Orographic Modification of Convection and Flow Kinematics by the Oregon Coast Range and Cascades during IMPROVE-2

被引:34
作者
Colle, Brian A. [1 ]
Lin, Yanluan [1 ]
Medina, Socorro [2 ]
Smull, Bradley F. [2 ]
机构
[1] SUNY Stony Brook, Sch Marine & Atmospher Sci, Stony Brook, NY 11794 USA
[2] Univ Washington, Dept Atmospher Sci, Seattle, WA 98195 USA
基金
美国国家科学基金会;
关键词
D O I
10.1175/2008MWR2369.1
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
This paper describes the kinematic and precipitation evolution accompanying the passage of a cold baroclinic trough over the Central Oregon Coast Range and Cascades during 4-5 December 2001 of the second Improvement of Microphysical Parameterization through Observational Verification Experiment (IMPROVE-2) field project. In contrast to previously documented IMPROVE-2 cases, the 4-5 December event featured weaker cross-barrier winds (15-20 m s(-1)), weaker moist static stability (N-m < 0.006 s(-1)), and convective cells that preferentially intensified over Oregon's modest coastal mountain range. These cells propagated eastward and became embedded within the larger orographic precipitation shield over the windward slopes of the Cascades. The Weather Research and Forecasting Model (version 2.2) at 1.33-km grid spacing was able to accurately replicate the observed evolution of the precipitation across western Oregon. As a result of the convective cell development, the precipitation enhancement over the Coast Range (500-1000 m MSL) was nearly as large as that over the Cascades (1500-2000 m MSL). Simulations selectively eliminating the elevated coastal range and differential land-sea friction across the Pacific coastline illustrate that both effects were important in triggering convection and in producing the observed coastal precipitation enhancement. A sensitivity run employing a smoothed representation of the Cascades illustrates that narrow ridges located on that barrier's windward slope had a relatively small (<5%) impact on embedded convection and overall precipitation amounts there. This is attributed to the relatively weak gravity wave motions and low freezing level, which limited precipitation growth by riming.
引用
收藏
页码:3894 / 3916
页数:23
相关论文
共 59 条
[1]   Analysis and simulation of local and regional conditions for the rainfall over the Lago Maggiore Target Area during MAP IOP 2b [J].
Asencio, N ;
Stein, J ;
Chong, M ;
Gheusi, F .
QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY, 2003, 129 (588) :565-586
[2]  
Bougeault P, 2001, B AM METEOROL SOC, V82, P433, DOI 10.1175/1520-0477(2001)082<0433:TMSOP>2.3.CO
[3]  
2
[4]   Observations and impacts of upstream blocking during a widespread orographic precipitation event [J].
Bousquet, O ;
Smull, BF .
QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY, 2003, 129 (588) :391-409
[5]  
Bousquet O, 2003, J APPL METEOROL, V42, P1497, DOI 10.1175/1520-0450(2003)042&lt
[6]  
1497:AAPFWD&gt
[7]  
2.0.CO
[8]  
2
[9]   High-resolution simulation of Hurricane Bonnie (1998). Part II: Water budget [J].
Braun, SA .
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2006, 63 (01) :43-64
[10]  
Braun SA, 1999, J ATMOS SCI, V56, P3366, DOI 10.1175/1520-0469(1999)056<3366:EOCOOL>2.0.CO