首页> 外文期刊>Polish Maritime Research >INVESTIGATIONS OF THE WORKING PROCESS IN A DUAL-FUEL LOW-EMISSION COMBUSTION CHAMBER FOR AN FPSO GAS TURBINE ENGINE
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INVESTIGATIONS OF THE WORKING PROCESS IN A DUAL-FUEL LOW-EMISSION COMBUSTION CHAMBER FOR AN FPSO GAS TURBINE ENGINE

机译:用于FPSO燃气轮机的双燃料低排放燃烧室中的工作过程的研究

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This investigation is devoted to an analysis of the working process in a dual-fuel low-emission combustion chamber for a floating vessel's gas turbine. The low-emission gas turbine combustion chamber with partial pre-mixing of fuel and air inside the outer and inner radial-axial swirlers was chosen as the object of research. When modelling processes in a dual-flow low-emission gas turbine combustion chamber, a generalized method is used, based on the numerical solution of the system of conservation and transport equations for a multi-component chemically reactive turbulent system, taking into consideration nitrogen oxides formation. The Eddy-Dissipation-Concept model, which incorporates Arrhenius chemical kinetics in a turbulent flame, and the Discrete Phase Model describing the interfacial interaction are used in the investigation. The obtained results confirmed the possibility of organizing efficient combustion of distillate liquid fuel in a low-emission gas turbine combustion chamber operating on the principle of partial preliminary formation of a fuel-air mixture. Comparison of four methods of liquid fuel supply to the channels of radial-axial swirlers (centrifugal, axial, combined, and radial) revealed the advantages of the radial supply method, which are manifested in a decrease in the overall temperature field non-uniformity at the outlet and a decrease in nitrogen oxides emissions. The calculated concentrations of nitrogen oxides and carbon monoxide at the flame tube outlet for the radial method of fuel supply are 32 and 9.1 ppm, respectively. The results can be useful for further modification and improvement of the characteristics of dual-fuel gas turbine combustion chambers operating with both gaseous and liquid fuels.
机译:该研究专门用于分析双燃料低排放燃烧室中的工作过程,用于浮动容器的燃气轮机。选择具有部分预混合燃料和外部径向轴向旋流器内的空气的低排放式燃气轮机燃烧室作为研究对象。在双流量低发射燃气涡轮机燃烧室中的建模过程中,基于用于多组分化学反应湍流系统的保守和输送方程系统的数值解决方案,参考氮氧化物形成。在调查中使用了涡流散发概念模型,该模型在湍流火焰中包含Arhenius化学动力学,以及描述界面相互作用的离散相模型。所得结果证实了在对燃料 - 空气混合物的部分初步形成原理的低排放燃气涡轮燃烧室中组织馏出物液体燃料的有效燃烧的可能性。对径向轴向旋流器(离心,轴向,组合和径向)的四种液体燃料供应方法的比较揭示了径向供应方法的优点,其在整体温度场的下降下降氮氧化物排放的出口和降低。燃料供应径向方法的火焰管出口处的氮氧化物和一氧化碳的计算浓度分别为32和9.1ppm。结果可用于进一步改进和改进与气态和液体燃料操作的双燃料燃气轮机燃烧室特性。

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