Fuxing Wang
PhD, climate researcher and model developer. Research leader.

Fuxing Wang
Contact, network and CV
- Email: fuxing.wang@smhi.se
- Phone +46 11-495 8405
- Research Gate: Fuxing_Wang
Publications
Fields of work
Improve high resolution climate model physical parameterization includes atmosphere physics and the interaction with land, vegetation or sea. Development of the models numerical algorithms/codes and introducing new parameterizations. Application of models for different geographical areas in climatological studies of current and future climate. Evaluation and analysis of model simulations.
Research interests
- Regional climate model development
- Land surface – atmosphere interaction
- Land surface model
Special competences
Model development and data analysis.
Towards better understanding the urban environment and its interactions with regional climate change - The WCRP CORDEX Flagship Pilot Study URB-RCC
Gaby S. Langendijk, Tomas Halenka, Peter Hoffmann, Marianna Adinolfi, Aitor Aldama Campino, Olivier Asselin, Sophie Bastin, Benjamin Bechtel, Michal Belda, Angelina Bushenkova, Angelo Campanale, Kwok Pan Chun, Katiana Constantinidou, Erika Coppola, Matthias Demuzere, Quang-Van Doan, Jason Evans, Hendrik Feldmann, Jesus Fernandez, Lluis Fita, Panos Hadjinicolaou, Rafiq Hamdi, Marie Hundhausen, David Grawe, Frederico Johannsen, Josipa Milovac, Eleni Katragkou, Nour El Islam Kerroumi, Sven Kotlarski, Benjamin Le Roy, Aude Lemonsu, Christopher Lennard, Mathew Lipson, Shailendra Mandal, Luis E. Munoz Pabon, Vassileios Pavlidis, Joni-Pekka Pietikaeinen, Mario Raffa, Eloisa Raluy-Lopez, Diana Rechid, Rui Ito, Jan-Peter Schulz, Pedro M. M. Soares, Yuya Takane, Claas Teichmann, Marcus Thatcher, Sara Top, Bert Van Schaeybroeck, Fuxing Wang, Jiacan Yuan
A new optimal PV installation angle model in high-latitude cold regions based on historical weather big data
Tianqi Ruan, Fuxing Wang, Monika Topel, Bjorn Laumert, Wujun Wang
Assessing the impacts of physiography refinement on Stockholm summer urban temperature simulated with an offline land surface model
Fuxing Wang, Danijel Belušić, Jorge Humberto Amorim, Isabel Ribeiro