【24h】

COMPUTATIONAL FLUID DYNAMIC SIMULATION OF HIGH ASPECT RATIO CROSS-SECTIONAL ORIFICE JETS: SHAPE OF THE GASKET ON THE INTERNAL FLOW

机译:高长宽比横截面生物射流的计算流体动力学模拟:内部流动中垫片的形状

获取原文
获取原文并翻译 | 示例

摘要

Improved computing power has increased the capacity of numerical modellers to simulate real-life situations with the expectation that results will be useable and accurate. It is easy when modelling physically large geometries to over simplify aspects of the model, usually because of mesh restrictions, that could be to the detriment of the results. For many years Computational Fluid Dynamics has been used to simulate leaks of hydrocarbons with the production areas of offshore superstructures,. Many simplifications are required, one of which is modelling these leaks as axisymmetric jets. Previous work, [3, 4] has shown that this is not a good simplification and could have serious safety implications. A more accurate model of the jet is needed for the full consequences of a gas leak to be ascertained. Having established that a leak from a flange or crack in a pipe needs to be modelled as a high aspect ratio cross-sectional orifice jet there are also other considerations. Work on the turbulence model and inlet conditions that are best suited for these simulations has been done,. This paper investigates the flow within the pipe and up through the gasket before release into the air as a jet. Different idealised shapes of gaskets are used and the flow at the jet exit are investigated. It is hoped that a range of conditions can be established that set criteria for such modelling in the future.
机译:改进的计算能力提高了数值建模人员模拟现实情况的能力,并期望结果将是有用和准确的。通常,由于网格限制,在对物理上较大的几何图形进行建模时,过度简化模型的方面很容易,这可能会损害结果。多年来,计算流体动力学一直被用于模拟海上上层建筑生产区域的碳氢化合物泄漏。需要进行许多简化,其中之一是将这些泄漏建模为轴对称射流。先前的工作[3,4]已经表明,这并不是一个很好的简化,并且可能会带来严重的安全隐患。为了确定气体泄漏的全部后果,需要使用更精确的射流模型。已经确定需要将法兰的泄漏或管道中的裂缝建模为高纵横比的横截面孔口射流,因此还需要考虑其他因素。已经完成了最适合这些模拟的湍流模型和进气条件的工作。本文研究了管道内部以及通过垫圈向上的流动,然后以射流的形式释放到空气中。使用了不同的理想形状的垫片,并研究了射流出口处的流量。希望将来可以建立一系列条件,为此类建模设定标准。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号