TY - GEN
T1 - Effect of riparian vegetation density on stream flow velocity
AU - Pirim, Taner
AU - Bennett, Sean
AU - Barkdoll, Brian
PY - 2004
Y1 - 2004
N2 - River restoration that can be accomplished by structural and nonstructural means is one of the most important and popular recent advances in river engineering. Stream restoration techniques generally focus on protecting or restoring aquatic, riparian, and floodplain habitat and habitat resources. This study focused on developing a methodology to systematically vegetate a straight, degraded stream corridor in order to improve habitat and habitat resources for fish and wildlife, and provide the stimuli necessary to cause stream meanders to form and equilibrate. Hence a laboratory experiment was performed in a flume with simulated alternating vegetation zones. The density of the vegetation zones was altered while all other flow characteristics were kept constant. Particle Image Velocimetry (PIV) was used to determine surface flow characteristics. PIV measurements revealed that as vegetation density increases, the following flow parameters related to potential meandering increase: average thalweg velocity, turning of the flow, flow circulation downstream of the vegetation zone, flow sinuosity, reattachment lengths, flow depth, and resistance. The average flow velocity decreased both inside and out of the vegetation zone. This study established a methodology to induce sinuosity in straight, degraded channels using vegetation and determined that placing roughness elements that simulate natural vegetation can significantly alter the flow direction. Copyright ASCE 2004.
AB - River restoration that can be accomplished by structural and nonstructural means is one of the most important and popular recent advances in river engineering. Stream restoration techniques generally focus on protecting or restoring aquatic, riparian, and floodplain habitat and habitat resources. This study focused on developing a methodology to systematically vegetate a straight, degraded stream corridor in order to improve habitat and habitat resources for fish and wildlife, and provide the stimuli necessary to cause stream meanders to form and equilibrate. Hence a laboratory experiment was performed in a flume with simulated alternating vegetation zones. The density of the vegetation zones was altered while all other flow characteristics were kept constant. Particle Image Velocimetry (PIV) was used to determine surface flow characteristics. PIV measurements revealed that as vegetation density increases, the following flow parameters related to potential meandering increase: average thalweg velocity, turning of the flow, flow circulation downstream of the vegetation zone, flow sinuosity, reattachment lengths, flow depth, and resistance. The average flow velocity decreased both inside and out of the vegetation zone. This study established a methodology to induce sinuosity in straight, degraded channels using vegetation and determined that placing roughness elements that simulate natural vegetation can significantly alter the flow direction. Copyright ASCE 2004.
KW - Methodology
KW - Restoration
KW - Riparian waters
KW - Rivers
KW - Streamflow
KW - Vegetation
KW - Velocity
UR - https://www.scopus.com/pages/publications/74949089658
U2 - 10.1061/40517(2000)347
DO - 10.1061/40517(2000)347
M3 - Conference contribution
AN - SCOPUS:74949089658
SN - 0784405174
SN - 9780784405178
T3 - Joint Conference on Water Resource Engineering and Water Resources Planning and Management 2000: Building Partnerships
BT - Joint Conference on Water Resource Engineering and Water Resources Planning and Management 2000
T2 - Joint Conference on Water Resource Engineering and Water Resources Planning and Management 2000
Y2 - 30 July 2000 through 2 August 2000
ER -