Statistical Design Basis for Submerged Diffuser

T. E. Pease, M. J. Skelly
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Abstract

A comparison is made among discharge criteria for various atmospheric and aquatic emissions. The dependence of effluent plume size on water levels, ambient temperatures, and drift currents was empirically determined from model simulation. Predictions of the effluent plume size frequency distribution were made: (1) Assuming the parameters are independent random variables; and (2) using a time series of lake levels, temperatures, and currents. The second method predicted less frequent occurrence of large plumes. It is concluded that: (1) Statistical description of predicted thermal plumes represents a more realistic evaluation of environmental impact than prediction for a “critical” condition; (2) readily available site data can be utilized to make statistical predictions of the effluent plume size for proposed outfalls; and (3) the effectiveness of design changes can be statistically evaluated and interpreted as frequencies with which given thermal criteria may be contravened.
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水下扩散器的统计设计基础
对各种大气和水体排放标准进行了比较。出水羽流大小对水位、环境温度和洋流的依赖是由模型模拟经验确定的。对出水羽流尺寸频率分布进行了预测:(1)假设参数为独立随机变量;(2)利用湖泊水位、温度和水流的时间序列。第二种方法预测大羽流出现的频率较低。结果表明:(1)预测热羽流的统计描述比“临界”条件下的预测更能反映环境影响;(2)可利用现成的场址数据,对拟议排放口的流出物羽流大小进行统计预测;(3)设计变化的有效性可以被统计评估,并被解释为可能违反给定热标准的频率。
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