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Operational issues involving use of supplementary cooling towers to meet stream temperature standards with application to the Browns Ferry Nuclear Plant

机译:运行问题涉及使用辅助冷却塔以满足溪流温度标准,并应用于Browns Ferry核电厂

摘要

A mixed mode cooling system is one which operates in either the open, closed, or helper (once-through but with the use of the cooling towers) modes. Such systems may be particularly economical where the need for supplementary cooling to meet environmental constraints on induced water temperature changes is seasonal or dependent upon other transient factors such as stream- flow. The issues involved in the use of mixed mode systems include the design of the open cycle and closed cycle portions of the cooling system, the specification of the environmental standard to be met, and the monitoring system and associated decision rules used to determine when mode changes are necessary. These issues have been examined in the context of a case study of TVA's Browns Ferry Nuclear Plant which utilizes the large quantity of site specific data reflecting conditions both with and without plant operation. The most important findings of this study are: (1) The natural temperature differences in the Tennessee River are of the same order of magnitude (50F) as the maximum allowed induced temperature increase. (2) Predictive estimates based on local hydrological and meteorological data are capable of accounting for 40% of the observed natural variability. (3) Available algorithms for plant induced temperature increases provide estimates within 1F of observed values except during periods of strong stratification. (4) A mixed mode system experiences only 10% of the capacity losses experienced by a totally closed system, (5) The capacity loss is relatively more sensitive to the environmental standard than to changes in cooling system design. (6) About one third of the capacity loss incurred using the mixed mode system is the result of natural temperature variations. This unnecessary loss may be halved by the use of predictive estimates for natural temperature differences.
机译:混合模式冷却系统是以开放,关闭或辅助(一次通过但使用冷却塔)模式运行的系统。这样的系统可能特别经济,因为需要补充冷却以满足对引起的水温变化的环境限制是季节性的,或者取决于其他瞬态因素,例如水流。混合模式系统使用中涉及的问题包括冷却系统的开放循环和封闭循环部分的设计,要满足的环境标准的规范以及用于确定何时更改模式的监视系统和相关的决策规则是必要的。在TVA的布朗斯轮渡核电站的案例研究中对这些问题进行了研究,该案例利用了大量的现场特定数据来反映有无电厂运行的情况。这项研究的最重要发现是:(1)田纳西河的自然温差与允许的最大允许温度上升幅度相同(50F)。 (2)基于当地水文和气象数据的预测性估算能够解决观测到的自然变异性的40%。 (3)除强烈分层期间外,可用的植物诱导温度升高算法可提供在观测值1F以内的估计值。 (4)混合模式系统仅经历全封闭系统所经历的容量损失的10%,(5)容量损失相对于环境标准比对冷却系统设计的变化更为敏感。 (6)使用混合模式系统导致的容量损失约三分之一是自然温度变化的结果。通过使用自然温度差异的预测估计,可以将这种不必要的损失减少一半。

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