Longitudinal dispersion coefficient in straight rivers ZQ Deng, VP Singh, L Bengtsson Journal of hydraulic engineering 127 (11), 919-927, 2001 | 336 | 2001 |
Numerical solution of fractional advection-dispersion equation ZQ Deng, VP Singh, L Bengtsson Journal of Hydraulic Engineering 130 (5), 422-431, 2004 | 202 | 2004 |
Longitudinal dispersion coefficient in single-channel streams ZQ Deng, L Bengtsson, VP Singh, DD Adrian Journal of Hydraulic Engineering 128 (10), 901-916, 2002 | 159 | 2002 |
How reliable are ANN, ANFIS, and SVM techniques for predicting longitudinal dispersion coefficient in natural rivers? R Noori, Z Deng, A Kiaghadi, FT Kachoosangi Journal of Hydraulic Engineering 142 (1), 04015039, 2016 | 146 | 2016 |
Parameter estimation for fractional dispersion model for rivers Z Deng, L Bengtsson, VP Singh Environmental Fluid Mechanics 6, 451-475, 2006 | 94 | 2006 |
Downstream hydraulic geometry relations: 1. Theoretical development VP Singh, CT Yang, ZQ Deng Water resources research 39 (12), 2003 | 83 | 2003 |
A fractional dispersion model for overland solute transport ZQ Deng, JLMP De Lima, MIP de Lima, VP Singh Water resources research 42 (3), 2006 | 77 | 2006 |
Development of artificial intelligence approach to forecasting oyster norovirus outbreaks along Gulf of Mexico coast SS Chenar, Z Deng Environment international 111, 212-223, 2018 | 68 | 2018 |
Sediment transport rate-based model for rainfall-induced soil erosion ZQ Deng, JLMP de Lima, HS Jung Catena 76 (1), 54-62, 2008 | 66 | 2008 |
Detection and forecasting of oyster norovirus outbreaks: recent advances and future perspectives J Wang, Z Deng Marine Environmental Research 80, 62-69, 2012 | 58 | 2012 |
Modeling and prediction of oyster norovirus outbreaks along Gulf of Mexico coast J Wang, Z Deng Environmental health perspectives 124 (5), 627-633, 2016 | 55 | 2016 |
Development of predictive models for determining enterococci levels at Gulf Coast beaches Z Zhang, Z Deng, KA Rusch Water research 46 (2), 465-474, 2012 | 54 | 2012 |
Variable residence time–based model for solute transport in streams ZQ Deng, HS Jung Water resources research 45 (3), 2009 | 49 | 2009 |
Development of genetic programming-based model for predicting oyster norovirus outbreak risks SS Chenar, Z Deng Water research 128, 20-37, 2018 | 48 | 2018 |
Environmental indicators for human norovirus outbreaks S Shamkhali Chenar, Z Deng International journal of environmental health research 27 (1), 40-51, 2017 | 47 | 2017 |
Scaling dispersion model for pollutant transport in rivers ZQ Deng, HS Jung Environmental Modelling & Software 24 (5), 627-631, 2009 | 47 | 2009 |
Transport rate-based model for overland flow and solute transport: Parameter estimation and process simulation ZQ Deng, JLMP De Lima, VP Singh Journal of Hydrology 315 (1-4), 220-235, 2005 | 46 | 2005 |
Hydraulic residence time computation for constructed wetland design V Zahraeifard, Z Deng Ecological Engineering 37 (12), 2087-2091, 2011 | 43 | 2011 |
Fractional kinetic model for first flush of stormwater pollutants ZQ Deng, JLMP de Lima, VP Singh Journal of environmental engineering 131 (2), 232-241, 2005 | 43 | 2005 |
Effect of channel size on solute residence time distributions in rivers ZQ Deng, HS Jung, B Ghimire Advances in Water Resources 33 (9), 1118-1127, 2010 | 40 | 2010 |