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Development of Temperature Estimation Method of Whole Engine Considering Heat Balance under Vehicle Running Conditions

机译:考虑车辆运行条件下热平衡的整体发动机温度估计方法的研制

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For detailed temperature estimates in the engine of a running motorcycle, newly researches were conducted on the method for calculation of temperature distribution using a three-dimensional (3D) thermal conductivity simulation after calculating the total balance of heat generation and heat dissipation of the engine using a one-dimensional (1D) thermal simulation. This project is targeted at air-cooled engines in which the cooling conditions vary significantly depending on the external shapes of the engines and the airflow around them. The heat balance is calculated using the 1D thermal simulation taking into account all the routes and processes for dissipation to the atmosphere of the heat that is generated by the combustion in the engine. The 1D engine cycle simulation is applied to calculate the heat transmission to the engine from the combustion. For the calculation of heat transfer within the engine, the engine components are converted to a one-dimensional model. The empirical equation established from the measurements and the one-dimensional computational fluid dynamics (1D-CFD) are combined to calculate the heat transfer to the engine oil. The 3D-CFD is applied to calculate the heat transfer to the atmosphere. For the final estimation of engine temperature distribution, the 3D thermal conductivity simulation is applied using the fluid temperatures and heat transfer coefficients inside and outside the engine as the boundary conditions. Thus, it is confirmed that the newly-developed temperature estimation method permits accurate estimation of the engine temperature distribution in complete motorcycles under running conditions. Also proven is that the engine temperature can be accurately estimated even in another motorcycle equipped with a different engine.
机译:对于运行摩托车发动机的详细温度估计,新研究是在计算热发球总体平衡之后使用三维(3D)导热率仿真计算温度分布的方法。使用一维(1D)热模拟。该项目针对风冷的发动机瞄准,其中冷却条件根据发动机的外部形状和周围的气流而显着变化。使用1D热模拟计算热平衡,考虑到所有路线和工艺以耗散到由发动机中的燃烧产生的热量的气氛。应用1D发动机循环仿真以从燃烧中计算与发动机的热传递。为了计算发动机内的传热,发动机部件被转换为一维模型。从测量和一维计算流体动力学(1D-CFD)建立的经验方程被组合以计算发动机油的热传递​​。应用3D-CFD以计算大气的热传递。为了最终估计发动机温度分布,使用发动机内外的流体温度和传热系数作为边界条件来施加3D导热率仿真。因此,确认新开发的温度估计方法允许在运行条件下精确地估计完整的摩托车中的发动机温度分布。还证实,即使在配备有不同发动机的另一摩托车中,也可以准确地估计发动机温度。

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