城市与乡村

基于数值模拟的黄河下游 不同情景溃堤洪水特性

展开
  • 1. 中国科学院地理科学与资源研究所,北京 100101;
    2. 中国科学院研究生院,北京 100049;
    3. 中国科学技术信息研究所, 北京 100038
杨佩国(1977-),男,山东费县人,博士研究生。主要从事环境整治、GIS技术应用和水土资源开发与利用方面的研究。E-mail :yangpg.04b@igsnrr.ac.cn

收稿日期: 2006-08-21

  修回日期: 2007-01-24

  网络出版日期: 2007-03-25

基金资助

国家"十五"科技攻关项目(96-920-09-01)资助

The analysis of embankment-break flood characteristics of the lower Yellow River based on the numerical simulation in different scenarios

Expand
  • 1. Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China;
    2. Graduate School of the Chinese Academy of Sciences, Beijing 100049, China;
    3. Institute of Scientific and Technical Information of China, Beijing 100038, China

Received date: 2006-08-21

  Revised date: 2007-01-24

  Online published: 2007-03-25

Supported by

国家"十五"科技攻关项目(96-920-09-01)资助

摘要

通过研究黄河下游地区的溃堤洪水特性,为防洪减灾工作提供科学依据。本文以黄河下游地区的DEM,1958、1982、1996年典型历史洪水和2000年土地利用数据为模型初始输入,分4个模拟情景,依据黄河溃堤水流的特性,利用二维非恒定流模型对黄河下游不同位置决口情景下的洪水演进特性进行模拟,结果表明:洪水在演进过程中都会侵夺沿途河流行洪,进入下游后洪水会顺河归槽;在同一河段,同一年型洪水北岸不同位置溃口情景所淹没的面积大于南岸对应位置的淹没面积;黄河两岸洪泛区地理位置的差异,使两岸的洪灾程度具有区域差异;水深且流速大的洪水淹没主流区面积相对较小,水浅且流速小的非主流区面积相对较大。

本文引用格式

杨佩国, 杨勤业, 吴绍洪, 马 欣, 康相武, 夏富强, 戴尔阜 . 基于数值模拟的黄河下游 不同情景溃堤洪水特性[J]. 地理研究, 2007 , 26(2) : 328 -337 . DOI: 10.11821/yj2007020014

Abstract

Flood disaster is still a threat in the lower Yellow River due to unusual precipitation caused by the deposit of channel, the hidden danger in the embankment and unfavorable riverbed in the lower Yellow River. Study on the embankment-break flood characteristics of the lower Yellow River can afford the scientific basis for flood disaster mitigation. According to the characteristics of the embankment-break flood in the Yellow River,flood routing characteristics of embankment-break is simulated at four different locations of the lower Yellow River by inputting terrain data, typical historical flood data and land use data of the study area to two-dimensional unsteady-state flow model. Simulated results show that: Firstly, routing flood encroach the rivers on the way and enter into the rivers after reaching the lower reaches;secondly, in the same river reach, flood submerged area of north band is bigger than the corresponding location of south bank towards the same historical flood;thirdly, it is different in flood submerged degree of different regions due to the different spatial locations of floodplain; and fourthly, the area of mainstream where flood depth is high and flood velocity is quick is relatively small, but the area of non-mainstream where flood depth is low and flood velocity is slow is relatively big. Flood disaster risk in the protected zone of the embankment will be analyzed by using the results of the simulated flood in this paper, on the basis of the simulated results, the spatial pattern of the flood disaster risk in the protected zone will be analyzed in the lower Yellow River in the future. The attempt on the simulated methods and technique of the flood routing can serve as a reference to the researches in other similar regions. In this study, some factors such as the sediment, infiltration and evaporation weren't considered, which is a limitation to research the hydraulic characteristic of the levee-breaking flood in the Yellow River. In the succeeding simulation, the sediment should be considered to research the long-term influence on the local environment of preventing flood due to the deposit of the sediment in the riverway. At the same time the surface features should the whole way be close to the reality.

参考文献



[1] 李观义,程晓陶.北江大堤洪水风险信息管理系统研究.水文, 2003,23(3):5~9.



[2] 许炯心.黄河三角洲造陆过程中的陆域水沙临界条件研究.地理研究, 2002,21(2):163~170.



[3] 许炯心.黄河下游河道输沙功能的时间变化及其原因.地理研究, 2006,25(2):276~284.



[4] 陆中臣,周金星,陈浩.黄河下游河床纵剖面形态及其地文学意义.地理研究, 2003,22(1):30~38.



[5] 冯民权,周孝德,郑邦民,等.大庆市多决口洪水的二维动态模拟.四川大学学报(工程科学版),2003,35(2):22~26.



[6] 刘志雨,谢正辉. TOPKAPI模型的改进及其在淮河流域洪水模拟中的应用研究.水文,2003, 23(6):1~7.



[7] 李春红,任立良,左振鲁.基于DEM的三峡区间洪水淹没范围模拟.水文, 2005, 25(1):1~4.



[8] 许有鹏,葛小平,张立峰,等.东南沿海中小流域平原区洪水淹没模拟.地理研究,2005,24(1):38~45.



[9] 姜红梅,任立良,安如. 基于土地利用与地表覆盖遥感信息的洪水过程模拟.河海大学学报, 2004, 32(2):131~135.



[10] 李天文,吴琳,曹颖.基于渭河下游DEM的洪水淹没分析与模拟.水土保持通报, 2005,25(4):53~56.



[11] Yang C R, Tsai C T. Development of A GIS-Based Flood Information System for Floodplain Modeling and Damage Calculation. Journal of the American Water Resources Association, 2000,36(3):567~577.



[12] Zhao D H,et al. Finite-volume two-dimensional unsteady-flow model for river basin. Journal of Hydraulic Engineering, 1994,120(7):863~883.



[13] Ralph A, Wurbs. Dam-breach Flood Wave Models.Journal of Hydraulic Engineering, 1987,113(1): 29~46.



[14] Darby S E,Thorne C R. Numerical simulation of widening and bed deformation of straight sand-bed rivers I: Model Development.ASCE, Journal of Hydraulic Engineering,1996,122(4):184~193.



[15] 温善章,席家治.黄河下游堤防经济防洪标准的初步分析.黄委会设计院规划处,1980.



[16] 周建军,林秉南,王连祥.河道平面二维水流数值计算.水利学报, 1991, (5):8~18.



[17] 夏军强,王光谦,张红武.黄河下游游荡型河段洪水演进与河床变形过程的数值模拟.水动力学研究与进展,2003,18(3): 306~313.



[18] 万洪涛,周成虎,吴应湘,等.黄河下游花园口-夹河滩河段二维洪水模拟.水科学进展,2002,13(2):215~222.



[19] Zoppou C,Roberts S. Numerical solution of two dimensional unsteady dam break. Applied Mathematical Modeling, 2000, 24: 457~475.



[20] 陆中臣,贾亚非,曹银真,等.试论黄河下游北岸可能决口地段及其最大淹没范围.地理研究,1987,6(4):15~25.



[21] 丁大发, 石春先, 宋红霞,等.黄河下游防洪工程体系减灾效益计算模型研究.水科学进展, 2002,13(4):450~455.



[22] 李娜.基于GIS的洪灾风险管理系统.北京:中国水利水电科学研究院博士论文,2002.



[23] 罗来兴. 1938—1947年间的黄河南泛.地理学报, 1953,19(2): 234~243.



[24] 韦春霞,张永祥,陈景秋.溃坝洪水的二维算子分裂——特征线模拟.重庆大学学报,2003,26(9):18~21.



[25] Bellos C V, Sakkas J G. Experimental investigation of two-dimensional dam-break induced flows. Journal of Hydraulic Research,1992,30(1):47~63.



[26] 王船海,李光炽.流域洪水模拟.水利学报, 1996, (3): 44~50.



[27] 李光炽.流域洪水模拟通用模型结构研究.河海大学学报(自然科学版), 2005, 33(1): 14~17.



[28] 李光炽,王船海,周晶晏.二维流场模拟的矩阵标识法.河海大学学报(自然科学版), 2002,30(5): 80~84.



[29] 赵连军,韦直林,谈广鸣,等.小浪底水库2002年调水调沙下游河道洪水演进跟踪模拟计算.水动力学研究与进展, 2004,19(5):578~584.



[30] 王嘉松,倪汉根,金生,等.用TVD显格式模拟一维溃坝洪水波的演进与反射.水利学报, 1998, (5):1~ 5.



[31] 谢作涛,张小峰,袁晶.溃坝洪水数值模拟.水利水运工程学报, 2005,(2):9 ~17.



[32] 张红武,赵连军,王光谦等.黄河下游河道准二维水沙数学模型研究.水利学报, 2003,(4):1~6.



[33] 张红武,黄远东,赵连军,等.黄河下游非恒定流水沙数学模型—II模型验证.水科学进展, 2002, 13(3):271~277.



[34] 曹志芳,李义天.蓄滞洪区平面二维干河床洪水演进数值模拟.应用基础与工程科学学报, 2001,9(1): 74~79.



[35] 黄河流域及西北片水旱灾害编委会.黄河流域水旱灾害.郑州:黄河水利出版社,1996.



[36] 胡明思,骆承政,等.中国历史大洪水.水利电力部,全国暴雨洪水分析计算协调小组办公室,南京水文水资源研究所编,1988,331~343.



[37] 王震宇,程艳红.黄河"96·8"洪水综述.人民黄河, 1996,(11):25~33.



[38] 苏人琼,杨勤业,关志华.黄河流域灾害环境综合治理对策.郑州: 黄河水利出版社, 1997.
文章导航

/