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Detailed Modeling and Simulation of Thermodynamically Non-Ideal, Laminar and Turbulent Spray Combustion of Multicomponent Liquids

Detailed Modeling and Simulation of Thermodynamically Non-Ideal, Laminar and Turbulent Spray Combustion of Multicomponent Liquids
多组分液体的热力学非理想、层流和湍流喷雾燃烧的详细建模和模拟
批准号:
232079653
负责人:
Professor Dr.-Ing. Bernd Rogg
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2013
资助国家:
德国
项目状态:
已结题
起止时间:
2012-12-31 至 2015-12-31

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中文摘要
翻译
本研究项目的基本目标是:(I)从连续流、多组分液体燃料、真实(非理想)热力学条件(包括详细的气相化学)的最基本物理原理出发,建立一套通用的喷雾燃烧随机控制方程,包括详细的气相化学;以及(Ii)将理论公式转化为最有效的三维蒙特卡罗计算机代码。无论反应喷雾两相流是层流还是湍流:最一般的可能的、连续的力学控制方程是基于随机公式的,这些方程仍然可以通过数值和计算实现。这一提法是拟议研究的重点,因为它有能力为以后更深入的研究活动提供基础。由于在喷雾燃烧的流体力学应用中,真实的(非理想的)液体和气体混合物的热力学以及真实的分子传输过程在科学上还没有得到很大的探索,因此计划将注意力集中在配方的这些方面。如上所述的喷雾燃烧的理论公式及其具体的数值实现注定是研究污染物形成(如NOx、SOx、碳烟等)的基础,因此需要能够处理详细的基本反应机理。对反应喷雾两相系统中污染物形成的详细调查不是拟议研究的一部分,但该项目中将要开发的理论和计算方法应该为以后在污染物化学领域的深入研究奠定基础。对于需要用最少的时间和计算机资源来解决问题的工业目的,商业计算机代码也可以用于喷雾和喷雾火焰的计算。由于商业代码的特殊目标群体,这些代码使用相对简单的物理化学模型--除了相对简单的基准应用程序--不能合理地用于认真支持高质量的、理论上的、面向流体机械的燃烧研究。因此,在拟议的研究项目中,为了开发喷雾燃烧数学模型的数值实现,将启动一种强大的三维蒙特卡罗方法的开发。
英文摘要
The essential goals of the present research project are:(i) development of a general set of stochastic governing equations for spray combustion, building from the most basic physical physical principles for continuum flow, for multicomponent liquid fuels, for real (non-ideal) thermodynamic conditions, including detailed gasphase chemistry,and(ii) casting the theoretical formulation into a most efficient, 3-dimensional Monte-Carlo Computer code.No matter if the reactive spray-twophase flow is laminar are turbulent: the most general prossible, contintinuum mechanical governing equations that still can be numerically and computationally realized, are based on a stochastic formulation. Such a formulation is the focus of the proposed research, because it has the capability of providing a base for later, deeper going research activities. Since in the context of fluidmechanical applications of spray combustion the thermodynamics of real (non-ideal) mixture of liquids and gases is vastly scientifically unexplored, as are real molecular transport processes, it is planned to focus attention on these aspects of the formulation.A theoretical formulation of spray combustion as described above, and its respecive numerical realization, is predestined as a base for the investigation of pollutant formation (such as NOx, SOx, soot, etc), and hence needs to be capable to cope with detailed mechanisms of elementary reactions. The detailed investigation of pollutant formation in reactive spray two phase systems is not part of the proposed research, but still the theoretical and computational approach to be developed in this project should lay the foundation for later, profound research in the area of pollutant chemistry.For industrial purposes, where problems need to be solved with a minimum of time and computer resources, commercial computer codes are available that can also be used for the computation of sprays and spray flames. Due to the special target group of the commercial codes, these codes employ relatively simple physico-chemical models that -- with the exception of relatively simply benchmark applications -- cannot reasonably be used to seriously support high-quality, theoretical, fluidmechanically orientated, combustion research. Therefore, in the proposed research project, for the numerical realization of the mathematical model of spray combustion to be developed, development of a powerful, 3-dimesional Monte-Carlo method will be initialized.
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国内基金
海外基金
Galaxy Analytical Modeling Evolution (GAME) and cosmological hydrodynamic simulations.
  • 批准号:
  • 项目类别:
    省市级项目
  • 资助金额:
    10.0万元
  • 批准年份:
    2025
  • 负责人:
    Antonios Katsianis
  • 依托单位: