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Pressure Recovery in Overflow Piping Due to Siphonic Effects

机译:由于虹吸效应,溢流管道的压力恢复

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摘要

The purpose of this study is to determine if siphonic effects are able to induce a pressure recovery in ship tank overflow piping in favorable flow conditions. The study will go over key features and flow parameters that will likely produce the siphonic effects and the potential that this knowledge imparts for the design of tank overflow arrangements.Overflow piping is necessary when filling tanks on a large scale since allowing a closed tank to fill past its capacity will likely exceed its design strength resulting in failure. Investigating if a pressure recovery credit can be taken to minimize or negate the effects of frictional losses can have a positive effect to optimize tank and piping design. An optimized design can reduce cost and weight.The methods implemented in this study include the use of a Pressure Drop Worksheet which uses the Darcy-Weisbach equation for friction loss through a pipe, a computational fluid dynamics simulation program (Star-CCM+), and a fluid flow analysis and design modeling software (Pipe-Flo Professional). Using these three tools, the effects of siphons on pressure drop can be compared across different flowrates. A baseline will be established in order to ensure that each tool will provide a similar result in a simplified scenario. Star-CCM+ and Pipe-Flo Professional will be tested to ensure that a siphon can actually be modeled within the program. A pressure drop vs. flowrate comparison between the three tools will be established. Future work can be performed to determine how upstream and downstream conditions will affect the magnitude of the siphon.
机译:本研究的目的是确定虹吸效果是否能够在有利的流动条件下造成船舶溢流管道中的压力恢复。该研究将超越可能产生虹吸效应的关键特征和流量参数,以及这种知识为坦克溢出布置的设计提供赋予的潜力。在大规模填充罐时,溢出管道是必要的,因为允许闭合罐填充其容量可能超过其设计强度导致失败。调查如果可以采取压力恢复信用以最小化或否定摩擦损失的影响,可以对优化罐和管道设计进行积极效果。优化的设计可以降低成本和重量。本研究中实施的方法包括使用压力下降工作表,该工作表通过管道,计算流体动力学仿真程序(Star-CCM +)和流体流量分析和设计建模软件(管道浮管专业)。使用这三种工具,可以在不同的流量上比较虹吸管对压降的影响。将建立一个基线,以确保每个工具在简化方案中提供类似的结果。将测试Star-CCM +和管道 - Flo Professional,以确保虹吸管实际上可以在程序中进行建模。建立三个工具之间的压力下降与流量比较。可以执行未来的工作以确定上行和下游条件如何影响虹吸管的大小。

著录项

  • 来源
    《Naval engineers journal》 |2020年第4期|161-173|共13页
  • 作者

    Anthony DeFilippo;

  • 作者单位

    Gibbs&Cox Inc.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-19 03:11:30

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