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The initial morphological impact of the longitudinal dams

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Published on 13/02/2020 by van Denderen, R. P., Kater, E., Jans, L. H., & Schielen, R. M. J.

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Pepijn van Denderen

University of Twente

Output contains: Publication open access

Innovative components

Human interventions can result in changes in the equilibrium profile of rivers. It is difficult to identify the bed level changes that result from river interventions due to the various causes of bed level changes. Using wavelet filtering, we are able to isolate the effect of river interventions based on the length scale over which they occur. The method presented here can aid in verifying model results. In addition, it can be used to estimate bed level changes that occur over various spatial scales.

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Changes in the equilibrium river profile: The morphological impact of interventions

We propose a new method to study bed level changes in a river

Pepijn van Denderen

University of Twente

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Related outputs

Rivierbodemdynamiek meenemen in het ontwerp van maatregelen

In the Dutch Waal river, the bed topography of the navigational channel is measured bi-weekly. In a so-called TKI-project (cooperation between Rijkswaterstaat, HKV and Twente University) we use this data to link morphological changes to specific interventions in the river. This is not a straightforward as it may seem, because the morphological changes are the sum of small scale changes due to e.g. the presence of groynes, medium scale changes coming from the intervention and large scale changes coming from engineering measures in the (far) past to which the profile is still adjusting. A so-called wavelet analysis can be used to disentangle these different scales and enables us to focus only on the morphological changes due to the intervention. This improves river operations and maintenance and in the future also to facilitate the planning of new measures to minimize morphological impact.

01/10/2020 by Pepijn van Denderen et al.

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Contains: Publication open access

Insight into the local bed-level dynamics to assist management of multi-funtional rivers

River discharge fluctuations cause bed-level variations at various scales, resulting from spatial gradients in the river’s geometry. Insight into these bed-level variations and their relation to discharge fluctuations can help to predict and prevent the formation of local bottlenecks. In this paper, we use bi-weekly bed-level measurements of the river Waal to estimate the bed-level variations related to the river discharge.

11/02/2021 by Pepijn van Denderen et al.

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Contains: Publication open access

Laying bare systemic river bed changes in the river Rhine

It is important to link cause-and-effect relations between bed response and their dominating triggers. This is particularly important in highly-engineered navigable rivers, where multiple influences from close-by and further away can obscure the dominating causes of local bed level changes, and thereby possibly point in the wrong direction when it comes to sustainable river management practices.

11/02/2021 by Pepijn van Denderen et al.

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Contains: Publication open access

Last modified: 23/02/2021