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Air and gas pockets in sewerage pressure mains

机译:排污压力总管中的气袋和气袋

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In The Netherlands, wastewater is collected in municipal areas and transported to large centralised WWTPs by means of an extensive system of pressure mains. Over the past decades these pressure mains did not receive much attention in terms of monitoring of performance or maintenance. For that reason, in practice their state of functioning is often not known. Failure of operation is only noticed when the capacity of the system proves to be insufficient to fulfil the minimum design capacity demand. A recent inventory showed that half of the pressure mains show an increased pressure loss for no directly obvious reason. Many causes may account for the reduction of the system's nominal capacity like an increased wall roughness, scaling or occurrence of free gas in the pipeline. The occurrence of free gas may be caused by degassing of dissolved (bio) gas or by air entrained at the pumps' inlet or at air valves. A research study is started that will focus on three main issues: The description of the gas-water phenomena in wastewater pressure mains with respect to transportation and dynamic hydraulic behaviour, A method to diagnose gas problems, and To overcome future problems by either applying remedial measures or improving the design of wastewater pressure systems. For this study, two experimental facilities are constructed, a small circuit for the study of multi-phase flow and a second, larger one for the research into diagnostic methods. This paper describes the preliminary results of the experiments in the multi-phase circuit.
机译:在荷兰,废水收集在市政区,并通过广泛的压力主管系统输送到大型集中式污水处理厂。在过去的几十年中,这些压力主管在性能或维护的监控方面并未受到太多关注。因此,在实践中它们的功能状态通常是未知的。仅当系统容量不足以满足最小设计容量要求时,才会注意到运行失败。最近的一份清单显示,没有直接明显的原因,一半的压力主管显示出增加的压力损失。许多原因可能导致系统标称容量的降低,例如壁面粗糙度的增加,结垢或管道中游离气体的产生。游离气体的产生可能是由于溶解的(生物)气体脱气或泵的入口处或空气阀处夹带的空气引起​​的。开始的研究将集中在三个主要问题上:对废水压力主管道中与运输和动态水力行为有关的气体-水现象的描述,诊断气体问题的方法以及通过采取补救措施来克服未来的问题措施或改进废水压力系统的设计。对于本研究,构建了两个实验设施,一个用于多相流研究的小型回路,另一个用于诊断方法研究的较大回路。本文介绍了在多相电路中进行实验的初步结果。

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