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Research on the application of aviation kerosene in a direct injection rotary engine-Part 1: Fundamental spray characteristics and optimized injection strategies

机译:航空煤油在直喷式旋转发动机应用中的应用研究 - 第1部分:基础喷射特性和优化注射策略

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摘要

In view of the gradual promotion of Single Fuel Concept in the military field and also the rotary engine (RE) which has been widely applied in specialized equipment, it is necessary to study the basic spray characteristics of aviation kerosene under RE operation conditions and optimize the fuel injection strategies. In this research, an optically visible constant volume combustion chamber platform for Mie-scattering and a validated three-dimensional dynamic simulation model of aviation kerosene fueled direct injection rotary engine (DI-RE) were established. The experimental results show that the ambient temperature and pressure affect the spray process differently. There is no linear relationship between ambient temperature and penetration length. The ambient temperature of 600 K is a watershed, when it is below 600 K, the penetration length increases as the temperature rises. When the temperature reaches 600 K, the penetration length decreases rapidly which means a prominent improvement of atomization quality. On the basis of experimental results, the simulation was carried out and the results show that different injection strategies have important effect on distribution of fuel in cylinder, the larger injection angle will promote the atomization of fuel due to the collision between the spray and air flow field. In Case A3, B2 and C2, the fuel mainly distributes near the spark plugs in the center of the combustion chamber, which is supposed to be more conducive to the ignition and diffusion combustion process of the fuel.
机译:鉴于在军事领域的单一燃料概念的逐步推广以及已经在专用设备中广泛应用的旋转发动机(RE),有必要研究RE运行条件下的航空煤油的基本喷雾特性,优化燃油喷射策略。在该研究中,建立了用于MIE散射的光学可见的恒定体积燃烧室平台和航空煤油直接喷射旋转发动机(DI-RE)的验证的三维动态仿真模型。实验结果表明,环境温度和压力不同地影响喷涂过程。环境温度与穿透长度之间没有线性关系。 600 k的环境温度是流域,当它低于600 k时,随着温度升高,穿透长度增加。当温度达到600 k时,渗透长度迅速降低,这意味着雾化质量的显着提高。在实验结果的基础上,进行了模拟,结果表明,不同的注射策略对圆柱体燃料分布具有重要影响,较大的喷射角将促进燃料的雾化由于喷雾和空气流动之间的碰撞引起的燃料雾化场地。在壳体A3,B2和C2的情况下,燃料主要分布在燃烧室中心的火花塞附近,这应该更有利于燃料的点火和扩散燃烧过程。

著录项

  • 来源
    《Energy Conversion & Management》 |2019年第9期|519-532|共14页
  • 作者单位

    Jiangsu Univ Sch Energy & Power Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Energy & Power Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Energy & Power Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Energy & Power Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Energy & Power Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Energy & Power Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

  • 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

    Aviation kerosene; Rotary engine; Spray characteristic; Injection strategy; Experiment and simulation;

    机译:航空煤油;旋转发动机;喷雾特性;注射策略;实验和模拟;

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