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Scalar dissipation rates in non-conservative transport systems

机译:非保守运输系统中的标量耗散率

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摘要

This work considers how the inferred mixing state of diffusive and advective-diffusive systems will vary over time when the solute masses are not constant over time. We develop a number of tools that allow the scalar dissipation rate to be used as a mixing measure in these systems without calculating local concentration gradients. The behavior of dissipation rates are investigated for single and multi-component kinetic reactions and a commonly studied equilibrium reaction. The scalar dissipation rate of a tracer experiencing first order decay can be determined exactly from the decay constant and the dissipation rate of a passive tracer, and the mixing rate of a conservative component is not the superposition of the solute specific mixing rates. We then show how the behavior of the scalar dissipation rate can be determined from a limited subset of an infinite domain. Corrections are derived for constant and time dependent limits of integration the latter is used to approximate dissipation rates in advective-diffusive systems. Several of the corrections exhibit similarities to the previous work on mixing, including non-Fickian mixing. This illustrates the importance of accounting for the effects that reaction systems or limited monitoring areas may have on the inferred mixing state.
机译:这项工作考虑了当溶质的质量不是随时间恒定时,扩散和对流-扩散系统的推断混合状态将如何随时间变化。我们开发了许多工具,这些工具可以将标量耗散率用作这些系统中的混合度量,而无需计算局部浓度梯度。研究了单组分和多组分动力学反应以及通常研究的平衡反应的耗散率行为。可以通过衰减常数和无源示踪剂的耗散率来精确确定经历一阶衰减的示踪剂的标量耗散率,并且保守组分的混合率不是溶质比混合率的叠加。然后,我们说明如何从无限域的有限子集确定标量耗散率的行为。对常数和时间相关的积分极限进行校正,后者用于近似对流扩散系统中的耗散率。某些校正与以前的混合工作(包括非Fickian混合)相似。这说明了考虑反应系统或有限的监控区域可能对推断的混合状态产生影响的重要性。

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