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首页> 外文期刊>Journal of the royal statistical society >Modelling fuel injector spray characteristics in jet engines by using vine copulas
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Modelling fuel injector spray characteristics in jet engines by using vine copulas

机译:用藤币建模喷射发动机喷射特性

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The emission requirements for jet engines are becoming more stringent and the combustion process determines pollutant emissions. Therefore, we model the distribution of fuel drops generated by a fuel injector in a jet engine, which can be assumed to be a five-dimensional problem in terms of drop size, x-position, y-position, x-velocity and y-velocity. The data are generated by numerical simulations of the fuel atomization process for several jet engine operating conditions. In combustion simulations, the variables are usually assumed to be independent at the start of the simulation, which is clearly not so as our data show. The dependence between some of the variables is non-monotone and asymmetric, which makes the modelling task difficult. Our aim is to provide a realistic parametric model for the dependence structure. For this, we employ vine copulas which provide a flexible way to construct a multivariate distribution function. However, we need to use non-standard bivariate copulas as building blocks. Using this copula representation enables us to create realistic samples of fuel spray droplets which improve the prediction of the combustion process and the pollutant emissions. Moreover, this approach is significantly faster than solving the set of differential equations describing fuel disintegration.
机译:喷气发动机的排放要求变得更加严格,燃烧过程决定了污染物排放。因此,我们模拟喷射发动机中的燃料喷射器产生的燃料滴的分布,这可以假设在跌落尺寸,x位置,y位置,x速度和y-中是一个五维问题。速度。数据由用于几种喷射发动机操作条件的燃料雾化过程的数值模拟产生。在燃烧模拟中,通常假设变量在仿真开始时被独立,这显然不是我们的数据展示。一些变量之间的依赖性是非单调和不对称的,这使得建模任务困难。我们的目标是为依赖结构提供一个现实的参数模型。为此,我们采用藤蔓分类,提供灵活的方式来构建多变量分布函数。但是,我们需要使用非标准的双变量Copulas作为构建块。使用该Copula表示使我们能够创建燃料喷雾液滴的现实样本,其改善燃烧过程的预测和污染物排放。此外,这种方法比求解描述燃料崩解的一组微分方程更快。

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