Experimental Study of Scouring and Deposition Characteristics of Riprap at Embankment Toe Due to Overflow

Author:

Al-Biruni Abu Raihan Mohammad1,Billah Md Masum1ORCID,Yagisawa Junji2

Affiliation:

1. Bangladesh Water Development Board, Dhaka 1205, Bangladesh

2. Graduate School of Science and Engineering, Saitama University, Shimo-okubo, Sakura-ku, Saitama 338-8570, Japan

Abstract

In this study, the effects of the grain size and gradation of riprap, the overtopping flow depth, and the downstream slope of the embankment on the scouring and deposition characteristics at the downstream toe of the embankment were investigated. For the experiment, three different downstream slopes (1:2, 1:3, and 1:4), three different overflow depths (1, 2, and 3 cm), and three different sizes of riprap particles (d50 of 16.41 mm, 8.48 mm, and 3.39 mm, herein referred to as coarse gravel, medium gravel, and granule, respectively) were used in the laboratory. The experimental results demonstrated that the scour depth and deposition height increased with increasing energy head for each downstream slope condition. Among the three particle sizes, coarse gravel shows the lowest scour depth and the highest deposition height. For the 1:2 slope, the coarse gravel particle size was 62% and 75% less resistant to scouring than the medium gravel and granule particles, respectively. For the 1:3 slope case, this was 31% and 46%, and for the 1:4 slope case, this was 39% and 49% less than the medium gravel and granule size particles, respectively.

Funder

JSPS KAKENHI

Publisher

MDPI AG

Reference22 articles.

1. The failure of embankment dams due to overtopping;Schmocker;J. Hydraul. Res.,2009

2. Experimental Investigation of the Effects of Soil Properties on Levee Breach by Overtopping;Cestero;J. Hydraul. Eng.,2015

3. Billah, M.M., and Yagisawa, J. (2022, January 10–12). Applicability of Energy Based and Stress Based Headcut Migration Model to Earthen Embankment with Stratified Sub-surface. Proceedings of the ICCESD 2022, KUET, Khulna, Bangladesh.

4. Liu, Z., Li, T., Ding, Y., and Jiang, S. (2020). A soil tensile strength based headcut migration model of breach side slope. Water, 12.

5. Investigation of Scour Pattern Downstream;Afreen;J. Jpn. Soc. Civ. Eng. Ser. B1 (Hydraul. Eng.),2015

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