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Theoretical and Experimental Investigations of Wave-Induced Vertical Mixing

机译:波浪诱导垂直混合的理论和实验研究

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摘要

Theoretical investigations supported by a series of original laboratory experiments are conducted to study a wave-induced vertical mixing process. The derived semi-analytical solution is very efficient and is applied to predict the effects of water waves on the temperature changes and the evolution of temperature profiles. The results indicate that waves increase a mixing process. The rate of change of the temperature is higher when waves contributed to mixing process and this process increases with increasing the wavelength to water depth ratio. The analysis indicates that for typical ocean waves the contribution of water waves to mixing may be several orders of magnitude higher than a corresponding contribution arising from the classical diffusion process. This implies a need to conduct more theoretical studies and experimental investigation on the effect of water waves on mixing processes. A series of original laboratory experiments were conducted in the insulated wave flume to verify the derived model. The comparisons show a reasonable agreement between predicted and measured temperature profiles. A reasonable agreement between theoretical results and experimental data is observed for the whole considered range of initial temperature distributions. The comparisons indicate that the model is applicable even to cases when gradients in temperature distributions over water depth are fairly high.
机译:在一系列原始实验室实验的支持下进行了理论研究,以研究波浪引起的垂直混合过程。导出的半解析解非常有效,可用于预测水波对温度变化和温度分布演变的影响。结果表明,波浪增加了混合过程。当波有助于混合过程时,温度的变化率更高,并且该过程随着波长与水深比的增加而增加。分析表明,对于典型的海浪,水浪对混合的贡献可能比经典扩散过程产生的相应贡献高几个数量级。这意味着需要对水波对混合过程的影响进行更多的理论研究和实验研究。在绝缘波槽中进行了一系列原始实验室实验,以验证导出的模型。比较显示预测的温度曲线和测量的温度曲线之间存在合理的一致性。对于整个考虑的初始温度分布范围,观察到理论结果与实验数据之间的合理一致性。比较表明,该模型甚至适用于水深上温度分布梯度相当高的情况。

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