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Proving That Bladder Surge Tanks Cured Excessive Surge Conditions in a 30' Force Main

机译:证明膀胱喘振坦克在30英尺的力量中固化过度的喘振条件

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This paper demonstrates a successful approach to implementing and evaluating the effectiveness of surge improvements in an existing high-pressure pumping system, and it discusses the resulting post-construction modifications that helped to achieve the desired performance. The project shows the importance of specifying performance criteria and coordinating closely with equipment manufacturers throughout design and construction of surge improvement projects. Other important lessons on the implementation of surge improvements, including the value of performance monitoring, are also presented. This paper also discusses: 1. Surge model calibration; 2. Performance monitoring procedures; 3. Comparison of model-predicted, and field-measured, post-construction surge conditions; 4. Comparison of pre- and post-construction surge conditions; and 5. Challenges and lessons learned from the project. Through the successes and lessons learned from this project, readers will gain a better understanding of transient pressure concerns, surge modeling, transient pressure monitoring, surge attenuation, bladder surge tanks, and the importance of performance testing.
机译:本文演示一个成功的方法来实施,并在现有的高压泵系统评估浪涌改进的有效性,并讨论所得到的后施工修饰有助于实现所需的性能。该项目给出了指定的性能标准,并与设备生产商在设计和浪涌改进项目的建设密切协调的重要性。对浪涌改进,包括性能监视的价值实现其他重要的经验教训,还提出。本文还讨论:1浪涌模型校准; 2.性能监视程序; 3.模型预测,和现场测量,施工后喘振状况比较; 4.比较的前置和后置结构的喘振状况; (五)挑战和经验从项目的经验教训。通过从这个项目学到的成功做法和经验,读者将获得更好的理解瞬时压力的担忧,潮模拟,瞬时压力监测,浪涌衰减,膀胱缓冲罐和性能测试的重要性。

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