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Analyzing the influence of combustion gas on a gas turbine by radiation thermometry

机译:用辐射测温法分析燃气对燃气轮机的影响

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High temperature is the main focus in ongoing development of gas turbines. With increasing turbine inlet temperature, turbine blades undergo complex thermal and structural loading subjecting them to large thermal gradients and, consequently, severe thermal stresses and strain. In order to improve the reliability, safety, and service life of blades, accurate measurement of turbine blade temperature is necessary. A gas turbine can generate high-temperature and high-pressure gas that interferes greatly with radiation from turbine blades. In addition, if the gas along the optical path is not completely transparent, blade temperature measurement is subject to significant measurement error in the gas absorption spectrum. In this study, we analyze gas turbine combustion gases using the kappa-distribution method combined with the HITEMP and HITRAN databases to calculate the transmission and emissivity of mixed gases. We propose spectral window methods to analyze the radiation characteristics of high-temperature gas under different spectral ranges, which can be used to select the wavelengths used in multispectral temperature measurement on turbine blades and estimate measurement error in the part of the spectrum with smaller influence (transmission >0.98). (C) 2015 Elsevier B.V. All rights reserved.
机译:高温是燃气涡轮机不断发展的主要重点。随着涡轮机入口温度的升高,涡轮机叶片承受复杂的热和结构载荷,使其承受较大的热梯度,从而承受严重的热应力和应变。为了提高叶片的可靠性,安全性和使用寿命,需要精确测量涡轮叶片温度。燃气轮机会产生高温高压气体,这些气体会极大地干扰来自涡轮叶片的辐射。另外,如果沿光路的气体不是完全透明的,则叶片温度的测量在气体吸收光谱中会受到很大的测量误差。在这项研究中,我们使用kappa分布方法结合HITEMP和HITRAN数据库来分析燃气轮机燃烧气体,以计算混合气体的透射率和发射率。我们提出了光谱窗方法来分析高温气体在不同光谱范围内的辐射特性,可用于选择涡轮叶片多光谱温度测量中使用的波长,并估计影响较小的部分光谱中的测量误差(透射率> 0.98)。 (C)2015 Elsevier B.V.保留所有权利。

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