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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Experimental issues in atmospheric boundary layer simulations: roughness length and integral length scale determination
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Experimental issues in atmospheric boundary layer simulations: roughness length and integral length scale determination

机译:大气边界层模拟中的实验问题:粗糙度长度和积分长度比例的确定

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摘要

Wall shear stress was measured directly in three atmospheric boundary layer (ABL) simulations using a specially constructed force balance. The roughness length of the simulations were determined using: (a) balance measured shear velocities; (b) shear velocities computed from X-wire Reynolds stress measurements; and (c) indirect procedures where accepted forms of turbulent boundary layer mean velocity profiles are fitted to the measured mean-velocity profiles. Comparison of balance measured shear velocities with those computed from the Reynolds stress measurements showed that the latter may be off by more than 15%, leading to large errors in roughness length values. The significant uncertainties associated with roughness length estimates obtained using indirect velocity-profile-fitting techniques in ABL simulations are documented. It is shown that the roughness length estimates computer from indirect procedures can be in error by factors of two or more. Experimental uncertainties associated with the determination of integral length scale are also presented.
机译:使用特殊构造的力平衡装置,在三个大气边界层(ABL)模拟中直接测量了壁剪应力。使用以下方法确定模拟的粗糙度长度:(a)平衡测得的剪切速度; (b)根据X线雷诺应力测量结果计算的剪切速度; (c)间接程序,其中将可接受形式的湍流边界层平均速度剖面拟合到测得的平均速度剖面。平衡测量的剪切速度与雷诺应力测量计算的剪切速度的比较表明,后者可能偏离15%以上,导致粗糙度长度值存在较大误差。记录了与在ABL模拟中使用间接速度剖面拟合技术获得的粗糙度长度估计值相关的重大不确定性。结果表明,由间接程序估算出的粗糙度长度估计值可能有两个或两个以上的误差。还提出了与确定整体长度刻度相关的实验不确定性。

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