Closure to “A coupled two-dimensional numerical model for rapidly varying flow, sediment transport and bed morphology” by XIN LIU, JULIO ÁNGEL INFANTE SEDANO and ABDOLMAJID MOHAMMADIAN, J. Hydraulic Res. 53(5), 2015, 609–621

2018 ◽  
Vol 56 (5) ◽  
pp. 751-752
Author(s):  
Xin Liu ◽  
Julio Ángel Infante Sedano ◽  
Abdolmajid Mohammadian
2015 ◽  
Vol 53 (5) ◽  
pp. 609-621 ◽  
Author(s):  
Xin Liu ◽  
Julio Ángel Infante Sedano ◽  
Abdolmajid Mohammadian

2008 ◽  
Vol 46 (4) ◽  
pp. 489-503 ◽  
Author(s):  
Enrique Peña González ◽  
Jaime Fe Marqués ◽  
Félix Sánchez-Tembleque Díaz-Pache ◽  
Jerónimo Puertas Agudo ◽  
Luis Cea Gómez

2021 ◽  
Vol 4 (1) ◽  
pp. 135
Author(s):  
Amelda Eva Adelina ◽  
Nomeritae Nomeritae ◽  
Hendro Suyanto

Gerusan dan sedimentasi seringkali terjadi pada penggal tertentu Sungai Kahayan yang berada di sekitar belokan. Hal tersebut disebabkan karena kecepatan aliran pada belokan yang cenderung tidak stabil. Kondisi tersebut tentu akan mempengaruhi alur pelayaran sungai yang digunakan oleh masyarakat untuk berbagai aktivitas. Penggal Sungai Kahayan yang diteliti adalah penggal Muara Rungan hingga Hantasan Kudung. Penelitian ini bertujuan untuk: (1) mengidentifikasi kondisi arus dan sedimentasi pada lokasi penelitian, (2) memprediksi  volume sedimen  yang  harus  dikeruk  sehingga mendapatkan  alur pelayaran  yang  optimal,  dan  (3)  mengestimasi besaran  biaya  yang  diperlukan untuk pekerjaan pengerukan tersebut. Analisis hidrologi dilakukan untuk mendapatkan besaran debit yang diperoleh dari hasil pengukuran kecepatan dan tampang melintang sungai. Analisis hidraulika untuk memodelkan arus dan sedimentasi menggunakan perangkat lunak Surface Water Modelling System (SMS).   Dari   penyesuaian   pemodelan   Resources   Management   Associates-2 (RMA2) dan Two-Dimensional Sediment Transport Numerical Model (SED2D) dalam modul SMS, didapat nilai kecepatan aliran 0,192 m/detik- 0,608 m/detik yang arahnya semakin ke hilir pada sisi luar tiap belokan berpotensi terjadinya gerusan.  Untuk  mendapatkan  alur  pelayaran  yang  optimal  bagi  kapal  barang dengan kapasitas 3.000 DWT beroperasi, perlu dilakukan pengerukan sedimen dengan  volume  sebesar  272.405,44  m3   dengan  estimasi  anggaran  biaya  Rp.6.709.412.678,41.Kata kunci : sungai, alur pelayaran, SMS, RMA2, SED2D


2019 ◽  
Vol 30 (01) ◽  
pp. 1950003 ◽  
Author(s):  
My. M. Charafi

The present work is related to the study of a water intake projected into a dam reservoir, located in northern Morocco. The object sought is to examine the natural conditions surrounding a water intake and their possible repercussions on its operation. Thus, a two-dimensional numerical model is developed to simulate the sediment transport in a reservoir dam. The developed model consists of hydrodynamic module based on the Saint–Venant equations and sediment transport module based on the mass-balance equation, where there are resolved by a MacCormack numerical scheme and upwind scheme, respectively. The analysis using the numerical model has made it possible to predict the shutdown periods of the drinking water production station with respect to the rate of suspended solids (SS) for extreme rainfall events.


2018 ◽  
Vol 120 ◽  
pp. 32-39
Author(s):  
Zhenduo Zhu ◽  
Jessica Zinger LeRoy ◽  
Bruce L. Rhoads ◽  
Marcelo H. García

Water ◽  
2018 ◽  
Vol 10 (10) ◽  
pp. 1425 ◽  
Author(s):  
Ming Luo ◽  
Heli Yu ◽  
Er Huang ◽  
Rui Ding ◽  
Xin Lu

Numerical modeling of sedimentation and erosion in reservoirs is an active field of reservoir research. However, simulation of the bed-load transport phenomena has rarely been applied to other water bodies, in particular, the fluctuating backwater area. This is because the complex morphological processes interacting between hydrodynamics and sediment transport are generally challenging to accurately predict. Most researchers assert that the shape of a river channel is mainly determined by the upstream water and sediment, and the physical boundary conditions of the river channel, rather than random events. In this study, the refinement and application of a two-dimensional shallow-water and bed-load transport model to the fluctuating backwater area is described. The model employs the finite volume method of the Godunov scheme and equilibrium sediment transport equations. The model was verified using experimental data produced by a scaled physical model, and the results indicated that the numerical model is believable. The numerical model was then applied to actual reservoir operations, including reservoir storage, reservoir drawdown, and the continuous flood process, to predict the morphology of reservoir sedimentation and sediment transport rates, and the changes in bed level in the fluctuating backwater area. It was found that the location and morphology of sedimentation affected by the downstream water level result in random evolution of the river bed, and bed-load sedimentation is moved from upstream to downstream as the slope of the longitudinal section of the river bed is reduced. Moreover, the research shows that the river channel sedimentation morphology is changed by the change water level of the downstream reach, causing the dislocation of the beach and channel and random events that will affect the river, which is of certain reference value for waterway regulation.


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