GSTDTAP  > 气候变化
DOI10.1002/2018JD028377
Evaluation of the WRF-Urban Modeling System Coupled to Noah and Noah-MP Land Surface Models Over a Semiarid Urban Environment
Salamanca, Francisco1,2; Zhang, Yizhou3; Barlage, Michael4; Chen, Fei4; Mahalov, Alex1,2; Miao, Shiguang3
2018-03-16
发表期刊JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES
ISSN2169-897X
EISSN2169-8996
出版年2018
卷号123期号:5页码:2387-2408
文章类型Article
语种英语
国家USA; Peoples R China
英文摘要

We have augmented the existing capabilities of the integrated Weather Research and Forecasting (WRF)-urban modeling system by coupling three urban canopy models (UCMs) available in the WRF model with the new community Noah with multiparameterization options (Noah-MP) land surface model (LSM). The WRF-urban modeling system's performance has been evaluated by conducting six numerical experiments at high spatial resolution (1km horizontal grid spacing) during a 15day clear-sky summertime period for a semiarid urban environment. To assess the relative importance of representing urban surfaces, three different urban parameterizations are used with the Noah and Noah-MP LSMs, respectively, over the two major cities of Arizona: Phoenix and Tucson metropolitan areas. Our results demonstrate that Noah-MP reproduces somewhat better than Noah the daily evolution of surface skin temperature and near-surface air temperature (especially nighttime temperature) and wind speed. Concerning the urban areas, bulk urban parameterization overestimates nighttime 2m air temperature compared to the single-layer and multilayer UCMs that reproduce more accurately the daily evolution of near-surface air temperature. Regarding near-surface wind speed, only the multilayer UCM was able to reproduce realistically the daily evolution of wind speed, although maximum winds were slightly overestimated, while both the single-layer and bulk urban parameterizations overestimated wind speed considerably. Based on these results, this paper demonstrates that the new community Noah-MP LSM coupled to an UCM is a promising physics-based predictive modeling tool for urban applications.


领域气候变化
收录类别SCI-E
WOS记录号WOS:000428437100002
WOS关键词COOLING ENERGY DEMAND ; CANOPY MODEL ; EXTREME HEAT ; EXPANSION ; CLIMATE ; LAYER ; PARAMETERIZATION ; IMPLEMENTATION ; SIMULATIONS ; PREDICTION
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/33544
专题气候变化
作者单位1.Arizona State Univ, Sch Math & Stat Sci, Tempe, AZ 85281 USA;
2.Arizona State Univ, Julie Ann Wrigley Global Inst Sustainabil, Tempe, AZ 85281 USA;
3.China Meteorol Adm, Inst Urban Meteorol, Beijing, Peoples R China;
4.Natl Ctr Atmospher Res, Res Applicat Lab, POB 3000, Boulder, CO 80307 USA
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Salamanca, Francisco,Zhang, Yizhou,Barlage, Michael,et al. Evaluation of the WRF-Urban Modeling System Coupled to Noah and Noah-MP Land Surface Models Over a Semiarid Urban Environment[J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,2018,123(5):2387-2408.
APA Salamanca, Francisco,Zhang, Yizhou,Barlage, Michael,Chen, Fei,Mahalov, Alex,&Miao, Shiguang.(2018).Evaluation of the WRF-Urban Modeling System Coupled to Noah and Noah-MP Land Surface Models Over a Semiarid Urban Environment.JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,123(5),2387-2408.
MLA Salamanca, Francisco,et al."Evaluation of the WRF-Urban Modeling System Coupled to Noah and Noah-MP Land Surface Models Over a Semiarid Urban Environment".JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES 123.5(2018):2387-2408.
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