Arid
DOI10.1175/1525-7541(2000)001<0095:SOTSHP>2.0.CO;2
Simulations of the summer hydrometeorological processes of Lake Kinneret
Avissar, R; Pan, H
通讯作者Avissar, R
来源期刊JOURNAL OF HYDROMETEOROLOGY
ISSN1525-755X
EISSN1525-7541
出版年2000
卷号1期号:1页码:95-109
英文摘要

Lake Kinneret is a 168-km(2) lake located in northern Israel. It provides about 50% of the drinking water consumed in this arid country. To manage correctly this vital water resource, it is essential to understand the various hydrometeorological processes that affect its water budget and, in particular, its evaporation. The complexity of the terrain in this region (varying from approximate to 2800 m to approximate to-410 m within a short distance), combined with different types of soil and ground covers surrounding the lake, results in complicated microscale and mesoscale atmospheric motions, including sea, lake, and land breezes, as well as anabatic and katabatic winds. The Regional Atmospheric Modeling System (RAMS), a state-of-the-art nonhydrostatic model with two-way interactive multigrid nesting and four-dimensional data assimilation capabilities, was used, together with observations collected near the western and eastern shores of the lake, to study these processes. It was configured with two nested grids centered in the middle of the lake: 1) a coarse grid with 4 km x 4 km grid elements representing a 264 km X 240 km domain including Mount Hermon, the Dead Sea, the Golan Heights, and the Mediterranean coast; and 2) a fine grid with 1 km X 1 km grid elements covering a 42 km x 50 km domain. Two three-day periods in the summers of 1992 and 1993, during which hydrometeorological observations were available, were simulated. To account for synoptic conditions, the National Centers for Environmental Prediction-National Center for Atmospheric Research mandatory-level reanalyses produced every 6 h for these periods were assimilated by the model. The strength and timing of the various atmospheric motions that develop in that region and their interactions significantly affect the hydrometeorological processes of the lake, which are subject to important diurnal and spatial variations of wind intensity and direction, temperature, humidity, and fluxes. Since these processes have a strong feedback on the lake hydrodynamics and thermal structure, it is concluded that the development of a coupled lake-atmosphere model is needed to provide good estimates of lake evaporation when lake water surface temperatures are not available. Here, it is demonstrated that RAMS performs properly, given the particular complexity of the Lake Kinneret system and the uncertainty inherent in observations above turbulent water.


类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000089483000008
WOS关键词BOUNDARY-LAYER ; COORDINATE TRANSFORMATION ; MODELING SYSTEM ; SEA-BREEZE ; EVAPORATION ; CIRCULATION ; VARIABILITY ; TERRAIN ; FLUID
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/139421
作者单位(1)Rutgers State Univ, Cook Coll, Dept Environm Sci, Ctr Environm Predict, New Brunswick, NJ 08901 USA
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Avissar, R,Pan, H. Simulations of the summer hydrometeorological processes of Lake Kinneret[J],2000,1(1):95-109.
APA Avissar, R,&Pan, H.(2000).Simulations of the summer hydrometeorological processes of Lake Kinneret.JOURNAL OF HYDROMETEOROLOGY,1(1),95-109.
MLA Avissar, R,et al."Simulations of the summer hydrometeorological processes of Lake Kinneret".JOURNAL OF HYDROMETEOROLOGY 1.1(2000):95-109.
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