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Special Considerations for Protecting Very Long Transmission Mains from Hydraulic Transients

机译:保护超长输电干线免受液压瞬变影响的特殊注意事项

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Hydraulic transients are created during a change in system operation related to flow and pressure. It is typically a temporary unsteady state condition that every system experiences in between initial and final steady state conditions. Typical system operations such as pump starts/stops, valve opening/closing create unsteady state conditions creating pressure waves that propagate through the system. These created pressure waves are the mechanism that hydraulic systems utilize to go from a one hydraulic state to another. The propagating pressure waves create both high- and low-pressure events that can be detrimental to a transmission system. High pressures can create damage to pumps, valves, and other system appurtenances, while low pressures can lead to column separation, cavitation, and subsequent failure of pipelines. Most transients can be controlled by adhering to and implementing operational strategies that are geared towards transient control, such as utilizing procedures for controlled startup and shutdown during normal operation. But events that cannot be controlled by operational strategies, such as power failures or pump failures, need automatic devices that can control the magnitude of and minimize the impact resulting from such transient events. The control of hydraulic transients in very long transmission mains could require several additional considerations in analysis as well as in sizing devices. Even adhering to and implementing established operational strategies may also require several additional considerations and in-depth analyses. This paper will discuss two case studies related to analysis, design and modification of hydraulic transient controls for very long transmission mains with emphasis on operational modifications to existing components.
机译:在与流量和压力有关的系统运行变化期间会产生水力瞬变。通常,这是一个暂时的非稳态条件,每个系统都处于初始和最终稳态条件之间。典型的系统操作(例如泵的启动/停止,阀的打开/关闭)会产生不稳定状态,从而产生通过系统传播的压力波。这些产生的压力波是液压系统用来从一种液压状态转变为另一种液压状态的机制。传播的压力波会同时产生高压事件和低压事件,这可能会对传输系统造成不利影响。高压会损坏泵,阀门和其他系统配件,而低压会导致色谱柱分离,气蚀和随后的管道故障。大多数瞬态可以通过坚持和执行针对瞬态控制的操作策略来控制,例如在正常操作期间利用程序进行受控的启动和关闭。但是,无法通过操作策略控制的事件(例如电源故障或泵故障)需要自动设备,这些设备可以控制此类瞬态事件的幅度并将其影响降到最低。在分析以及选型设备中,控制非常长的输电干线中的液压瞬变可能需要另外考虑一些因素。即使坚持并实施既定的运营策略,也可能需要进行其他一些考虑和深入的分析。本文将讨论两个案例研究,这些案例涉及非常长的变速箱干线的液压瞬态控制的分析,设计和修改,重点是对现有组件的操作性修改。

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