首页> 外文期刊>Quaternary International >Hydrological reconstruction of Holocene Paleofloods in Baoji-Tianshui gorge, upper Weihe River basin, China
【24h】

Hydrological reconstruction of Holocene Paleofloods in Baoji-Tianshui gorge, upper Weihe River basin, China

机译:渭河上游宝鸡-天水峡谷全新世古洪水的水文重建

获取原文
获取原文并翻译 | 示例
           

摘要

A detailed field study was conducted on the palaeoflood deposit profile in the Baoji-Tianshui Gorge in the upper Weihe River. The sequence of palaeoflood events was established through field observation and grain size analysis with chronological supports from Optical stimulated luminescence (OSL) dates and from archaeologically-constrained age frameworks. The paleoflood peak water level and peak discharge were reconstructed using the "pinch-out elevation method" and the "thickness-sediment content relationship." The results show that three large-scale paleoflood events occurred during a period of 3200-3000 yr BP in the Baoji-Tianshui Gorge, upper Weihe River. The peak water levels varied between 660.48 and 661.40 m and the peak discharge varied between 23,200 and 25,200 m(3)/s among the three large-scale paleoflood events. The same methodology was used to calculate the modern flood peak discharges that yielded a deviation of only 3.6% between the reconstructed and measured peak discharges, further verifying the acceptance of this method for the reconstruction of paleoflood peak discharges. This studyexpanded the database of the palaeoflood hydrology research in the Weihe River and the expanded database may be useful in providing important information for projects such as water conservancy, hydropower, engineering construction, flood control, and disaster mitigation.
机译:对渭河上游宝鸡-天水峡古洪水沉积剖面进行了详细的实地研究。通过现场观察和粒度分析,以光学激发发光(OSL)日期和受考古学约束的年龄框架的时间顺序,建立古洪水事件的序列。使用“收缩抬高法”和“厚度-沉积物含量关系”重建古洪水峰值水位和峰值流量。结果表明,在渭河上游宝鸡天水峡3200- 3000年BP期间发生了3次大规模古洪水事件。在三个大规模古洪水事件中,峰值水位在660.48至661.40 m之间变化,峰值流量在23,200至25,200 m(3)/ s之间变化。使用相同的方法来计算现代洪水峰值流量,在重建和测量的峰值流量之间仅产生3.6%的偏差,进一步证明了该方法在重建古洪水峰值流量方面的可接受性。这项研究扩展了渭河古洪水水文研究的数据库,扩展后的数据库可能有助于为水利,水电,工程建设,防洪和减灾等项目提供重要信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号