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新西兰南阿尔卑斯山脉辫状河水流与入侵植被动态。

Braided river flow and invasive vegetation dynamics in the Southern Alps, New Zealand.

机构信息

Civil and Natural Resources Engineering, University of Canterbury, Private Bag 4800, Christchurch, Canterbury, 8140, New Zealand.

出版信息

Environ Manage. 2013 Jul;52(1):1-18. doi: 10.1007/s00267-013-0070-4. Epub 2013 May 22.

Abstract

In mountain braided rivers, extreme flow variability, floods and high flow pulses are fundamental elements of natural flow regimes and drivers of floodplain processes, understanding of which is essential for management and restoration. This study evaluated flow dynamics and invasive vegetation characteristics and changes in the Ahuriri River, a free-flowing braided, gravel-bed river in the Southern Alps of New Zealand's South Island. Sixty-seven flow metrics based on indicators of hydrologic alteration and environmental flow components (extreme low flows, low flows, high flow pulses, small floods and large floods) were analyzed using a 48-year flow record. Changes in the areal cover of floodplain and invasive vegetation classes and patch characteristics over 20 years (1991-2011) were quantified using five sets of aerial photographs, and the correlation between flow metrics and cover changes were evaluated. The river exhibits considerable hydrologic variability characteristic of mountain braided rivers, with large variation in floods and other flow regime metrics. The flow regime, including flood and high flow pulses, has variable effects on floodplain invasive vegetation, and creates dynamic patch mosaics that demonstrate the concepts of a shifting mosaic steady state and biogeomorphic succession. As much as 25 % of the vegetation cover was removed by the largest flood on record (570 m(3)/s, ~50-year return period), with preferential removal of lupin and less removal of willow. However, most of the vegetation regenerated and spread relatively quickly after floods. Some flow metrics analyzed were highly correlated with vegetation cover, and key metrics included the peak magnitude of the largest flood, flood frequency, and time since the last flood in the interval between photos. These metrics provided a simple multiple regression model of invasive vegetation cover in the aerial photos evaluated. Our analysis of relationships among flow regimes and invasive vegetation cover has implications for braided rivers impacted by hydroelectric power production, where increases in invasive vegetation cover are typically greater than in unimpacted rivers.

摘要

在山区辫状河流中,极端的水流变化、洪水和高水流脉冲是自然水流状况的基本要素,也是洪泛区过程的驱动因素,对其进行理解对于管理和恢复至关重要。本研究评估了新西兰南岛南阿尔卑斯山自由流动的辫状、砾石河床的奥希里里河的水流动态和入侵植被特征及其变化。使用 48 年的流量记录分析了 67 种基于水文变化指标和环境流成分(极端低流量、低流量、高水流脉冲、小洪水和大洪水)的流量指标。20 年来(1991-2011 年),利用五组航空照片量化了洪泛区和入侵植被类别的面积覆盖和斑块特征的变化,并评估了流量指标与覆盖变化之间的相关性。该河流具有山区辫状河流的显著水文变异性特征,洪水和其他水流状况指标变化很大。水流状况,包括洪水和高水流脉冲,对洪泛区入侵植被有不同的影响,并形成了动态斑块镶嵌体,展示了不断变化的镶嵌体稳定状态和生物地貌演替的概念。有记录以来最大的洪水(570m³/s,约 50 年重现期)清除了多达 25%的植被覆盖,其中羽扇豆的清除率较高,柳树的清除率较低。然而,洪水过后,大部分植被迅速再生和扩散。分析的一些流量指标与植被覆盖高度相关,关键指标包括最大洪水的峰值幅度、洪水频率以及照片之间上次洪水以来的时间。这些指标为评估的航空照片中入侵植被覆盖的多元回归模型提供了基础。我们对水流状况与入侵植被覆盖之间关系的分析对受水电生产影响的辫状河流具有意义,因为入侵植被覆盖的增加通常大于未受影响的河流。

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