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首页> 外文期刊>Journal of engineering for gas turbines and power: Transactions of the ASME >The development of a computer code for the estimation of combustor exhaust temperature using simple gas analysis measurements
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The development of a computer code for the estimation of combustor exhaust temperature using simple gas analysis measurements

机译:开发使用简单的气体分析测量来估计燃烧室排气温度的计算机代码

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摘要

Advances in gas turbine technology have led to levels of turbine inlet temperature that preclude the use of thermocouple and simple gas analysis techniques for gas temperature determination. Simple gas analysis schemes rely on the measurement of a very limited range of species in the gas sample: typically, CO{sub}2, CO, and hydrocarbons (UHC). A method of estimating the other important species is required. Simple gas analysis schemes that rely only on elemental mass balance equations to determinethe concentration of species are inadequate where high temperature results in significant dissociation. A method has been developed to enable temperature determination at levels that render simple schemes inaccurate. The procedure is based on themeasurement of CO{sub}2, CO, UHC, and oxides of nitrogen in the exhaust gas. Other species concentrations are calculated using an assumption of partial thermodynamic equilibrium. This allows the calculation of many important combustion parameters. Themethod has been implemented as a computer code, with an object orientated design approach using the C+ + language. The paper details the theory behind the approach and its implementation. The expected errors for practical applications are discussed andquantified. The method is illustrated by an exhaust temperature pattern factor investigation of an annular combustor. Temperatures determined by thermocouples are compared with those calculated from gas samples.
机译:燃气轮机技术的进步导致了涡轮机入口温度水平,排除了使用热电偶和简单的气体分析技术来测定气体温度。简单的气体分析方案依赖于对气体样品中非常有限的物质范围的测量:通常是 CO{sub}2、CO 和碳氢化合物 (UHC)。需要一种估计其他重要物种的方法。在高温导致显着解离的情况下,仅依靠元素质量平衡方程来确定物质浓度的简单气体分析方案是不够的。已经开发出一种方法,可以在使简单方案不准确的水平上进行温度测定。该程序基于对废气中 CO{sub}2、CO、UHC 和氮氧化物的测量。其他物质浓度是使用部分热力学平衡的假设计算的。这允许计算许多重要的燃烧参数。该方法已作为计算机代码实现,使用C++语言采用面向对象的设计方法。本文详细介绍了该方法背后的理论及其实施。讨论并量化了实际应用的预期误差。该方法通过环形燃烧器的排气温度模式因子研究来说明。将热电偶测定的温度与气体样品测定的温度进行比较。

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