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Mechanical Reliability in Potable Reuse: Evaluation of an Advanced Water Purification Facility

机译:饮用水回用中的机械可靠性:高级净水设施的评估

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The mechanical reliability of a direct potable reuse (DPR) treatment train-consisting of ozone, biological activated carbon, microfiltration/ultrafiltration, reverse osmosis, and ultraviolet light with advanced oxidation-was evaluated using critical component analysis at the Demonstration Pure Water Facility in San Diego, Calif. Operators maintained logs of all mechanical issues that occurred over a yearlong test period; these were used to calculate several reliability metrics for the unit processes. Mechanical issues were also cross-referenced with treatment performance data to determine whether any "critical" failures-i.e., those that impacted pathogen reduction performance-occurred. The results demonstrated that no critical failures occurred, though the communication systems experienced critical malfunctions. These malfunctions triggered an immediate system shutdown, mitigating the potential risk to public health. While several components experienced failures, malfunctions, and/or maintenance events, the processes maintained a high degree of availability, demonstrating that DPR facilities can be designed with a high degree of mechanical reliability.
机译:在San示范纯水厂使用关键成分分析法评估了直接饮用重复使用(DPR)处理程序的机械可靠性,其中包括臭氧,生物活性炭,微滤/超滤,反渗透和具有高级氧化作用的紫外线。加利福尼亚州的迭戈市。操作员保存了为期一年的测试期间发生的所有机械问题的日志。这些被用来计算单元过程的几个可靠性指标。机械问题也与处理性能数据进行了交叉引用,以确定是否发生了任何“关键”故障,即那些影响病原体减少性能的故障。结果表明,尽管通信系统遇到严重故障,但没有发生严重故障。这些故障导致系统立即关闭,从而减轻了对公共健康的潜在风险。尽管几个组件都经历了故障,故障和/或维护事件,但这些过程仍保持了很高的可用性,这表明DPR设施可以设计成具有很高的机械可靠性。

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