W. Chau and J.S. Huang, 2007. Modelling coupled water and heat transport in a Soil-Mulch-Plant-Atmosphere Continuum (SMPAC) system. Applied Math. Modell., 31: 152-169.
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94:   Wu, C.L., K.W. Chau and Y.S. Li, 2009. Methods to improve neural network performance in daily flows prediction. J. Hydrol., 372: 80-93.
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95:   Wu, C.L., K.W. Chau and Y.S. Li, 2009. Predicting monthly streamflow using data-driven models coupled with data-preprocessing techniques. Water Res. Res., 45: W08432-W08432.
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96:   Wu, C.L., K.W. Chau and Y.S. Li, 2008. River stage prediction based on a distributed support vector regression. J. Hydrol., 358: 96-111.
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97:   Xie, J.X., C.T. Cheng, K.W. Chau and Y.Z. Pei, 2006. A hybrid adaptive time-delay neural network model for multi-step-ahead prediction of sunspot activity. Int. J. Environ. Poll., 28: 364-381.
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98:   Xu, D.M., W.C. Wang, K.W. Chau, C.T. Cheng and S.Y. Chen, 2013. Comparison of three global optimization algorithms for calibration of the Xinanjiang model parameters. J. Hydroinform., 15: 174-193.
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99:   Yu, P.K. and K.W., Chau, 2002. A Web-based Computer-Aided Learning Package on Pipe Flow. In: Web-based Learning: Men and Machines, Kwan, R., W.J. Jia, J. Chan, A. Fong and R. Cheung (Eds.). World Scientific, Singapore, ISBN-13: 978-9812381262, pp: 3-12.
100:   Zhang, J. and K.W. Chau, 2009. Multilayer ensemble pruning via novel multi-sub-swarm particle swarm optimization. J. Universal Comput. Sci., 15: 840-858.
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101:   Zhao, M.Y., C.T. Cheng, K.W. Chau and G. Li, 2006. Multiple criteria data envelopment analysis for full ranking units associated to environment impact assessment. Int. J. Environ. Pollut., 28: 448-464.
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