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The effect of swirl number on discharge coefficient for various orifice sizes in a burner system

机译:燃烧器系统中不同节流孔的旋流数对排放系数的影响

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摘要

A liquid fuel burner system with different orifice plate sizes mounted at the exit plane of the air swirler outlet has been investigated using a 140 mm inside diameter combustor of 400 mm length. Three different orifice plate diameters of 45 mm, 40 mm and 35 mm were used with a 10o to 70o radial air swirler vane angles. The purpose of orifice plate insertion is to create the swirler pressure loss at the swirler outlet so that the swirler outlet shear layer turbulence could be maximized to assist in the mixing of fuel and air. Measurements of air flow rates, air inlet temperature, air inlet pressure and pressure drop across the combustor have been carried out to predict the isothermal characteristics inside the combustor, ie. discharge coefficient. The result shows that the discharge coefficient decreases as the swirl number increases for all three different orifice plate sizes.
机译:已经研究了使用长度为400 mm的140 mm内径燃烧器对安装在旋流器出口的出口平面上的具有不同孔板尺寸的液体燃料燃烧器系统的研究。使用三种不同的孔板直径,分别为45 mm,40 mm和35 mm,径向旋流器叶片角度为10o至70o。孔板插入的目的是在旋流器出口处产生旋流器压力损失,以便使旋流器出口剪切层湍流最大化,从而有助于燃料和空气的混合。已经对穿过燃烧室的空气流速,进气温度,进气压力和压降进行了测量,以预测燃烧室内部的等温特性。放电系数。结果表明,对于所有三种不同的孔板尺寸,排放系数都随着旋流数的增加而减小。

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