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Mathematical Model Based on Newton’s Laws and in First Thermodynamic Law of a Gas Turbine

机译:基于牛顿定律和燃气轮机第一热力学定律的数学模型

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The present article explains the modeling of a Gas Turbine system; the mathematical modeling is based on fluid mechanics applying the principal energy laws such as Euler’s Law, Newton’s second Law and the first thermodynamic law to obtain the equations for mass, momentum and energy conservation; expressed as the continuity equation, the Navier-Stokes equation and the energy conservation using Fourier’s Law. The purpose of this article is to establish a precise mathematical model to be applied in control applications, for future works, within industry applications.
机译:本文介绍了燃气轮机系统的建模;数学建模是基于流体力学,应用欧拉定律,牛顿第二定律和第一热力学定律等主要能量定律获得质量,动量和能量守恒方程;表示为连续性方程,Navier-Stokes方程和使用傅立叶定律的能量守恒。本文的目的是建立一个精确的数学模型,该模型将用于控制应用,以供将来在工业应用中使用。

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