Review: Prediction of Unexpected Fluid-Induced Vibration in Pipeline Network

Yamaguchi, Ryuhei and Ohta, Makoto (2022) Review: Prediction of Unexpected Fluid-Induced Vibration in Pipeline Network. World Journal of Mechanics, 12 (02). pp. 17-40. ISSN 2160-049X

[thumbnail of wjm_2022070109314428.pdf] Text
wjm_2022070109314428.pdf - Published Version

Download (8MB)

Abstract

This review considers unexpected destructive disasters involving fluid power plants, such as nuclear electric power plants and fluid power plants. It specifically addresses the possibility of fluid vibration induced in a pipeline network of such a plant. The authors investigate the flow oscillation induced within a T-junction for laminar steady flow at a Reynolds number less than 103 and clarify that there is a periodic fluid oscillation with a constant Strouhal number independent of several flow conditions. Generally, a nuclear electric power plant is constructed using straight pipes, elbows, and T-junctions. Indeed, a T-Junction is a basic fluid element of a pipeline network. The flow in a fluid power plant is turbulent. There are peculiar flow phenomena that occur at high Reynolds numbers, which are also seen in other flow situations; e.g., Kaman vortices are observed around a circular cylinder in low Reynolds numbers, around structures like bridges and downstream of islands in oceans. Although the flow situation of a T-junction and elbow in a fluid power plant, such as the fluid suddenly changing its flow direction is turbulent flow, the authors mention the possibility of the fluid-induced vibration of a pipeline network.

Item Type: Article
Subjects: Asian STM > Engineering
Depositing User: Managing Editor
Date Deposited: 09 Feb 2023 07:34
Last Modified: 18 May 2024 07:13
URI: http://journal.send2sub.com/id/eprint/582

Actions (login required)

View Item
View Item