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Line-by-Line Random-Number Database for Monte Carlo Simulations of Radiation in Combustion System

机译:燃烧系统辐射的蒙特卡罗模拟的逐行随机数数据库

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With today's computational capabilities, it has become possible to conduct line-by-line (LBL) accurate radiative heat transfer calculations in spectrally highly nongray combustion systems using the Monte Carlo method. In these calculations, wavenumbers carried by photon bundles must be determined in a statistically meaningful way. The wavenumbers for the emitting photons are found from a database, which tabulates wavenumber–random number relations for each species. In order to cover most conditions found in industrial practices, a database tabulating these relations for CO _( 2 ) , H _( 2 ) O, CO, CH _( 4 ) , C _( 2 ) H _( 4 ) , and soot is constructed to determine emission wavenumbers and absorption coefficients for mixtures at temperatures up to 3000 K and total pressures up to 80 bar. The accuracy of the database is tested by reconstructing absorption coefficient spectra from the tabulated database. One-dimensional test cases are used to validate the database against analytical LBL solutions. Sample calculations are also conducted for a luminous flame and a gas turbine combustion burner. The database is available from the author's website upon request.
机译:利用当今的计算能力,使用蒙特卡洛方法在光谱高度非灰色的燃烧系统中进行逐行(LBL)精确的辐射传热计算成为可能。在这些计算中,必须以统计学上有意义的方式确定光子束所携带的波数。可从数据库中找到发射光子的波数,该数据库将每个物种的波数与随机数关系制成表格。为了涵盖在工业实践中发现的大多数条件,将CO _(2),H _(2)O,CO,CH _(4),C _(2)H _(4)和构造烟灰以确定混合物在最高温度3000 K和总压力最高80 bar时的发射波数和吸收系数。通过从列表数据库重建吸收系数谱来测试数据库的准确性。一维测试用例用于针对分析型LBL解决方案验证数据库。还为发光火焰和燃气轮机燃烧器进行了样本计算。该数据库可应要求从作者的网站上获得。

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