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热分层对废物稳定塘水力行为的影响。

The influence of thermal stratification on the hydraulic behavior of waste stabilization ponds.

作者信息

Kellner E, Pires E C

机构信息

School of Engineering of São Carlos, Hydraulics and Sanitary Eng Department (EESC/USP), SP, Brazil.

出版信息

Water Sci Technol. 2002;45(1):41-8.

Abstract

Thermal stratification, which is characterized by a high vertical thermal gradient, is usually observed in deep lakes. However, although waste stabilization ponds have small depths, their high turbidity provides favorable conditions for the occurrence of this phenomenon, mainly during summer. During that time of the year, the layers nearest to the surface concentrate a larger amount of thermal energy compared to the deeper layers, which results in a temperature difference between the surface and the bottom of the pond. As a consequence a density profile appears, with the less dense layers located at the surface of the pond and the densest ones close to the bottom. This stratification in the water column induces alterations in the flow pattern and a decrease of the useful volume of the pond. This paper presents a mathematical model developed to forecast the conditions of thermal stratification in waste stabilization ponds and the volume actually used for wastewater treatment. With these values it is possible to correct the average residence time of the liquid in the pond. The theoretical results were compared with experimental observations, and maximum differences of 15% between the calculated and observed temperature profiles were found.

摘要

热分层的特征是垂直热梯度大,通常在深湖中观察到。然而,尽管稳定塘深度较小,但由于其高浊度,主要在夏季为这种现象的发生提供了有利条件。在一年中的那个时候,与较深层相比,最接近水面的层集中了更多的热能,这导致了塘表面和底部之间的温差。结果出现了密度分布,密度较小的层位于塘的表面,而密度最大的层靠近底部。水柱中的这种分层会引起流态变化,并减少塘的有效容积。本文提出了一个数学模型,用于预测稳定塘中的热分层条件以及实际用于废水处理的容积。利用这些值可以校正液体在塘中的平均停留时间。将理论结果与实验观测值进行了比较,发现计算温度分布与观测温度分布之间的最大差异为15%。

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