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Thermodynamic designing of the small-scale gas turbine engine family with common core

机译:普通核心小规模燃气轮机系列的热力学设计

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The paper describes the method of selecting the working process parameters of a family of small-scale gas turbine engines (GTE) with common core. As an example, the thermodynamic design of a family of small-scale gas turbine engines (SGTE) with common core was carried out. The engine family includes a small-scale turbojet engine (STJE) and a gas turbine plant (GTP), which electric generator is driven by power turbine. The selection of rational values for the working process parameters of STJE and GTP was carried out in CAE system ASTRA on the basis of nonlinear optimization of these parameters, taking into account functional and parametric constraints. The quantitative results of deterioration in the performance of the engines of the family with common core are obtained in comparison with the engines with the optimum core for each type. However, the advanced creation of a common core can reduce the cost and timing of the engine creation, ensure its higher reliability (due to the development of the base common core) and reduce the cost of its production. The method of selecting the parameters of the working process of the GTE family with common core presents the solution to more complex problems, such as the possibility of developing a family consisting of five engines: a turbojet engine, turbofan engine, turbofan engine with a complex cycle, GTE with power turbine (GTE-PT), GTE-PT with recovery.
机译:本文介绍了用共同的核心选择小型燃气涡轮发动机(GTE)家族的工作过程参数的方法。作为示例,进行了具有共同核心的小型燃气涡轮发动机(SGTE)的热力学设计。发动机系列包括小型涡轮喷气发动发动机(STJE)和燃气轮机设备(GTP),发电机由动力涡轮机驱动。考虑到功能和参数约束,在CAE系统ASTRA中选择了STJE和GTP的工作过程参数的理性值的选择,考虑了功能和参数约束。与每种类型的最佳芯的发动机相比,获得了与共同核心的族的性能劣化的定量结果。然而,常见核心的先进创建可以降低发动机创建的成本和时间,确保其更高的可靠性(由于基础常见核心的开发,降低其生产成本。选择GTE系列与普通核心的工作过程参数的方法将解决方案呈现出更复杂的问题,例如开发由五个发动机组成的家庭的可能性:涡轮喷气发电器发动机,涡轮机发动机,具有复杂的涡轮机发动机。具有复杂的涡轮机发动机循环,带电力涡轮机(GTE-PT)的GTE,GTE-PT,恢复。

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