سیویلیکا را در شبکه های اجتماعی دنبال نمایید.

Dam-Break Energy of Porous Structure for Scour Countermeasure at Bridge Abutment

Publish Year: 1401
Type: Journal paper
Language: English
View: 130

This Paper With 13 Page And PDF Format Ready To Download

Export:

Link to this Paper:

Document National Code:

JR_CEJ-8-12_019

Index date: 21 April 2024

Dam-Break Energy of Porous Structure for Scour Countermeasure at Bridge Abutment abstract

The aim of the study is to determine the structure for energy absorption in order to countermeasure the scouring on the bridge abutment. Consider a porous structure for energy absorption, which can reduce flow velocity and depth of scouring due to its porosity. The energy absorber plate demonstrated in triangular shape with several porous as submerged barrier. The investigation was conducted in laboratory and placed the abutment in the middle of the channel with a distance of 3Lb, 5Lb, 7Lb and 9Lb. The plate area consists of 0% (MP1), 5% (MP2), and 10% (MP3). The scour depth measurement (ds) is carried out at 6 crucial points in the abutment area. Comparisons between experimental measurements and a numerical prediction model are presented. The experimental results show that the percentage of frictional velocity in the inhibition area for each pore opening before the obstacle, 31.42% (decreasing), - 9.27% (increasing), and -32.92% (increasing), respectively. Furthermore, the optimum position of the porous energy absorber at 9Lb to the abutment. The magnitude decreases of scour depth obtained from MP2. It can be concluded that the placement of energy absorbers can lead to damping forces. It also found that the porous structures could be beneficial for motion damping and absorber of the scouring. Doi: 10.28991/CEJ-2022-08-12-019 Full Text: PDF

Dam-Break Energy of Porous Structure for Scour Countermeasure at Bridge Abutment Keywords:

Dam-Break Energy of Porous Structure for Scour Countermeasure at Bridge Abutment authors

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
Dargahi, B. (1990). Controlling Mechanism of Local Scouring. Journal of ...
Llewellyn, R. J., Yick, S. K., & Dolman, K. F. ...
Fan, Z., Zhang, B., Liu, Y., Suo, T., Xu, P., ...
Rinaldi, B. Y. (2001). Physical Model of Scour Control around ...
Shahsavari, H., Heidarpour, M., & Mohammadalizadeh, M. (2017). Simultaneous effect ...
Abdurrosyid, J., & Fatchan, A. K. (2007). Scour Around the ...
Mackay, E., Shi, W., Qiao, D., Gabl, R., Davey, T., ...
Mackay, E., Liang, H., & Johanning, L. (2021). A BEM ...
Krishnendu, P., & Balaji, R. (2020). Hydrodynamic performance analysis of ...
Amir, M. U. A. R., Hashmi, H. N., Baloch, M., ...
Zhao, E., Dong, Y., Tang, Y., & Sun, J. (2021). ...
Pu, J. H., Hussain, A., Guo, Y. kun, Vardakastanis, N., ...
Radice, A., & Davari, V. (2014). Roughening Elements as Abutment ...
Juez, C., & Navas-Montilla, A. (2022). Numerical characterization of seiche ...
Wilson, R. I., Friedrich, H., & Stevens, C. (2018). Flow ...
Oehy, C. D., & Schleiss, A. J. (2007). Control of ...
Hassan, Z. F., Karim, I. R., & Al-Shukur, A. H. ...
Li, H., Barkdoll, B., & Kuhnle, R. (2005). Bridge Abutment ...
Ansari, S. A., Kothyari, U. C., & Ranga Raju, K. ...
Igarashi, T. (1981). Characteristics of the Flow Around Two Circular ...
Gao, Yangyang, Stephane Etienne, Xikun Wang, and Soon Keat Tan. ...
Tafarojnoruz, Ali, Roberto Gaudio, and Francesco Calomino. “Bridge Pier Scour ...
Briaud, Jean-Louis. “Scour Depth at Bridges: Method Including Soil Properties. ...
Yaghoubi, S., Afshin, H., Firoozabadi, B., & Farizan, A. (2017). ...
Kordnaeij, M., Asghari Pari, S. A., Sajjadi, S. M., & ...
Meiburg, E., & Kneller, B. (2010). Turbidity Currents and Their ...
Asghari Pari, S. A., Kashefipour, S. M., & Ghomeshi, M. ...
نمایش کامل مراجع