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Surface Temperatures Determination with Influencing Convective and Radiative Thermal Resistance Parameters of Combustor of Gas Turbine
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作者 Ebene Ufot Ibiba Emmanuel Douglas Howel Iberefata Hart 《Engineering(科研)》 2014年第9期550-558,共9页
Surface temperatures were determined with due consideration of the influencing thermal conditions of conductive, convective and radiative heat. A general condition of heat influx to a point was formulated with the end... Surface temperatures were determined with due consideration of the influencing thermal conditions of conductive, convective and radiative heat. A general condition of heat influx to a point was formulated with the end effect of such influx to the receiving point. It was noted that the heat flow will cause a rate of change of internal energy of the point. Based on the theory of the rate of change of internal energy, a combustor model of cylindrical cross-section was used to generate out the timely temperature equation. Further work was done on this model equation to convert it to non-dimensional. The conversion of this equation was very essential in summing up the parameters that can influence the timely generation of the temperatures. Interestingly, it is noted that when a material withstands temperatures, it will equally withstand the thermal stresses that inherently will be developed in it. From the results, the work came up with a table showing the range of these slope figures of equations, a point was also found for a vital recommendation for further studies, where such figures can be used to check the suitability for thermal stress levels and the lifetime of combustor of such thickness. 展开更多
关键词 Surface TEMPERATURES convective and radiative thermal resistance parameters Gas TURBINE
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辐射对流耦合换热过程性能优化准则分析 被引量:2
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作者 吴晶 《工程热物理学报》 EI CAS CSCD 北大核心 2013年第10期1922-1925,共4页
(火积)耗散极值原理和基于(火积)理论的热阻最小原理在传热过程优化中有着广泛应用,但在多种传热方式耦合传热过程中的应用尚未见报道。本文针对一典型的辐射对流耦合传热问题,定义了耦合传热过程的总(火积)耗散率和总热阻,并用数值方... (火积)耗散极值原理和基于(火积)理论的热阻最小原理在传热过程优化中有着广泛应用,但在多种传热方式耦合传热过程中的应用尚未见报道。本文针对一典型的辐射对流耦合传热问题,定义了耦合传热过程的总(火积)耗散率和总热阻,并用数值方法验证了在给定总发射率、辐射热端温度、冷却流体温度和对流换热系数的前提下,当(火积)耗散率取极大值和热阻取极小值时,对应着用最小的辐射换热温差获得最大的换热热流,从而说明了(火积)耗散极值原理和热阻最小原理在该耦合传热过程分析与优化中的适用性,而此时熵产最小原理并不适用。 展开更多
关键词 辐射对流耦合换热 优化准则 (火积)耗散 热阻 熵产
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