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A Numerical Investigation of the Vaporization Process of Lubricating Oil Droplets under Gas Engine Conditions

机译:燃气发动机条件下润滑油液滴汽化过程的数值研究

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The abnormal combustion resulted by the auto-ignition of lubricating oil is a great challenge to the development of Otto-cycle gas engines. In order to investigate the mechanism of lubricating oil droplet vaporization process, a crucial sub-process of auto-ignition process, a new multi-component vaporization model was constructed for high temperature and pressure, and forced gas flow conditions as encountered in practical gas engines. The vaporization model has been conducted with a multi-diffusion sub-model considering the multi-component diffusivity coefficients in the gas phase. The radiation heat flux caused by ambient gas was taken into account in high temperature conditions, and a real gas equation of state was used for high pressure conditions. A correction for mass vaporization rate was used for forced gas flow conditions. Extensive verifications have been realized, and considerable results have been achieved. Finally, the vaporization model is used to investigate the vaporization characteristics of lubricating oil droplets under various conditions. The research results show that using new lubricating oil droplets with improved chemical characteristics, or limiting the droplet physical characteristics, or controlling the ambient conditions should reduce the vaporization rate of the lubricating oil droplet in the gas engine.
机译:通过润滑油的自动点火产生的异常燃烧是对奥托 - 循环燃气发动机的发展的巨大挑战。为了研究润滑油液滴蒸发过程的机理,一种自动点火过程的关键子过程,构建了一种新的多分量汽化模型,用于高温和压力,并且在实际燃气发动机中遇到的强制气流条件。考虑到气相中的多分量扩散系数,通过多扩散子模型进行了汽化模型。在高温条件下考虑由环境气体引起的辐射热通量,并且使用状态的实际气体方程用于高压条件。用于质量汽化速率的校正用于强制气流条件。已经实现了广泛的验证,实现了相当大的结果。最后,汽化模型用于研究各种条件下润滑油液滴的蒸发特性。研究结果表明,使用具有改进的化学特性的新润滑油液滴,或限制液滴物理特性,或控制环境条件应降低燃气发动机中润滑油液滴的蒸发速率。

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