变截面运河中长波的变换

Q4 Environmental Science
K. Szmidt, B. Hedzielski
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引用次数: 0

摘要

摘要本文研究了长水波在定深变截面直管中的传播问题。在这个问题的表述中,考虑了一个简化的一维模型,该模型基于“柱状”流体运动的假设。为此,在描述这一现象时,采用一套材料坐标系统作为自变量。主要的注意力集中在从静止开始的流体运动对应的瞬态解上。对于所考虑的初值问题,我们将注意力集中在由放置在运河起点的活塞式发电机引起的有限域流体运动上。对于从起点测量的有限时间流逝,有限流体区域内的解模拟无限域中的解,这是波传播问题固有的。我们调查的主要目的是描述运河最小部分的自由面(波高)的演变。数值算例说明了本文所建立的模型公式。这种近似描述的准确性是通过将其结果与在实验室水槽中进行的水力实验数据进行比较来评估的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transformation of Long Waves in a Canal of Variable Section
Abstract The paper deals with long water waves propagating in a straight canal of constant depth and variable section. In the formulation of this problem, a simplified, one-dimensional model is considered that is based on the assumption of a “columnar” fluid motion. To this end, a system of material coordinates is employed as independent variables in the description of this phenomenon. The main attention is focused on transient solutions corresponding to a fluid motion starting from rest.With respect to the initial value problem considered,we confine our attention to a finite domain fluid motion induced by a piston-type generator placed at the beginning of the canal. For a finite elapse of time, measured from the starting point, the solution in the finite fluid area mimics a solution within an infinite domain, inherent for wave propagation problems. The main goal of our investigations is to describe the evolution of the free surface (the wave height) at the smallest section of the canal. Numerical examples are provided to illustrate the model formulation developed in this paper. The accuracy of this approximate description is assessed by comparing its results with data obtained in hydraulic experiments performed in a laboratory flume.
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来源期刊
Archives of Hydroengineering and Environmental Mechanics
Archives of Hydroengineering and Environmental Mechanics Environmental Science-Water Science and Technology
CiteScore
1.30
自引率
0.00%
发文量
4
期刊介绍: Archives of Hydro-Engineering and Environmental Mechanics cover the broad area of disciplines related to hydro-engineering, including: hydrodynamics and hydraulics of inlands and sea waters, hydrology, hydroelasticity, ground-water hydraulics, water contamination, coastal engineering, geotechnical engineering, geomechanics, structural mechanics, etc. The main objective of Archives of Hydro-Engineering and Environmental Mechanics is to provide an up-to-date reference to the engineers and scientists engaged in the applications of mechanics to the analysis of various phenomena appearing in the natural environment.
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