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Impacts of Flow and Tracer Release Unsteadiness on Tracer Analysis of Water and Wastewater Treatment Facilities

机译:流动和示踪剂的影响在水和废水处理设施的跟踪分析上释放不稳定

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Computational fluid dynamics (CFD) was used to investigate how residence time analysis based on passive tracer transport in environmental and chemical engineering fluid systems can be significantly affected by flow or tracer release unsteadiness. The unsteadiness may be caused by intermittent influent flow, time-varying operations, and nonuniform tracer release profiles. Oftentimes these unsteady conditions are considered negligible and their impact on residence time analysis is not considered. Systems analyzed included a full-scale stabilization pond, a full-scale oxidation ditch, and full-scale and lab-scale baffled tanks. In the case of the stabilization pond, it was found that time-dependent inflow based on realistic water consumption pattern does not significantly affect mean residence time (MRT) but does have a nonnegligible effect on baffling factor theta 10 relative to constant inflow. In the case of a surface aerated oxidation ditch, aerator speed was found to have a nonnegligible impact on MRT, and thus it is recommended that CFD tracer studies should consider changes in aerator speed during daily cycles of operation. The slug and step methods were considered for tracer analysis in baffled contactors. It was found that the tracer release time in the slug method should be kept at less than 5% of the theoretical residence time in order to obtain accurate measurements of residence time characteristics. Furthermore, residence time distribution obtained from tracer analysis based on the step method can be affected by the initial transient and subsequent fluctuations in the time series of injected tracer concentration that often characterizes physical experiments.
机译:计算流体动力学(CFD)用于研究基于环境和化学工程流体系统中的被动示踪运输的停留时间分析如何受到流动或示踪释放不稳定的显着影响。不稳定可能是由间歇的流动流动,时变运算和非均匀示踪释放轮廓引起的。通常认为这些不稳定条件可以忽略不计,并且不会考虑对居住时间分析的影响。分析的系统包括全尺寸稳定池,全尺寸氧化沟,和全尺度和实验室舒适的坦克。在稳定池的情况下,发现基于现实耗水模式的时间依赖流入不会显着影响平均停留时间(MRT),但对恒定流入具有对令人振奋的因子10的不可止境的影响。在表面充气氧化沟的情况下,发现曝气器速度对MRT的非阻值合格的影响,因此建议CFD示踪剂研究应考虑在每日运行循环期间曝气机速度的变化。考虑了挡板接触器中的示踪性分析的SLUG和步骤方法。发现SLUIS方法中的示踪剂释放时间应保持在少于理论停留时间的5%,以便获得居住时间特征的准确测量。此外,基于步进方法从示踪剂分析获得的停留时间分布可以受到通常表征物理实验的时间序列中的初始瞬态和随后波动的影响。

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