Geostatistical interpolation of space-time rainfall on Tamshui River basin, Taiwan

被引:27
作者
Cheng, Shin-Jen
Hsieh, Huey-Hong
Wang, Yu-Ming
机构
[1] Diwan Coll Management, Dept Environm & Resources Engn, Tainan 721, Taiwan
[2] Diwan Coll Management, Dept Informat Management, Tainan 721, Taiwan
关键词
semi-variogram; geostatiscal theory; cross-validation; spatial-temporal rainfall;
D O I
10.1002/hyp.6535
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
Taiwan suffers from heavy storm rainfall during the typhoon season. This usually causes large river runoff, overland flow. erosion. landslides. debris flows. loss of power, etc. In order to evaluate storm impacts on the downstream basin, a real-time hydrological modelling is used to estimate potential hazard areas. This can be used as a decision-support system for the Emergency Response center, National Fire Agency Ministry, to make 'real-time' responses and minimize possible damage to human life and property. This study used 34 observed events from 14 telemetered rain-gauges in the Tamshui River basin. Taiwan, to study the spatial-temporal characteristics of typhoon rainfall. In the study, regionalized theory and cross-semi-variograms were used to identify the spatial-temporal structure of typhoon rainfall. The power form and parameters of the cross-semi-variogram were derived through analysis of the observed data. In the end, cross-validation was used to evaluate the performance of the interpolated rainfall on the river basin. The results show the derived rainfall interpolator represents the observed events well. which indicates the rainfall interpolator can be used as a spatial-temporal rainfall input for real-time hydroloical modelling. Copyright (C) 2007 John Wiley & Sons, Ltd.
引用
收藏
页码:3136 / 3145
页数:10
相关论文
共 20 条
[1]  
[Anonymous], 1971, CAHIERS CTR MORPHOLO
[2]   OPTIMAL ESTIMATION OF THE AVERAGE AREAL RAINFALL AND OPTIMAL SELECTION OF RAIN-GAUGE LOCATIONS [J].
BASTIN, G ;
LORENT, B ;
DUQUE, C ;
GEVERS, M .
WATER RESOURCES RESEARCH, 1984, 20 (04) :463-470
[3]   An approach for evaluating the hydrological effects of urbanization and its application [J].
Cheng, SJ ;
Wang, RY .
HYDROLOGICAL PROCESSES, 2002, 16 (07) :1403-1418
[4]  
Chiles J.-P., 2009, GEOSTATISTICS MODELI, V497
[5]   On the physical geometry concept at the basis of space/time geostatistical hydrology [J].
Christakos, G ;
Hristopulos, DT ;
Bogaert, P .
ADVANCES IN WATER RESOURCES, 2000, 23 (08) :799-810
[6]  
CHUA SH, 1982, J HYDROL, V57, P713
[7]  
DELHOMME JP, 1978, WATER RESOURCES, V5, P269
[8]   Geostatistical approaches for incorporating elevation into the spatial interpolation of rainfall [J].
Goovaerts, P .
JOURNAL OF HYDROLOGY, 2000, 228 (1-2) :113-129
[9]   COKRIGING MODEL FOR ESTIMATION OF WATER-TABLE ELEVATION [J].
HOEKSEMA, RJ ;
CLAPP, RB ;
THOMAS, AL ;
HUNLEY, AE ;
FARROW, ND ;
DEARSTONE, KC .
WATER RESOURCES RESEARCH, 1989, 25 (03) :429-438
[10]   DATA REQUIREMENTS FOR KRIGING - ESTIMATION AND NETWORK DESIGN [J].
HUGHES, JP ;
LETTENMAIER, DP .
WATER RESOURCES RESEARCH, 1981, 17 (06) :1641-1650