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Numerical and experimental study of air and fuel flow in small engine carburetors.

机译:小型发动机化油器中空气和燃料流动的数值和实验研究。

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摘要

Due to price constraints, small engines rely on inexpensive and mechanically-simple devices for air-fuel mixture formation: carburetors. A typical carburetor consists of a complex set of internal passages designed to deliver to the engine the correct air-fuel mixture according to speed and load. This goal is achieved through several physical processes: flows through passages of short length and complex geometry; flows that transition from laminar to turbulent; high-frequency pulsating flow; two-phase flow of various forms, i.e., bubbles, sprays and thin liquid films; and flows with changing fuel and air properties due to rapid changes in temperature and pressure. This study addressed the theoretical modeling of the phenomena inside the main circuit typically found in small engine carburetors. This theoretical study was done in two steps: first, a general one-dimensional model of the fuel flow as a flow network was derived. This model contains the characterization of the dynamic flow in single-phase elements and the appropriate two-phase flow model for the small diameter pipes. The model was implemented into a one-dimensional engine simulation software, and used to perform sensitivity analyses of carburetor performance as function of carburetor parts.; The second part of the study contains the CFD analysis of the most important parts found in the sensitivity analysis: the main fuel orifice and the carburetor venturi. The CFD studies allowed to gain a better understanding of the flow characteristics in these elements, and their results were used to develop engineering correlations that may be implemented in the one-dimensional model. It was found that the flow in the small metering orifices behaves like a small pipe, which may be characterized with an inlet pressure loss coefficient and a Darcy friction factor. The analysis of the carburetor venturi showed that the flow may be considered isentropic from the inlet of the venturi to the venturi throat. Besides the throttle plate, the fuel tube is the most important part controlling the flow field and the pressure losses downstream of the venturi throat.
机译:由于价格的限制,小型发动机依靠廉价且机械简单的装置来形成空气燃料混合物:化油器。典型的化油器由一组复杂的内部通道组成,这些内部通道设计为根据速度和负载向发动机输送正确的空气-燃料混合物。这个目标是通过几个物理过程实现的:流经较短长度和复杂几何形状的通道;从层流到湍流的流动;高频脉动流各种形式的两相流,即气泡,喷雾和薄液膜;并且由于温度和压力的快速变化,燃料和空气特性也随之变化。这项研究针对的是通常在小型发动机化油器中发现的主回路内部现象的理论模型。这项理论研究分两个步骤进行:首先,推导了作为流动网络的燃料流动的一般一维模型。该模型包含单相单元中动态流动的特征以及适用于小直径管道的适当的两相流动模型。该模型被实施到一维发动机仿真软件中,并用于执行化油器性能作为化油器零件功能的敏感性分析。研究的第二部分包含CFD分析,该CFD分析是在敏感性分析中发现的最重要部分:主燃料孔和化油器文丘里管。 CFD研究使人们可以更好地了解这些元件中的流动特性,并将其结果用于开发可在一维模型中实现的工程关联。发现小计量孔中的流动表现得像小管道,其特征可能在于入口压力损失系数和达西摩擦系数。化油器文丘里管的分析表明,从文丘里管入口到文丘里管喉部的流动可以认为是等熵的。除了节流板,燃油管是控制文丘里喉管下游流场和压力损失的最重要部分。

著录项

  • 作者

    Arias, Diego Alejandro.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 233 p.
  • 总页数 233
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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