Multiscale Modeling and Evaluation of Urban Surface Energy Balance in the Phoenix Metropolitan Area

Autor: Matei Georgescu, Winston T. L. Chow, S. R. Shaffer, Peter Hyde, Alex Mahalov, Mohamed Moustaoui, Benjamin L. Ruddell, G. D. Jenerette
Rok vydání: 2015
Předmět:
Zdroj: Journal of Applied Meteorology and Climatology. 54:322-338
ISSN: 1558-8432
1558-8424
DOI: 10.1175/jamc-d-14-0051.1
Popis: Physical mechanisms of incongruency between observations and Weather Research and Forecasting (WRF) Model predictions are examined. Limitations of evaluation are constrained by (i) parameterizations of model physics, (ii) parameterizations of input data, (iii) model resolution, and (iv) flux observation resolution. Observations from a new 22.1-m flux tower situated within a residential neighborhood in Phoenix, Arizona, are utilized to evaluate the ability of the urbanized WRF to resolve finescale surface energy balance (SEB) when using the urban classes derived from the 30-m-resolution National Land Cover Database. Modeled SEB response to a large seasonal variation of net radiation forcing was tested during synoptically quiescent periods of high pressure in winter 2011 and premonsoon summer 2012. Results are presented from simulations employing five nested domains down to 333-m horizontal resolution. A comparative analysis of model cases testing parameterization of physical processes was done using four configurations of urban parameterization for the bulk urban scheme versus three representations with the Urban Canopy Model (UCM) scheme, and also for two types of planetary boundary layer parameterization: the local Mellor–Yamada–Janjić scheme and the nonlocal Yonsei University scheme. Diurnal variation in SEB constituent fluxes is examined in relation to surface-layer stability and modeled diagnostic variables. Improvement is found when adapting UCM for Phoenix with reduced errors in the SEB components. Finer model resolution is seen to have insignificant (
Databáze: OpenAIRE