4.7 Article

An Experimental and Numerical Approach to Modeling Large Wood Displacement in Rivers

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Engineering, Civil

Trapping Large Wood Debris in Rivers: Experimental Study of Novel Debris Retention System

Diego Panici et al.

Summary: A new type of large wood debris retention system has been proposed and tested in this paper, showing high efficiency in trapping wood debris in rivers. The geometrical features of the structure play a crucial role and can be carefully chosen to optimize trapping efficiency. Further development of this solution could lead to the use of low-cost, highly effective debris retention systems for river management and wood debris removal in practice.

JOURNAL OF HYDRAULIC ENGINEERING (2021)

Article Engineering, Civil

Laboratory study on wood accumulation probability at bridge piers

Isabella Schalko et al.

JOURNAL OF HYDRAULIC RESEARCH (2020)

Article Environmental Sciences

Risk reduction measures of large wood accumulations at bridges

Isabella Schalko et al.

ENVIRONMENTAL FLUID MECHANICS (2020)

Article Environmental Sciences

Bridge pier shape influence on wood accumulation: Outcomes from flume experiments and numerical modelling

Pina N. De Cicco et al.

JOURNAL OF FLOOD RISK MANAGEMENT (2020)

Article Engineering, Civil

Influence of Pier Geometry and Debris Characteristics on Wood Debris Accumulations at Bridge Piers

Diego Panici et al.

JOURNAL OF HYDRAULIC ENGINEERING (2020)

Article Environmental Sciences

A practical method to assess risks from large wood debris accumulations at bridge piers

Diego Panici et al.

SCIENCE OF THE TOTAL ENVIRONMENT (2020)

Article Engineering, Civil

A method for evaluating local scour depth at bridge piers due to debris accumulation

Mohsen Ebrahimi et al.

PROCEEDINGS OF THE INSTITUTION OF CIVIL ENGINEERS-BRIDGE ENGINEERING (2020)

Article Engineering, Civil

Experimental repetitions and blockage of large stems at ogee crested spillways with piers

Paloma Furlan et al.

JOURNAL OF HYDRAULIC RESEARCH (2019)

Article Geography, Physical

Characterization of wood-laden flows in rivers

Virginia Ruiz-Villanueva et al.

EARTH SURFACE PROCESSES AND LANDFORMS (2019)

Article Environmental Sciences

Trees and wood: working with natural river processes

Angela Gurnell et al.

WATER AND ENVIRONMENT JOURNAL (2019)

Article Environmental Sciences

Formation, Growth, and Failure of Debris Jams at Bridge Piers

Diego Panici et al.

WATER RESOURCES RESEARCH (2018)

Article Geography, Physical

Towards a robust assessment of bridge clogging processes in flood risk management

T. Gschnitzer et al.

GEOMORPHOLOGY (2017)

Article Geosciences, Multidisciplinary

Wood density and moisture sorption and its influence on large wood mobility in rivers

V. Ruiz-Villanueva et al.

CATENA (2016)

Article Geography, Physical

Simulated wood budgets in two mountain streams

Marwan A. Hassan et al.

GEOMORPHOLOGY (2016)

Review Geography, Physical

Large wood recruitment and transport during large floods: A review

F. Comiti et al.

GEOMORPHOLOGY (2016)

Article Engineering, Civil

Flume experiments on entrainment of large wood in low-land rivers

Alessandra Crosato et al.

JOURNAL OF HYDRAULIC RESEARCH (2013)

Article Engineering, Civil

Bridge pier flow field in the presence of debris accumulation

Stefano Pagliara et al.

PROCEEDINGS OF THE INSTITUTION OF CIVIL ENGINEERS-WATER MANAGEMENT (2013)

Article Environmental Sciences

LARGE WOODY DEBRIS IN URBAN STREAM CHANNELS: REDEFINING THE PROBLEM

N. S. Lassettre et al.

RIVER RESEARCH AND APPLICATIONS (2012)

Article Engineering, Civil

Scale effects in physical hydraulic engineering models

Valentin Heller

JOURNAL OF HYDRAULIC RESEARCH (2011)

Article Geosciences, Multidisciplinary

Modelling woody material transport and deposition in alpine rivers

B. Mazzorana et al.

NATURAL HAZARDS (2011)

Article Geography, Physical

Mobility of large woody debris (LWD) jams in a low gradient channel

Joanna C. Curran

GEOMORPHOLOGY (2010)

Article Environmental Sciences

A flume experiment on the formation of wood jams in rivers

D. Bocchiola et al.

WATER RESOURCES RESEARCH (2008)