首页> 外文期刊>Arctic, antarctic, and alpine research >Fluvial Impact of Extensive Active Layer Detachments, Cape Bounty, Melville Island, Canada
【24h】

Fluvial Impact of Extensive Active Layer Detachments, Cape Bounty, Melville Island, Canada

机译:广泛的活动层分离对河流的影响,开普恩角,加拿大梅尔维尔岛

获取原文
获取原文并翻译 | 示例
           

摘要

Exceptional and persistent warm temperatures recorded during July 2007 at Cape Bounty, Melville Island, Canada (74 degrees 54'N, 109 degrees 35'W), resulted in rapid and deep active layer formation. The thickened active layer, together with up to 10.8 mm of rainfall in late July, resulted in widespread active layer detachments across the West watershed during 23-31 July. Mapping indicates that approximately 1.9% of the watershed was directly impacted by disturbances. By contrast, only two small detachments occurred in the adjacent East watershed. The immediate fluvial impact of the detachments was primarily in the form of abrupt, short-lived rises in river turbidity, along with a more gradual increase ill discharge and overall turbidity. Sediment transport Pulses resulted from the hydrological connection of major detachment slides, most of which were upslope from the main channel. The largest detachment dammed the river over a length of 200 m, and resulted ill an upstream pond and prolonged increased sediment transport. In total, the increased sediment transport during the last week of July amounted to an estimated 44.3 Mg, or 18% of the seasonal yield. While the detachments had an immediate and substantial impact on river conditions, erosion of unstable material is likely to have a Sustained impact on watershed fluxes in future years.
机译:2007年7月,加拿大梅尔维尔岛的开普恩角出现了异常且持续的温暖温度(北纬74度54',北纬109度35'),形成了快速而深层的活性层。活动层的增厚,加上7月下旬高达10.8毫米的降雨,导致7月23日至31日整个西部流域出现了广泛的活动层脱离。制图表明,大约1.9%的流域直接受到干扰的影响。相比之下,在相邻的东部流域只有两个小支队发生。支流对河流的直接影响主要表现为河流浑浊的突然而短暂的上升,以及疾病排放量和整体浑浊的逐渐增加。泥沙运移脉动是由主要脱离滑坡的水文联系造成的,其中大部分是从主航道上坡的。最大的支流在200 m的长度上拦住了河流,导致上游池塘生病,并延长了泥沙输送量。总体而言,在7月的最后一周,泥沙输送量增加了约44.3 Mg,占季节性产量的18%。尽管这些支流对河流状况产生了直接而重大的影响,但不稳定物质的侵蚀很可能在未来几年对流域通量产生持续影响。

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