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首页> 外文期刊>AIAA Journal >Controlling Volumetric Heat Release Rates in a Dump Combustor Using Countercurrent Shear
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Controlling Volumetric Heat Release Rates in a Dump Combustor Using Countercurrent Shear

机译:使用逆流剪切控制翻斗燃烧室的体积放热速率

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摘要

Research carried out in a backward-facing step combustor burning prevaporized JP10-air mixtures has examined the implementation of counterflow as a means to enhance turbulent combustion and increase volumetric heat release rates. The combustor is characterized by a nominally two-dimensional primary flow of lean reactants entering a rectangular channel before encountering a 2:1 single-sided step expansion. A secondary flow is created via suction at the dump plane as a fluidic control mechanism to enhance the naturally occurring countercurrent shear layer caused by separation. Counterflow is shown to elevate turbulence levels and volumetric heat release rates downstream of the step while concomitantly reducing the scale of the recirculation zone. Modifications to the rearward-facing step geometry are investigated using particle image velocimetry under isothermal flow conditions in an effort to extend the near-field interaction between the recirculation zone and the incoming primary flow, further exploiting the benefits of counterflow. Relative heat release rates quantified using chemiluminescence are shown to increase by 70% with a counterflow level of 6% of the primary mass flow rate in the step geometry, and by 150% when 3.5% counterflow is introduced into a modified step geometry.
机译:在向后步骤燃烧室中燃烧预蒸发的JP10-空气混合物的研究已经研究了逆流的实现,以增强湍流燃烧和增加体积放热率。燃烧室的特征在于,在遇到2:1单面阶跃式膨胀之前,稀薄反应物的名义二维主流进入矩形通道。作为流体控制机构,通过在倾卸平面处的抽吸产生次级流,以增强由分离引起的自然产生的逆流剪切层。逆流显示出可提高该步骤下游的紊流水平和体积放热速率,同时降低了回流区的规模。在等温流动条件下,使用颗粒图像测速技术研究了向后台阶几何形状的变化,以扩展回流区域和进入的主流之间的近场相互作用,从而进一步利用了逆流的优势。在台阶几何形状中,使用化学发光法定量的相对放热率显示出,其逆流水平为主要质量流量的6%,反流水平提高了70%;当将3.5%逆流引入修改后的台阶几何形状中时,相对放热率提高了150%。

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