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Large eddy simulation of plume dispersion behind an aircraft in the take-off phase

机译:起飞阶段飞机后方羽流扩散的大涡模拟

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The aim of this paper is to provide an investigation, using large eddy simulation, into plume dispersion behind an aircraft in co-flowing take-off conditions. Validation studies of the computational model were presented by Aloysius and Wrobel (Environ Model Softw 24:929–937, 2009) and a study of the flow and dispersion properties of a double-engine aircraft jet was presented by Aloysius et al. (EEC/SEE/2007/001, EUROCONTROL Experimental Centre, http://www.eurocontrol.int/eec/gallery/content/public/document/eec/report/2007/032_ALAQS_comparison_of_CFD_and_Lagrangian_dispersion_methods.pdf), in which only the engine was modelled. In this paper, the complete geometry of a Boeing 737 is modelled and investigated. The current work represents a contribution towards a better understanding of the source dynamics behind an airplane jet engine during the take-off and landing phases. The information provided from these simulations will be useful for future improvements of existing dispersion models.
机译:本文的目的是使用大型涡流仿真技术,对同流起飞条件下飞机后面的羽流扩散进行调查。 Aloysius和Wrobel提出了对计算模型的验证研究(环境模型Softw 24:929-937,2009),Aloysius等人提出了对双引擎飞机射流的流动和扩散特性的研究。 (EEC / SEE / 2007/001,EUROCONTROL实验中心,http://www.eurocontrol.int/eec/gallery/content/public/document/eec/report/2007/032_ALAQS_comparison_of_CFD_and_Lagrangian_dispersion_methods.pdf),其中只有发动机建模。在本文中,对波音737的完整几何结构进行了建模和研究。当前的工作代表了对更好地了解飞机喷气发动机起降阶段的动力源的贡献。这些模拟提供的信息对于将来改进现有色散模型很有用。

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