Methodological Proposal for the Hydraulic Design of Labyrinth Weirs

Author:

Mattos-Villarroel Erick Dante1,Ojeda-Bustamante Waldo2ORCID,Díaz-Delgado Carlos3ORCID,Salinas-Tapia Humberto3ORCID,Flores-Velázquez Jorge4ORCID,Bautista Capetillo Carlos1ORCID

Affiliation:

1. Campus Siglo XXI, Autonomous University of Zacatecas “Francisco García Salinas”, Road Zacatecas-Guadalajara Km 6, Zacatecas 98160, Mexico

2. Research and Postgraduate Division, Chapingo Autonomous University, Chapingo, Texcoco 56230, Mexico

3. Inter-American Institute of Technology and Water Sciences, Autonomous University of the State of Mexico, Road Toluca-Atlacomulco Km 14.5, Toluca 50200, Mexico

4. Postgraduate College, Coordination of Hydrosciences, Road Mexico-Texcoco Km 36.5, Texcoco 62550, Mexico

Abstract

A labyrinth weir allows for higher discharge capacity than conventional linear weirs, especially at low hydraulic heads. In fact, this is an alternative for the design or rehabilitation of spillways. It can even be used as a strategy in problems related to dam safety. A sequential design method for a labyrinth weir is based on optimal geometric parameters and the results of discharge flow analysis using Computational Fluid Dynamics and the experimental studies reported in the literature. The tests performed were for weirs with values of HT/P ≤ 0.8 and for angles of the cycle sidewall of 6° ≤ α ≤ 20°. The results of the discharge coefficient are presented as a family of curves, which indicates a higher discharge capacity when HT/P ≤ 0.17. Four aeration conditions are identified with higher discharge capacity when the nappe is adhering to the downstream face of the weir wall and lower discharge capacity when the nappe is drowned. Unstable flow was present when 12° ≤ α ≤ 20°, with a greater presence when the nappe was partially aerated and drowned. The interference of the nappe is characterized and quantified, reaching up to 60% of the length between the apex, and a family of curves is presented as a function of HT/P in this respect. Finally, a spreadsheet and a flowchart are proposed to support the design of the labyrinth type weir.

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference56 articles.

1. Hydraulic analysis of a compound weir (triangular-rectangular) simulated with computational fluid dynamics (CFD);Technol. Cienc. Agua,2021

2. Discussion of performance and design of labyrinth weirs, by Hay and Taylor;Darvas;J. Hydraul. Eng. ASCE,1971

3. Experimental investigation of discharge capacity of labyrinth weirs with and without nappe breakers;Bilhan;World J. Mech.,2016

4. Willmore, C. (2004). Hydraulic Characteristics of Labyrinth Weirs. [Master’s Thesis, Utah State University].

5. Crookston, B. (2010). Labyrinth Weirs. [Ph.D. Thesis, Utah State University].

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