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Evaluation of Penstock Tunnel Leakage with Instrumentation

机译:仪表压力管道泄漏评估。

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Underground penstock tunnels at hydropower plants often have probable failure modes related to high external pressures resulting from leakage. Leakage of aging penstocks is a problem that must be monitored with an appropriate surveillance program using strategically placed instrumentation. When higher pressures than expected are observed around the penstock, an investigation and analysis must be performed to determine the cause, assess the threat, change operating procedures, and design a mitigation approach. Geotechnical instrumentation, typically vibrating wire piezometers installed in the vicinity of the tunnel is critical to identifying any problems or conditions of concern. This paper presents a case study of a pumped storage facility where penstock leakage was suspected and addressed with additional sensors, data collection, and analysis. Calculations determined restrictions on watering and dewatering rates of the reservoirs to preserve the penstock. This paper describes instrumentation planning, sensor installation, and data analysis methods used to evaluate leakage at penstock tunnels. Modeling of large urban areas also called for efficient run strategies to achieve reasonable computation times. Adequate terrain grid sizes and computational model time step that allowed enough spatial resolution were controlled by the Courant condition being between 0.45 to 1. Errors associated with volume conveyance within the two-dimensional flow area were below 0.7% for all models.
机译:水力发电厂的地下压力管道隧道通常具有与泄漏引起的高外部压力有关的故障模式。老化的压力管道泄漏是一个问题,必须使用策略性放置的仪器通过适当的监视程序进行监视。当在压力管周围观察到比预期更高的压力时,必须进行调查和分析以确定原因,评估威胁,更改操作程序并设计缓解方法。岩土工程仪器,通常是安装在隧道附近的振弦式测压仪,对于确定任何问题或状况至关重要。本文介绍了一个抽水蓄能设施的案例研究,其中怀疑压力管道泄漏,并通过附加传感器,数据收集和分析解决了该问题。计算确定了对水库蓄水和脱水速率的限制。本文介绍了用于评估压力管道泄漏的仪器计划,传感器安装和数据分析方法。大城市地区的建模还要求有效的运行策略以实现合理的计算时间。足够的地形网格大小和计算模型时步允许足够的空间分辨率,由Courant条件控制在0.45到1之间。对于所有模型,与二维流区内的体积输运有关的误差均低于0.7%。

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