首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Shear velocity estimates on the inner shelf off Grays Harbor, Washington, USA
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Shear velocity estimates on the inner shelf off Grays Harbor, Washington, USA

机译:美国华盛顿州格雷斯港附近内架的剪切速度估算

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Shear velocity was estimated from current measurements near the bottom off Grays Harbor, Washington between May 4 and June 6, 2001 under mostly wave-dominated conditions. A downward-looking pulse-coherent acoustic Doppler profiler (PCADP) and two acoustic-Doppler velocimeters (field version; ADVFs) were deployed on a tripod at 9-m water depth. Measurements from these instruments were used to estimate shear velocity with (1) a modified eddy-correlation (EC) technique, (2) the log-profile (LP) method, and (3) a dissipation-rate method. Although values produced by the three methods agreed reasonably well (within their broad ranges of uncertainty), there were important systematic differences. Estimates from the EC method were generally lowest, followed by those from the inertial-dissipation method. The LP method produced the highest values and the greatest scatter. We show that these results are consistent with boundary-layer theory when sediment-induced stratification is present. The EC method provides the most fundamental estimate of kinematic stress near the bottom, and stratification causes the LP method to overestimate bottom stress. These results remind us that the methods are not equivalent and that comparison among sites and with models should be made carefully. (c) 2006 Elsevier Ltd. All rights reserved.
机译:剪切速度是根据2001年5月4日至6月6日在华盛顿以波浪为主的条件下华盛顿格雷斯港附近海底的当前测量值估算的。在水深9米的三脚架上部署了一个向下看的脉冲相干声学多普勒剖面仪(PCADP)和两个声学多普勒测速仪(现场版本; ADVF)。这些仪器的测量值用于通过(1)改进的涡相关(EC)技术,(2)对数剖面(LP)方法和(3)耗散率方法估算剪切速度。尽管这三种方法所产生的值在相当大的不确定性范围内都可以很好地吻合,但是仍然存在重要的系统差异。 EC方法的估计值通常最低,其次是惯性耗散方法的估计值。 LP方法产生最高的值和最大的分散。我们表明,当存在沉积物诱导的分层时,这些结果与边界层理论是一致的。 EC方法提供了底部附近运动应力的最基本估计,而分层导致LP方法高估了底部应力。这些结果提醒我们,这些方法并不等效,应该谨慎进行站点之间和模型之间的比较。 (c)2006 Elsevier Ltd.保留所有权利。

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