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Transient Analysis of Laminar Twin Semi-Confined Jets and Development of a Time Step Optimizing Fuzzy Controller.

机译:层流双半封闭射流的瞬态分析及时步优化模糊控制器的开发。

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摘要

Transient laminar simulations of two parallel jets issuing into a semi-confined space were conducted. Critical Reynolds numbers were noted when two dimensional flows transitioned from a steady state symmetrical flow to the formation of secondary downstream recirculations and ultimately to transient flow. New non-dimensionalizations for Reynolds number and recirculation size are proposed which incorporate both inlet size and channel height. The effects of jet spacing on near inlet mixing in two dimensional geometries were also studied. It was seen that the majority of mixing occurred in the space between the two jets. Placing the jets along the walls of the confined space allowed for the most efficient mixing.;Critical Reynolds number analysis was then extended to a three dimensional semi-confined duct with circular inlets. The growth of large recirculation zones and their effect on inflow deformation were measured under increasing Reynolds number. The confinement stifles the growth of the recirculation regions as the Reynolds number is increased, causing a deformation of the inflow circular profile. The deformation of the inflow by the recirculation zones appear to be the driving cause of instability in the three dimensional flows.;A time step optimizing fuzzy controller is also described. Simulations were run at three Reynolds numbers marking different transient intensities. The fuzzy controller was seen to logically modify the time step according to changes in computational signals. It is shown that a fuzzy in situ time step controller can reduce computing costs of two dimensional unsteady transient simulations.
机译:进行了两个平行射流向半封闭空间的瞬态层流模拟。当二维流从稳态对称流过渡到次级下游回流的形成并最终过渡到瞬态流时,就会注意到临界的雷诺数。提出了针对雷诺数和再循环尺寸的新的无量纲化方法,该方法结合了入口尺寸和通道高度。还研究了射流间距对二维几何形状中近入口混合的影响。可以看出,大多数混合发生在两个喷嘴之间的空间中。将射流沿密闭空间的壁放置可实现最有效的混合。然后,将关键的雷诺数分析扩展到带有圆形入口的三维半封闭管道。在增加雷诺数的情况下,测量了大回流区的生长及其对流入变形的影响。当雷诺数增加时,该限制抑制了再循环区域的增长,从而导致流入的圆形轮廓变形。回流区的流入变形似乎是三维流不稳定的驱动因素。在三个雷诺数下进行了模拟,这些数标明了不同的瞬态强度。可以看到模糊控制器根据计算信号的变化在逻辑上修改了时间步长。结果表明,模糊原位时间步长控制器可以降低二维非稳态瞬态仿真的计算成本。

著录项

  • 作者

    Rafferty, Ian.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:57

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