论文

川中丘陵区和三峡地区小流域侵蚀产沙的塘库沉积137Cs断代

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  • 1. 中国科学院水利部成都山地灾害与环境研究所,成都610041;
    2. 中国科学院研究生院,北京100039;
    3. 中国科学院地球环境研究所黄土与第四纪地质国家重点实验室,西安710075
齐永青(1977-),男,河北高阳人,博士生。主要从事水土保持研究。E-mail:qiyongqing@126.com

收稿日期: 2005-09-04

  修回日期: 2006-02-04

  网络出版日期: 2006-08-15

基金资助

国家自然科学基金项目(40271015);中国科学院知识创新工程项目(KZCX3-SW330,KZCX3-SW422);973项目(2003CB415202);国际原子能机构CRP项目(12300/RO)

A study on soil erosion induced sediment yield by reservoir and pond deposits dating with 137Cs in small catchments of the hilly Sichuan Basin and the Three Gorges Region

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  • 1. Institute of Mountain Hazards and Environment,CAS,Chengdu 610041,China;
    2. Graduate School of the Chinese Academy of Sciences,Beijing 100039,China;
    3. State Key Laboratoryof Loess and Quaternary Geology,Institute of Earth Environment,CAS,Xi'an 710075,China

Received date: 2005-09-04

  Revised date: 2006-02-04

  Online published: 2006-08-15

摘要

选择川中丘陵区和三峡地区四川盐亭、南充和重庆开县的4个小流域,采集塘库沉积泥沙137Cs样品,确定了1963年以来塘库淤沙量,并据此分析了流域输沙模数和侵蚀模数。研究表明,开县春秋沟的淤沙模数最高,为1869t.km-2.a-1;盐亭武家沟和集流沟分别为701t.km-2.a-1和710 t.km-2.a-1;南充天马湾沟为566 t.km-2.a-1。对小流域地貌特征的分析和谷地水田取样结果表明,除塘库淤积区外,各小流域谷地内基本无泥沙淤积。因此,除南充天马湾沟按现有水面面积作为淤积面积求算的淤沙模数明显偏小外,其他小流域的塘库淤沙模数基本可以表征各研究小流域的侵蚀模数。对研究小流域侵蚀产沙影响因素的分析表明,除降雨和土地利用状况外,地形起伏、土壤抗蚀性及岩层产状也是三地侵蚀程度差异的重要原因。

本文引用格式

齐永青, 张信宝, 贺秀斌, 文安邦, 伏介雄 . 川中丘陵区和三峡地区小流域侵蚀产沙的塘库沉积137Cs断代[J]. 地理研究, 2006 , 25(4) : 641 -648 . DOI: 10.11821/yj2006040010

Abstract

There are a huge number of small reservoirs and ponds with quite high deposition rates in the hilly Sichuan Basin and the Three Gorges Region.Four small catchments with a drainage area of less than 1km2 each in Yanting and Nanchong of Sichuan Province and Kaixian of Chongqing were selected for this study.Incremental samples of sediment deposit profiles for 137Cs dating were collected in the four ponds to estimate the deposition volumes since 1963,and to analyse the specific sediment yields and the average erosion rates of those catchments.The highest specific sediment yields for deposition in the ponds is 1869 t·km-2·a-1for the Chunqiu Gully in Kaixian,and 701 t·km-2·a-1 and 710 t·km2·a-1for Wujia and Jiliu gullies in Yanting,respectively.The yield in the pond is about 566 t·km-2·a-1 for the Tianmawan Gully in Nanchong.Being small drainage areas,the four study catchments have little valley areas and relatively high channel gradients.The 137Cs distribution depths are close to the plough depth of 25 cm in the paddy field of the Tianmawan Gully.As the original valley areas above the dam in the three catchments in Yanting and Kaixian were predominantly occupied by ponds,little sediment has accumulated in the upstream valley of the ponds since the dam construction in the 1950s.The small gullies on slopes above the valleys are steep and the bedrock bottoms of the gullies indicate no sediment accumulation occurring there.The sediment delivery ratio should be close to 1 for the slopes.By the above analyses of the topographic characteristics and the 137Cs depth distribution in paddy fields of the valleys,no significant sediment accumulation occurs in the valley areas of the study catchments.So it is reasonable to use the specific sediment yields for deposition in ponds to represent the specific sediment yield and soil erosion rate of the study catchments excluding the Tianmawan Gully in Nanchong where the current water surface area of the pond used for estimating the yield is underestimated.Clearly,the annual precipitations and the land use conditions,especially the cropland ratios are the important erosion factors of the study catchments.On the other hand,the landform,soil erodibility,and bedrock bedding conditions are the significant erosion factors too.The Chunqiu Gully is underlain of the Jurassic Shaximiao Group with medium erosion resistance and high soil erosion rate.The Wujia and Jiliu gullies in Yanting are underlain of the Jurassic Penglaizhen Group with high proportion of sandstones so they have high erosion resistance and low soil erosion rate.

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