Fully coupled free‐surface flow and sediment transport modelling of flash floods in a desert stream in the Mojave Desert, California. Issue 21 (13th August 2019)
- Record Type:
- Journal Article
- Title:
- Fully coupled free‐surface flow and sediment transport modelling of flash floods in a desert stream in the Mojave Desert, California. Issue 21 (13th August 2019)
- Main Title:
- Fully coupled free‐surface flow and sediment transport modelling of flash floods in a desert stream in the Mojave Desert, California
- Authors:
- Khosronejad, Ali
Kang, Seokkoo
Flora, Kevin - Abstract:
- Abstract: For most of the year, a dry‐bed desert wash is void of water flow. Intensive rain events, however, could trigger significant flash floods that bring about highly complicated hydrodynamics and morphodynamics processes within a desert stream. We present a fully coupled three‐phase flow model of air, water, and sediment to simulate numerically the propagation of a flash flood in a field‐scale fluvial desert stream, the so‐called Tex Wash located in the Mojave Desert, California, United States. The turbulent flow of the flash flood is computed using the three‐dimensional unsteady Reynolds‐averaged Navier–Stokes equations closed with the shear stress transport k − ω model. The free surface of the flash flood at the interface of air and water phases is computed with the level‐set method, which enables instantaneous tracking of the water surface as the flash flood propagates over the dry bed of the desert stream. The evolution of the desert fluvial stream's morphology, due to the action of the propagating flash flood on the mobile bed, is calculated using a Eulerian morphodynamics model based on the curvilinear immersed boundary method. The capabilities of the proposed numerical framework are demonstrated by applying it to simulate a flash flood event in a 0.65‐km‐long reach of the Tex Wash, the intricate channel morphology of which is obtained using light imaging detection and ranging technology. The simulated region of the stream includes a number of bridge foundations.Abstract: For most of the year, a dry‐bed desert wash is void of water flow. Intensive rain events, however, could trigger significant flash floods that bring about highly complicated hydrodynamics and morphodynamics processes within a desert stream. We present a fully coupled three‐phase flow model of air, water, and sediment to simulate numerically the propagation of a flash flood in a field‐scale fluvial desert stream, the so‐called Tex Wash located in the Mojave Desert, California, United States. The turbulent flow of the flash flood is computed using the three‐dimensional unsteady Reynolds‐averaged Navier–Stokes equations closed with the shear stress transport k − ω model. The free surface of the flash flood at the interface of air and water phases is computed with the level‐set method, which enables instantaneous tracking of the water surface as the flash flood propagates over the dry bed of the desert stream. The evolution of the desert fluvial stream's morphology, due to the action of the propagating flash flood on the mobile bed, is calculated using a Eulerian morphodynamics model based on the curvilinear immersed boundary method. The capabilities of the proposed numerical framework are demonstrated by applying it to simulate a flash flood event in a 0.65‐km‐long reach of the Tex Wash, the intricate channel morphology of which is obtained using light imaging detection and ranging technology. The simulated region of the stream includes a number of bridge foundations. The simulation results of the model for the flash flood event revealed the formation of a highly complex flow field and scour patterns within the stream. Moreover, our simulation results showed that most scour processes take place during the steady phase of the flash flood, that is, after the flash flood fills the stream. The transient phase of the flash flood is rather short and contributes to a very limited amount of erosion within the desert stream. Abstract : A fully coupled three‐phase flow model of air‐water‐sediment is presented to simulate numerically propagation of a flash flood in a field‐scale fluvial desert stream, the so‐called Tex Wash located in Mojave Desert, California. The turbulent flood flow is computed using 3D unsteady Reynolds‐Averaged Navier‐Stokes equations closed with shear stress transport k‐ω model. The free surface at the air/water interface of flood is modeled with level‐set method, while the streambed evolution is calculated using Exner equation within the curvilinear immersed boundary method. … (more)
- Is Part Of:
- Hydrological processes. Volume 33:Issue 21(2019)
- Journal:
- Hydrological processes
- Issue:
- Volume 33:Issue 21(2019)
- Issue Display:
- Volume 33, Issue 21 (2019)
- Year:
- 2019
- Volume:
- 33
- Issue:
- 21
- Issue Sort Value:
- 2019-0033-0021-0000
- Page Start:
- 2772
- Page End:
- 2791
- Publication Date:
- 2019-08-13
- Subjects:
- desert wash -- flash flood -- level set method -- morphodynamics -- SST k − ω -- unsteeady RANS
Hydrology -- Periodicals
Hydrology -- Research -- Periodicals
Hydrologic models -- Periodicals
Hydrological forecasting -- Periodicals
631.432 - Journal URLs:
- http://onlinelibrary.wiley.com/ ↗
- DOI:
- 10.1002/hyp.13527 ↗
- Languages:
- English
- ISSNs:
- 0885-6087
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 4347.625600
British Library DSC - BLDSS-3PM
British Library HMNTS - ELD Digital store - Ingest File:
- 11667.xml