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Analysis of Intake and Discharge Salinity Regimes for a Desalination Plant

机译:海水淡化厂的摄入和排出盐度方案分析

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A desalination facility in Swansea, Massachusetts is under design to withdraw water from the Palmer River during the six-hour period around low tide while the brine discharge is scheduled during the 6-hr period around high tide. These time periods minimize the discharge salinity relative to ambient conditions. An analysis to determine the likely variation of ambient salinities at both the intake and discharge during plant operation was needed both as part of the information needs for plant design as well as an assessment of environmental impacts. The analysis required characterization of the present salinity structure so a field program was undertaken. Both a continuous time series of salinity and a series of vertical salinity profiles at the intake and discharge locations were part of this field program. The long term data was processed to determine the 6-hr block average salinities centered at low tide and high tide, corresponding to times of water withdrawal and discharge. Using exponential regressions the low tide and high tide salinities were related to river flow. The vertical profile data were then used to estimate the salinity at the intake and discharge. Using linear regressions, the intake and discharge salinities were calculated from the low tide and high tide salinities predicted from the exponential regressions. Typical seasonal salinities based on seasonal river flows were calculated.
机译:Swansea的海水淡化设施在Massachusetts的设计下,在六小时左右的六小时期间从Palmer河上取出水,而盐水放电在高潮中的6小时期间预定。这些时间段相对于环境条件最小化了放电盐度。作为在工厂设计的信息需求的一部分以及环境影响的评估中,需要分析在工厂操作期间的摄入和放电两者的摄入和放电的可能变化。分析所需表征本盐度结构,因此进行了一个现场程序。在进气和放电位置的连续时间序列和一系列垂直盐度曲线均为该场计划的一部分。处理长期数据以确定以低潮和高潮为中心的6-HR嵌段平均盐度,对应于排水和放电的时间。使用指数回归潮汐和高潮盐度与河流有关。然后使用垂直型谱数据来估计进气和放电的盐度。使用线性回归,从指数回归预测的低潮和高潮盐度计算进气和放电盐度。计算基于季节性河流流动的典型季节性盐度。

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