LSPIV implementation for environmental flow in various laboratory and field cases
نویسندگان
چکیده
Large-Scale Particle Image Velocimetry (LSPIV) is an extension of a quantitative imaging technique to measure water surface velocities using simple and inexpensive equipment. This paper describes the implementation of imaged-based LSPIV in eight different environmental flow and hydraulic engineering applications for the investigation of complex configurations with and without sediment transport (bed and suspended loads). These applications include the investigation of sedimentation in shallow reservoirs, run-of-river hydropower plants, side weirs used to control bank overflow, flow fields in different spillway configurations with and without Piano Key Weir (PKW), oil spills with flexible and rigid barriers, groin fields, river confluence, and sediment flushing in reservoirs. The paper summarises some special problems encountered in such study cases. The selection and adjustments of the parameters to solve them properly were examined. The potential of LSPIV tomeasure surface flow velocities in the context of river and dam engineering projects is shown. Despite significant variations of natural and artificial illuminations and seeding tracers in the laboratory, field, wind, and water surface elevation, LSPIV was applied successfully to obtain velocity measurements. LSPIV has proven to be a reliable, flexible, and inexpensive flow diagnostic tool that can be employed successfully in many engineering applications. 2011 International Association for Hydro-environment Engineering and Research, Asia Pacific Division. Published by Elsevier B.V. All rights reserved.
منابع مشابه
Large-scale particle image velocimetry for measurements in riverine environments
[1] Large-scale particle image velocimetry (LSPIV) is a nonintrusive approach to measure velocities at the free surface of a water body. The raw LSPIV results are instantaneous water surface velocity fields, spanning flow areas up to hundreds of square meters. Measurements conducted in typical conditions in conjunction with appropriate selections of parameters for image processing resulted in m...
متن کاملImplementation of D3Q19 Lattice Boltzmann Method with a Curved Wall Boundary Condition for Simulation of Practical Flow Problems
In this paper, implementation of an extended form of a no-slip wall boundary condition is presented for the three-dimensional (3-D) lattice Boltzmann method (LBM) for solving the incompressible fluid flows with complex geometries. The boundary condition is based on the off-lattice scheme with a polynomial interpolation which is used to reconstruct the curved or irregular wall boundary on the ne...
متن کاملThe concept of "research method" in the literature of environmental psychology (Analytical review of research methods in environmental psychology knowledge)
Introduction: Environmental psychology is an empirical science; the foundation of this science is based on research in which hypotheses are tested through empirical observations. Research studies on environmental psychology are modeled on a variety of research questions. Literature review indicates that the need for comprehensive research in the field of introduction and analysis of the leading...
متن کامل1 Application of an automated discharge imaging 2 system and LSPIV during typhoon events in Taiwan 3
An automated discharge imaging system (ADIS), a non-intrusive and safe approach, was 12 developed for measuring river flows during flash flood events. ADIS consists of dual cameras to 13 capture complete surface images in the near and far fields. Surface velocities are accurately measured 14 using the Large Scale Particle Image Velocimetry (LSPIV) technique. The stream discharges are then 15 ob...
متن کاملThree-dimensional numerical modeling of flow field in rectangular shallow reservoirs
Flow field in shallow waters, which is characterized by its complex mixing process and inherent dynamic nature, is interesting mainly due to its practical importance (e. g. in free flushing operation and sedimentation in large reservoirs). 3D numerical models make it possible to track two-dimensional large turbulence coherent structures, which are the dominant phenomenon in shallow reservoirs f...
متن کامل