Li, D., E. Bou-Zeid, M. Barlage, F. Chen, and J.A. Smith. 2013. “Development and Evaluation of a Mosaic Approach in the WRF-Noah Framework”. Journal of Geophysical Research Atmospheres 118. doi:10.1002/2013JD020657. Reference Link
Li, D., E. Bou-Zeid, M.L. Baeck, S. Jessup, and J.A. Smith. 2013. “Modeling Land Surface Processes and Heavy Rainfall in Urban Environments: Sensitivity to Urban Surface Representations”. Journal of Hydrometeorology 14: 1098–1118. doi:10.1175/JHM-D-12-0154.1. Reference Link
Hu, X., D. Li, H. Huang, S. Shen, and E. Bou-Zeid. 2014. “Modeling and Sensitivity Analysis of Transport and Deposition of Radionuclides from the Fukushima Dai-Ichi Accident”. Atmospheric Chemistry and Physics 14: 11065–11092. doi:10.5194/acp-14-11065-2014. Reference Link
Wang, L., D. Li, Z. Gao, T. Sun, X. Guo, and E. Bou-Zeid. 2014. “Turbulent Transport of Momentum and Scalars Above an Urban Canopy”. Boundary-Layer Meteorology 150: 485–511. doi:10.1007/s10546-013-9877-z. Reference Link
Li, D., E. Bou-Zeid, and H.A.R. de Bruin. 2012. “Monin-Obukhov Similarity Functions for the Structure Parameters of Temperature and Humidity”. Boundary-Layer Meteorology 145: 45–67. doi:10.1007/s10546-011-9660-y. Reference Link
Li, D., E. Bou-Zeid, and M. Oppenheimer. 2014. “The Effectiveness of Cool and Green Roofs As Urban Heat Island Mitigation Strategies”. Environmental Research Letters 9. doi:10.1088/1748-9326/9/5/055002. Reference Link
Li, D., and E. Bou-Zeid. 2011. “Coherent Structures and the Dissimilarity of Turbulent Transport of Momentum and Scalars in the Unstable Atmospheric Surface Layer”. Boundary-Layer Meteorology 140: 243–262. doi:10.1007/s10546-011-9613-5. Reference Link
Li, D., and E. Bou-Zeid. 2014. “Quality and Sensitivity of High-Resolution Numerical Simulation of Urban Heat Islands”. Environmental Research Letters 9. doi:10.1088/1748-9326/9/5/055001. Reference Link
Wang, L., D. Li, Z. Gao, T. Sun, X. Guo, and E. Bou-Zeid. 2014. “Erratum To: Turbulent Transport of Momentum and Scalars Above an Urban Canopy (Boundary-Layer Meteorol, 10.1007 S10546-013-9877-Z)”. Boundary-Layer Meteorology 150: 513–514. doi:10.1007/s10546-014-9910-x. Reference Link
Katul, G.G., D. Li, M. Chameki, and E. Bou-Zeid. 2013. “Mean Scalar Concentration Profile in a Sheared and Thermally Stratified Atmospheric Surface Layer”. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics 87. doi:10.1103/PhysRevE.87.023004. Reference Link
Li, D., and E. Bou-Zeid. 2013. “Synergistic Interactions Between Urban Heat Islands and Heat Waves: The Impact in Cities Is Larger Than the Sum of Its Parts”. Journal of Applied Meteorology and Climatology 52: 2051–2064. doi:10.1175/JAMC-D-13-02.1. Reference Link
Li, D., G.G. Katul, and E. Bou-Zeid. 2012. “Mean Velocity and Temperature Profiles in a Sheared Diabatic Turbulent Boundary Layer”. Physics of Fluids 24. doi:10.1063/1.4757660. Reference Link
Katul, G.G., D. Li, M. Chamecki, and E. Bou-Zeid. 2013. “Erratum: Mean Scalar Concentration Profile in a Sheared and Thermally Stratified Atmospheric Surface Layer (Physical Review E (2013) 87 (023004) DOI:10.1103 PhysRevE.87.023004)”. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics 87. doi:10.1103/PhysRevE.87.039903. Reference Link
Parolari, A.J., D. Li, E. Bou-Zeid, G.G. Katul, and S. Assouline. 2016. “Climate, Not Conflict, Explains Extreme Middle East Dust Storm”. Environmental Research Letters 11. doi:10.1088/1748-9326/11/11/114013. Reference Link
Li, D., G.G. Katul, and E. Bou-Zeid. 2015. “Turbulent Energy Spectra and Cospectra of Momentum and Heat Fluxes in the Stable Atmospheric Surface Layer”. Boundary-Layer Meteorology 157: 1–21. doi:10.1007/s10546-015-0048-2. Reference Link
Assouline, S., D. Li, S. Tyler, J. Tanny, S. Cohen, E. Bou-Zeid, M. Parlange, and G.G. Katul. 2016. “On the Variability of the Priestley-Taylor Coefficient over Water Bodies”. Water Resources Research 52: 150–163. doi:10.1002/2015WR017504. Reference Link
Ramamurthy, P., D. Li, and E. Bou-Zeid. 2017. “High-Resolution Simulation of Heatwave Events in New York City”. Theoretical and Applied Climatology 128: 89–102. doi:10.1007/s00704-015-1703-8. Reference Link