Chang Liu, Shiyan Wang, Xiaobo Liu, Huaidong Zhou, Budong Li, Yan-liang Du, Liang Wang
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引用次数: 0
摘要
在热分层过程中,在大型储层中经常观察到低氧缺氧。在低阴离子层中,溶解氧(DO)不断被生物和化学反应消耗,导致储层底部形成稳定的缺氧区。面积低氧耗氧量(AHOD)是目前广泛应用的低氧耗氧量指标,但该指标不能反映含污染物沉积物的深层水库底部的DO耗氧量过程。以大黑亭水库为研究对象,提出了分层面低氧耗氧量(stratified area hypoimnetic oxygen depletion, S-AHOD)概念,并建立了S-AHOD计算模型,该模型能够准确描述大黑亭水库底部缺氧带的DO耗氧量过程,识别缺氧带不同水深的DO耗氧量,量化沉积物需氧量对总体耗氧量的贡献。研究发现,沉积物需氧量对库区整体低通量DO耗竭的贡献较大(41.4%),不同水深下DO耗竭率差异较大,从库区表层到库区底层逐渐增大,在库区底层达到最大值。最后,在已有工作成果的基础上,提出了适用于含重污染物沉积物较多的湖泊和水库的ahd计算公式。
Analysis of contributing factors to dissolved oxygen depletion in the anoxic zone and their respective contributions based on stratified hypolimnetic oxygen depletion
Hypolimnetic anoxia is often observed in large reservoirs during thermal stratification. In the hypolimnion layer, dissolved oxygen (DO) is continuously consumed by biological and chemical reactions, resulting in a stable anoxic zone at the bottom of the reservoir. The areal hypolimnetic oxygen depletion (AHOD) has been a widely used indicator for hypolimnetic DO depletion, but this indicator could not reflect the DO depletion process at the bottom of deep reservoirs with deposits of pollutant sediments. With Daheiting Reservoir as the study case, the concept of stratified areal hypolimnetic oxygen depletion (S-AHOD) was proposed, and an S-AHOD calculation model was built, which could accurately describe the DO depletion process in the anoxic zone at the bottom of Daheiting Reservoir, identify the DO depletion rate at different water depths in the anoxic zone and quantify the contribution of sediment oxygen demand to the overall oxygen depletion. It was found that sediment oxygen demand contributed considerably (41.4%) to the overall hypolimnetic DO depletion in the reservoir, DO depletion rate varied considerably at different water depths, which increased from the surface to the bottom of the reservoir and reached the maximum at the bottom layer. Finally, based on results of existing works, an AHOD calculation equation applicable to lakes and reservoirs with considerable deposits of heavily pollutant sediments was put forward.