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富营养化湖泊中溶解氧浓度的三维空间分布评估。

Evaluation of 3-D spatial distribution of dissolved oxygen concentrations in a eutrophic lake.

作者信息

Yenilmez Firdes, Düzgün Şebnem, Aksoy Ayşegül

机构信息

Department of Environmental Engineering, Akdeniz University, 07058, Antalya, Turkey.

Department of Environmental Engineering, Middle East Technical University, 06800, Ankara, Turkey.

出版信息

Environ Sci Pollut Res Int. 2023 Apr;30(18):54106-54118. doi: 10.1007/s11356-023-26143-w. Epub 2023 Mar 4.

Abstract

In this study, three-dimensional (3-D) ordinary kriging of dissolved oxygen (DO) concentrations was performed for a eutrophic reservoir based on 81 sampling points using Stanford Geostatistical Modeling Software (SGeMs). Potential hotspots (problematic zones in terms of water quality with high/low DO concentrations) not only at the surface but also in deeper layers of Porsuk Dam Reservoir (PDR) were evaluated. Moreover, 3-D distributions of DO, and specific conductivity (SC) were examined against the thermocline layer identified using the 3-D temperature data. Thermocline layer existed between 10 and 14 m below the surface based on 3-D temperature data. This result showed that the traditional approach of collecting samples from mid-depths may cause incomplete characterization and evaluation of water quality as thermocline layer may not coincide with mid-depth. Although the variation in SC values and temperatures above and below the thermocline layer were relatively homogeneous, this was not the case for DO. 3-D DO distribution suggested a better location for water withdrawal for domestic purposes. 3-D DO maps generated by predicting data at unmeasured locations at different depths could be used as input for 3-D water quality estimation in the reservoir through model simulations in future. Moreover, the outcomes can also be useful in the segmentation (physical configuration) of the water body for future water quality modeling studies.

摘要

在本研究中,使用斯坦福地质统计建模软件(SGeMs),基于81个采样点对一个富营养化水库的溶解氧(DO)浓度进行了三维(3-D)普通克里金法分析。评估了波尔苏克大坝水库(PDR)不仅表层而且更深层潜在的热点区域(就水质而言,DO浓度高/低的问题区域)。此外,根据使用三维温度数据确定的温跃层,研究了DO和电导率(SC)的三维分布。根据三维温度数据,温跃层存在于水面以下10至14米之间。这一结果表明,由于温跃层可能与中层深度不一致,从中层深度采集样本的传统方法可能会导致水质特征描述和评估不完整。尽管温跃层上下的SC值和温度变化相对均匀,但DO并非如此。三维DO分布为生活用水取水提供了更好的位置。通过在未测量位置预测不同深度的数据生成的三维DO图,未来可通过模型模拟用作水库三维水质估计的输入。此外,这些结果在水体分割(物理结构)方面对于未来水质建模研究也可能有用。

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