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基于动理学理论的推移质输沙公式
引用本文:张磊,钟德钰,王光谦,吴保生.基于动理学理论的推移质输沙公式[J].水科学进展,2013,24(5):692-698.
作者姓名:张磊  钟德钰  王光谦  吴保生
作者单位:清华大学水利水电工程系水沙科学与水利水电工程国家重点实验室, 北京 100084
基金项目:国家自然科学基金资助项目(51039004);"十二五"国家科技支撑计划资助项目(2012BAB05B01)
摘    要:根据Boltzmann方程得到了床面附近运动颗粒的速度分布函数,将其在速度空间上积分,同时考虑床面颗粒起动概率的影响得到了床面颗粒的冲刷率函数。在此基础上,将该函数代入Einstein提出的推移质输沙基本模式中得到了基于动理学理论的推移质输沙公式。研究结果表明:① 公式计算结果与实验数据吻合,相对误差为10%~50%,可用于高强度和低强度输沙,能够较好地反映出床面附近运动的推移质颗粒的统计属性;② 得到的推移质输沙率理论表达式与经典推移质输沙公式十分接近,同时大大改善了Einstein公式在高强度输沙情况下的计算结果,这也说明了本文理论推导的正确性。

关 键 词:推移质    输沙率    紊动    动理学
收稿时间:2012-11-28

A bed-load formula based on kinetic theory
ZHANG Lei,ZHONG Deyu,WANG Guangqian,WU Baosheng.A bed-load formula based on kinetic theory[J].Advances in Water Science,2013,24(5):692-698.
Authors:ZHANG Lei  ZHONG Deyu  WANG Guangqian  WU Baosheng
Institution:State key laboratory of Hydroscience and Engineering, Tsinghua University, Beijing 100084, China
Abstract:Bed-load plays an important role in sediment transport in fluvial rivers. This paper presents a bed-load formula on the basis of kinetic theory. The pick-up rate of bed-load sediment in the formula is obtained by integrating the velocity distribution function derived by solving the Boltzmann equation of kinetic theory. During the integration, the effect of incipient probability is considered. The bed-load formula is derived by substituting the expression of the pick-up rate into the basic equation of bed-load transport developed by Einstein. Comparisons of the simulations with available experimental data for both weak and intensive sediment transport are presented. The relative errors range from 10% to 50%, which illustrates that the new formula can reasonably represent the statistical characteristics of the bed-load particles moving on the bed surface. Furthermore, the new formula has remarkably improved the result of Einstein equation for intensive sediment transport, and is very similar to the classical bed-load formulas, which proves the validity of the theoretical derivation of the formula.
Keywords:bed load  sediment transport  turbulence  kinetic theory  
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