首页> 外文期刊>寒旱区科学:英文版 >A Wind Tunnel Investigation of the Shear Stress with A Blowing Sand Cloud
【24h】

A Wind Tunnel Investigation of the Shear Stress with A Blowing Sand Cloud

机译:风沙吹沙云的风洞研究

获取原文
获取原文并翻译 | 示例
           

摘要

In a blowing sand system,the wind provides the driving forces for the particle movement while the moving particles exert the opposite forces to the wind by extracting its momentum.The wind-sand interaction that can be characterized by shear stress and force exerted on the wind by moving particles results in the modification of wind profiles.Detailed wind pro-files re-adapted to blown sand movement are measured in a wind tunnel for different grain size populations and at differ-ent free-stream wind velocities.The shear stress with a blowing sand cloud and force exerted on the wind by moving par-ticles are calculated from the measured wind velocity profiles.The results suggest that the wind profiles with presence of blowing sand cloud assume convex-upward curves on the u(z)-ln(z) plot compared with the straight lines characterizing the velocity profiles of clean wind,and they can be better fitted by power function than log-linear function.The exponent of the power function ranging from 0.1 to 0.17 tends to increase with an increase in wind velocity but decrease with an increase in particle size.The force per unit volume exerted on the wind by blown sand drift that is calculated based on the empirical power functions for the wind velocity profiles is found to decrease with height.The particle-induced force makes the total shear stress with blowing sand cloud partitioned into air-borne stress that results from the wind velocity gradient and grain-borne stress that results from the upward or downward movement of particles.The air-borne stress in-creases with an increase in height,while the grain-borne stress decreases with an increase in height.The air-borne shear stress at the top of sand cloud layer increases with both wind velocity and grain size,implying that it increases with sand transport rate for a given grain size.The shear stress with a blowing sand cloud is also closely related to the sand transport rate.Both the total shear stress and grain-borne stress on the grain top is directly proportional to the square root of sand transport rate.So,the profound effect of the moving particles on the airflow must be considered in modeling the blown sand movement.With the presence of sand movement,the boundary layer with a blowing sand cloud is no longer a con-stant air shear layer.
机译:在吹沙系统中,风提供了粒子运动的驱动力,而运动的粒子通过提取其动量而向风施加相反的力。风沙相互作用可以用剪切应力和作用在风上的力来表征。通过移动粒子导致风廓线的改变。在风洞中针对不同的晶粒尺寸种群和不同的自由流风速测量了重新适应吹沙运动的详细风廓线。根据测得的风速曲线计算出吹沙云和通过运动的微粒施加在风上的力,结果表明存在吹沙云的风廓在u(z)-ln( z)曲线与表征清洁风的速度曲线的直线相比,可以用幂函数拟合,而不是对数线性函数拟合。幂函数的指数范围为0 .1至0.17随风速的增加而增加,但随粒径的增加而减小。根据风速曲线的经验幂函数计算出的吹砂漂移对单位体积施加的力为颗粒引起的力使吹沙云的总剪切应力分为风速梯度引起的空气传播应力和颗粒向上或向下运动产生的颗粒传播应力。空气应力随高度的增加而增加,而颗粒应力随高度的增加而减小。砂云层顶部的空气剪切应力随风速和晶粒尺寸的增加而增加。在给定的粒径下,它随输砂速率的增加而增加。吹沙云的剪切应力也与输砂速率密切相关。粒顶与输沙速率的平方根成正比。因此,在模拟吹砂运动时,必须考虑运动颗粒对气流的深远影响。在存在砂运动的情况下,吹砂的边界层沙云不再是恒定的空气剪切层。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号