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首页> 外文期刊>Journal of Environmental Engineering >Methodology for Analyzing Dissolved Oxygen Consumption in Benthic Chambers
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Methodology for Analyzing Dissolved Oxygen Consumption in Benthic Chambers

机译:分析底栖舱室中溶解氧消耗量的方法

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Dissolved oxygen (DO) consumption in the sediments of natural aquatic ecosystems occurs by mass flux across the water-sediment interface. This mass flux is determined as either the rate of oxygen consumption in the sediment or the rate of DO diffusion across the diffusive sublayer. The thickness of the diffusive sublayer is determined by the flow conditions in the turbulent water column. Consequently, feedback occurs between the biochemical consumption that occurs in the sediment and the flow that occurs in the water column. Together, these conditions define the DO flux across the water-sediment interface. Benthic chambers have been used to measure this flux in field and experimental conditions. However, these measurements do not account either for the fact that the flow inside a benthic chamber is not representative of field conditions or for the DO consumption in the water column. Thus, they can provide an inaccurate estimation of the sediment DO demanded in the field. This article aims to present and discuss an approach for analyzing a time series of DO depletion inside a benthic chamber. Based on this approach, the processes related to turbulent water transport in the column are separated from the processes that characterize biochemical consumption in the sediments and the water column. Under these conditions, the parameters related to biochemical consumption in the sediments can be used to compute the expected DO demanded of the sediments in field conditions. Sediment samples from a lagoon near the Universidad de Chile campus in Santiago, the capital city of Chile, were used to illustrate the application of the proposed method. In addition, dimensionless numbers were used to define the method's validity and limitations. (C) 2014 American Society of Civil Engineers.
机译:天然水生生态系统沉积物中的溶解氧(DO)消耗是通过水-沉积物界面之间的质量通量发生的。该质量通量被确定为沉积物中氧气消耗的速率或整个扩散子层中的DO扩散速率。扩散子层的厚度由湍流水柱中的流动条件决定。因此,在沉积物中发生的生化消耗与水柱中发生的流量之间会产生反馈。这些条件共同定义了水-沉积物界面上的溶解氧通量。底栖室已用于在野外和实验条件下测量此通量。但是,这些测量结果都不能说明底栖室内的流量不能代表野外条件,也不能说明水柱中的溶解氧消耗量。因此,他们可能无法准确估算出野外所需的沉积物DO。本文旨在介绍和讨论一种分析底栖腔室内溶解氧消耗时间序列的方法。基于这种方法,将与塔中湍流输运有关的过程与表征沉积物和水塔中生化消耗的过程分开。在这些条件下,与沉积物中生化消耗有关的参数可用于计算野外条件下沉积物的期望溶解氧需求量。智利首都圣地亚哥大学智利分校校园附近一个泻湖的沉积物样品被用来说明该方法的应用。此外,使用无量纲数字定义方法的有效性和局限性。 (C)2014美国土木工程师学会。

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