A sensitivity study of high-resolution regional climate simulations to three land surface models over the western United States

被引:57
作者
Chen, Feng [1 ,2 ]
Liu, Changhai [2 ]
Dudhia, Jimy [2 ]
Chen, Ming [2 ]
机构
[1] Zhejiang Inst Meteorol Sci, Hangzhou, Zhejiang, Peoples R China
[2] Natl Ctr Atmospher Res, Boulder, CO 80307 USA
基金
中国国家自然科学基金;
关键词
SNOW COVER; PRECIPITATION; IMPLEMENTATION; WEATHER; MICROPHYSICS; TEMPERATURE; VARIABILITY;
D O I
10.1002/2014JD021827
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
The Weather Research Forecasting model is applied for convection-permitting regional climate simulations over the western United States using three different land surface schemes (Noah, NoahMP, and CLM). Simulated precipitation, temperature, and snow water equivalent (SWE) are evaluated by comparing against Snow Telemetry (SNOTEL) and Parameter-elevation Regressions on Independent Slopes Model (PRISM) observations. The results show that all simulations realistically reproduce the spatial and temporal variability of precipitation without significant sensitivity to the choice of land surface scheme, even though they tend to overestimate the magnitude of the SNOTEL data by about 15%. Comparing the bias with respect to the SNOTEL data, CLM is superior in 2 m maximum temperature, while NoahMP is most skillful in 2 m minimum temperature. Land surface parameterizations have high impacts on snowpack simulations. The SWE peaks too early with an unrealistically low value and also ablates too fast in Noah. NoahMP improves the SWE estimate to some extent, and CLM best represents the observations. Overall, CLM and NoahMP outperform Noah. Further analysis reveals that these differences are largely attributed to distinct rainfall-snowfall partitioning, snow albedo treatment, vegetation treatment, and surface data in these schemes.
引用
收藏
页码:7271 / 7291
页数:21
相关论文
共 59 条
[1]  
[Anonymous], 2007, CLIMATE CHANGE 2007
[2]  
[Anonymous], 2010, GEOPHYS RES LETT, DOI DOI 10.1029/2009GL042194
[3]   Noah land surface model modifications to improve snowpack prediction in the Colorado Rocky Mountains [J].
Barlage, Michael ;
Chen, Fei ;
Tewari, Mukul ;
Ikeda, Kyoko ;
Gochis, David ;
Dudhia, Jimy ;
Rasmussen, Roy ;
Livneh, Ben ;
Ek, Mike ;
Mitchell, Ken .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2010, 115
[4]   Simulation of high-latitude hydrological processes in the Torne-Kalix basin: PILPS phase 2(e) - 1: Experiment description and summary intercomparisons [J].
Bowling, LC ;
Lettenmaier, DP ;
Nijssen, B ;
Graham, LP ;
Clark, DB ;
El Maayar, M ;
Essery, R ;
Goers, S ;
Gusev, YM ;
Habets, F ;
van den Hurk, B ;
Jin, JM ;
Kahan, D ;
Lohmann, D ;
Ma, XY ;
Mahanama, S ;
Mocko, D ;
Nasonova, O ;
Niu, GY ;
Samuelsson, P ;
Shmakin, AB ;
Takata, K ;
Verseghy, D ;
Viterbo, P ;
Xia, YL ;
Xue, YK ;
Yang, ZL .
GLOBAL AND PLANETARY CHANGE, 2003, 38 (1-2) :1-30
[5]   INTERPRETATION OF SNOW-CLIMATE FEEDBACK AS PRODUCED BY 17 GENERAL-CIRCULATION MODELS [J].
CESS, RD ;
POTTER, GL ;
ZHANG, MH ;
BLANCHET, JP ;
CHALITA, S ;
COLMAN, R ;
DAZLICH, DA ;
DELGENIO, AD ;
DYMNIKOV, V ;
GALIN, V ;
JERRETT, D ;
KEUP, E ;
LACIS, AA ;
LETREUT, H ;
LIANG, XZ ;
MAHFOUF, JF ;
MCAVANEY, BJ ;
MELESHKO, VP ;
MITCHELL, JFB ;
MORCRETTE, JJ ;
NORRIS, PM ;
RANDALL, DA ;
RIKUS, L ;
ROECKNER, E ;
ROYER, JF ;
SCHLESE, U ;
SHEININ, DA ;
SLINGO, JM ;
SOKOLOV, AP ;
TAYLOR, KE ;
WASHINGTON, WM ;
WETHERALD, RT ;
YAGAI, I .
SCIENCE, 1991, 253 (5022) :888-892
[6]  
Chen F, 2001, MON WEATHER REV, V129, P569, DOI 10.1175/1520-0493(2001)129<0569:CAALSH>2.0.CO
[7]  
2
[8]  
Chin H.-N. S., 2009, WRF US WORKSH
[9]   The influence of snow cover on Northern Hemisphere climate variability [J].
Cohen, J ;
Entekhabi, D .
ATMOSPHERE-OCEAN, 2001, 39 (01) :35-53
[10]  
Collins M, 2014, CLIMATE CHANGE 2013: THE PHYSICAL SCIENCE BASIS, P1029