14 6 2005 12 JOURNAL OF NATURAL D ISASTERS Vol. 14, No. 6 Dec., 2005 : 100424574 (2005) 0620141206 GIS 1, 1, 2 (1., 130024; 2., 130021) :,, 4,, GIS,,,, : ;; GIS ; ; : X43 : A G IS - ba sed a ssessm en t and zon ing of flood /wa terlogg ing d isa ster r isk: a ca se study on m iddle and lower reaches of L iaohe R iver ZHANG Hui 1, ZHANG J i2quan 1, HAN Jun2shan 2 (1. College of U rban and Environmental Sciences, Northeast Normal University, Changchun 130024, China; 2. Songliao W ater Resources Comm ission, M inistry ofw ater Resources, Changchun 130021, China) Abstract:A lthough many studies have m ade assessment of flood /waterlogging disaster risk now, they have not de2 veloped an integrated index. This study p resents a m ethodology for risk assessment and zoning of flood /waterlogging in m iddle and lower reaches of L iaohe R iver of Northeast China based on geographical information system s ( GIS) and the technology of natural disaster risk assessment from the viewpoints of climatology, geography, disaster sci2 ence, environmental science and so on. Key words: flood /waterlogging disaster risk; m iddle and lower reaches of L iaohe R iver; GIS; natural disaster risk assessment; flood /waterlogging disaster risk index( FDR I),,,,,, [ 1 7 ],, GIS,, : ( flood /waterlogging disaster risk index, FDR I), : 2005-11 - 20; : 2005-12 - 05 : (2004BA528B - 3-1) ;; ( ) : (1981 - ),,,,.
142 14, 1 ( 1), 122 12 E 125 32 E, 40 30 N 43 N, 4. 5 10 4 km 2,,, 1 Fig. 1 Adm inistration map of counties in m iddle and lower reaches of L iaohe R iver,,,, 4 9, - 41. 1 300 950mm,,, 7, 8,50%,,,,,,,, 2 2. 1 2. 1. 1, [ 8, 9 ],,, (H ) ( E) (V )(R ),, [ 10 ] : 2. 1. 2 (AHP) = (H) ( E) (V ) (R ) [ 11 ] (AHP) :,,,, [ 12 13 ] 2. 1. 3 (WCA ) [ 4, 14 15 ] (WCA )i, i j
6 : GIS 143, : C V j = m Q V ij W Ci (1) i =1 C V j, Q V ij j i (Q V ij 0), W C i i ( 0 W Ci 1), AHP, m,,,,,,, ( GIS),,, GIS GIS, 2. 2 2004 [ 16 ], ( http: / / www. naturalresources. csdb. cn /), [ 17 ] 3, 7-8,3d,24h,,,,, 3. 1 [ 8 9 ] [ 10 ] ( FDR I) 2 Fig. 2 Formation mechanism of natural disaster risk ( 2) [ 1, 3 ] ( 3),,,, :,,,,, : 3. 2 = f (,,, ), ( 2) ( 3), FDR I ( 4),
144 14, ( ) ; ; ; 3 Fig. 3 Formation p rincip le of flood /waterlogging disaster risk 4 Fig. 4 Concep tual framework of flood /waterlogging disaster risk 3. 3 5 15,,,,, 0 10 : X ij = X ij 10 (2) X imaxj, X ij X ij j i, X imaxj i 3. 4,, (WCA ) (AHP), : I FDR = (H W H ) ( E W E ) (V WV ) [0. 1 (1 - a) R + a ] (3a) H =W H1 X H1 +W H2 X H2 +W H3 X H3 +W H4 X H4 (3b) E =W E1 X E1 +W E2 X E2 +W E3 X E3 +W E4 X E4 (3c) V =W V1 X V1 + W V2 X V2 + W V3 X V3 + W V4 X V4 (3d) R =W R1 X R1 + W R2 X R2 + W R3 X R3 (3e), I FDR,,, ; H, E, V, R (WCA) ; W H, W E, W V ; (3c) (3e), X i i ; W i i, a (0 a 1), I FDR (AHP) ( 5),,, AHP, AHP,,,,, I FDR,,,, (W H, W E, W V ) 0. 45, 0. 36, 0. 19,,
6 : GIS 145, I FDR,, ( H = 0 E = 0 V = 0, I FDR = 0) ;,, ( R = 0, I FDR = a ( H W H E W E V WV ) ), a = 0. 75 4, GIS 4,, 5 Fig. 5 W eight values of indices in FDR I s, ( 6),( ),, ;,;, ;,,, ( 7),, ( ), 6 Fig. 6 H istogram from factor s analysis of risk in m iddle and lower reaches of L iaohe R iver
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