Tree canopy effects on simulated water stress in Southern African savannas

被引:34
作者
Caylor, KK [1 ]
Shugart, HH
Rodriguez-Iturbe, I
机构
[1] Princeton Univ, Dept Civil & Environm Engn, Princeton, NJ 08540 USA
[2] Univ Virginia, Dept Environm Sci, Charlottesville, VA 22904 USA
关键词
energy and water balance model; tree canopies; soil moisture; water stress; rainfall; southern Africa; Kalahari Transect;
D O I
10.1007/s10021-004-0027-9
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
A coupled energy and water balance model is used to simulate the effects of large tree canopies on soil moisture and water stress across a series of sites spanning a regional moisture gradient in southern Africa. The model tracks evapotranspiration from five components of the land surface at each site-the tree canopy, the grass under and between tree canopies, and the bare soil under and between tree canopies. The soil moisture dynamics are simulated at daily time steps and driven by a stochastic model of storm arrivals and storm depth. Evapotranspiration is modeled using the Priestley-Taylor approach, with potential evapotranspiration scaled by soil moisture availability. The soil moisture under tree canopies is compared to the soil moisture between tree canopies, and differences in average annual soil moisture stress conditions are analyzed at each site. The spatial distribution of large trees has important consequences for small-scale soil moisture dynamics across the rainfall gradient. The results indicate that tree canopies serve to reduce soil moisture stress of under-canopy vegetation in the middle of the rainfall gradient. At the dry end of the rainfall gradient, the effect of tree canopies on soil moisture is dependent on the amount of rainfall received in a given growing season.
引用
收藏
页码:17 / 32
页数:16
相关论文
共 76 条
[1]  
[Anonymous], 1984, ECOLOGY NEOTROPICAL
[2]  
[Anonymous], THESIS U WITWATERSRA
[3]   HAVE SOUTHERN TEXAS SAVANNAS BEEN CONVERTED TO WOODLANDS IN RECENT HISTORY [J].
ARCHER, S .
AMERICAN NATURALIST, 1989, 134 (04) :545-561
[4]  
ATJAY GL, 1987, GLOBAL CARBON CYCLE, P129
[5]   COMPARATIVE EFFECTS OF ISOLATED TREES ON THEIR UNDERCANOPY ENVIRONMENTS IN HIGH-RAINFALL AND LOW-RAINFALL SAVANNAS [J].
BELSKY, AJ ;
MWONGA, SM ;
AMUNDSON, RG ;
DUXBURY, JM ;
ALI, AR .
JOURNAL OF APPLIED ECOLOGY, 1993, 30 (01) :143-155
[6]   THE EFFECTS OF TREES ON THEIR PHYSICAL, CHEMICAL, AND BIOLOGICAL ENVIRONMENTS IN A SEMI-ARID SAVANNA IN KENYA [J].
BELSKY, AJ ;
AMUNDSON, RG ;
DUXBURY, JM ;
RIHA, SJ ;
ALI, AR ;
MWONGA, SM .
JOURNAL OF APPLIED ECOLOGY, 1989, 26 (03) :1005-1024
[7]   A simple water and energy balance model designed for regionalization and remote sensing data utilization [J].
Boulet, G ;
Chehbouni, A ;
Braud, I ;
Vauclin, M ;
Haverkamp, R ;
Zammit, C .
AGRICULTURAL AND FOREST METEOROLOGY, 2000, 105 (1-3) :117-132
[8]  
HADLEY M., 1970, Annual review of ecology and systematics., V1, P125, DOI 10.1146/annurev.es.01.110170.001013
[9]  
Box E. O., 1981, MACROCLIMATE PLANT F
[10]   Effects of woody plants on microclimate in a semiarid woodland: Soil temperature and evaporation in canopy and intercanopy patches [J].
Breshears, DD ;
Nyhan, JW ;
Heil, CE ;
Wilcox, BP .
INTERNATIONAL JOURNAL OF PLANT SCIENCES, 1998, 159 (06) :1010-1017