气候变化对德拉瓦河下游流态和河床演变影响的模拟

Nazim Gashi, S. Czigány, E. Pirkhoffer, Kinga Kiss
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摘要

气候变化预计将对改变德拉瓦河下游的流量状况产生重大影响。进行了4次水槽试验,考察了稳定流量、增加流量和减少流量以及一系列洪水的发生对渠道平台演化的影响。持续的流量产生了交替的沙洲,这些沙洲随后合并成更大的河床,河床迁移,河道的弯曲度更高。德拉瓦河下游虽然会发生河床的合并和迁移,但由于河流的调节,其曲度保持不变。从编织到切割的单螺纹平台,减少了流动,形成了休眠通道。Drava已经有了一个单线程平台(因为堤防),并且,在流量减少的情况下,将有剩余的非活动通道。径流量增加,河道冲刷和改造加剧,曲度比减小,高断崖带活跃。在德拉瓦河上,由于堤防的存在,曲度比很难改变,但有可能发生侵蚀、银行改造和高崖风险的增加。洪水模拟产生了沿着切割的主河道的一个分支平台,沿着河岸的阶地(在洪水期间活跃)、沙洲、冲积岛屿和侧河道(在低流量期间活跃)。在德拉瓦河下游,这种情况与过去的洪水有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling the Impact of Climate Change on the Flow Regime and Channel Planform Evolution of the Lower Drava River
Climate change is expected to have a significant impact on changing the flow regime of the lower Drava River. Four flume experiments were run to see how stabilized, increased and decreased flow and the occurrence of a series of floods affect channel planform evolution. Constant discharge produced alternate bars that subsequently merged into bigger bedforms, bedform migration, and a higher sinuosity of the channel. While merging and migration of bedforms may happen in the lower reaches of Drava, its sinuosity is unchanged due to river regulation. Reduced flow initiated transition from a braided to incised single-thread planform, with the formation of dormant channels. Drava already has a single-thread planform (because of dikes) and, in cases of flow reduction, will have the remnant of inactive channels. Increased discharge showed greater erosion and reworking of channel banks, a decrease of sinuosity ratio and active high bluff zones. On Drava sinuosity ratio is more difficult to change because of levees, but erosion, reworking of banks, and increased high bluff risks are possible. Floods simulation generated the construction of an anabranching planform alongside the incised main channel with terraces along banks (active during floods), bars, alluvial islands, and side channels (active during low flows). On the lower Drava River, this situation correlates with past floods.
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