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Heat Transfer Computations of Internal Duct Flows With Combined Hydraulic and Thermal Developing Length

机译:结合了水力和热力发展长度的内部管道流的传热计算

摘要

This study investigated the Navier-Stokes computations of the surface heat transfer coefficients of a transition duct flow. A transition duct from an axisymmetric cross section to a non-axisymmetric cross section, is usually used to connect the turbine exit to the nozzle. As the gas turbine inlet temperature increases, the transition duct is subjected to the high temperature at the gas turbine exit. The transition duct flow has combined development of hydraulic and thermal entry length. The design of the transition duct required accurate surface heat transfer coefficients. The Navier-Stokes computational method could be used to predict the surface heat transfer coefficients of a transition duct flow. The Proteus three-dimensional Navier-Stokes numerical computational code was used in this study. The code was first studied for the computations of the turbulent developing flow properties within a circular duct and a square duct. The code was then used to compute the turbulent flow properties of a transition duct flow. The computational results of the surface pressure, the skin friction factor, and the surface heat transfer coefficient were described and compared with their values obtained from theoretical analyses or experiments. The comparison showed that the Navier-Stokes computation could predict approximately the surface heat transfer coefficients of a transition duct flow.
机译:这项研究调查了过渡管道流动的表面传热系数的Navier-Stokes计算。从轴对称横截面到非轴对称横截面的过渡管道通常用于将涡轮机出口连接到喷嘴。随着燃气轮机入口温度的升高,过渡管道在燃气轮机出口处承受高温。过渡管道的流动综合了水力和热力入口长度的发展。过渡管道的设计需要精确的表面传热系数。 Navier-Stokes计算方法可用于预测过渡管道流的表面传热系数。本研究使用了Proteus三维Navier-Stokes数值计算代码。该代码首先被研究用于圆形管道和方形管道内湍流发展流动特性的计算。该代码然后用于计算过渡管道流的湍流特性。描述了表面压力,皮肤摩擦系数和表面传热系数的计算结果,并将其与从理论分析或实验获得的值进行了比较。比较表明,Navier-Stokes计算可以大致预测过渡管道流动的表面传热系数。

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