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A global model for steady-state and transient S.I. engine heat transfer studies

机译:稳态和瞬态S.I的全球模型。发动机传热研究

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A global, systems-level model which characterizes the thermal behavior of internal combustion engines is described in this paper. Based on resistor-capacitor thermal networks, either steady-state or transient thermal simulations can be performed. A two-zone, quasi-dimensional spark-ignition engine simulation is used to determine in-cylinder gas temperature and convection coefficients. Engine heat fluxes and component temperatures can subsequently be predicted from specification of general engine dimensions, materials, and operating conditions. Emphasis has been placed on minimizing the number of model inputs and keeping them as simple as possible to make the model practical and useful as an early design tool. The success of the global model depends on properly scaling the general engine inputs to accurately model engine heat flow paths across families of engine designs. The development and validation of suitable, scalable submodels is described in detail in this paper. Simulation sub-models and overall system predictions are validated with data from two spark-ignition engines. Several sensitivity studies are performed to determine the most significant heat transfer paths within the engine and exhaust system. Overall, it has been shown that the model is a powerful tool in predicting steady-state heat rejection and component temperatures, as well as transient component temperatures.
机译:本文描述了表征内燃机的热行为的全局系统级模型。基于电阻 - 电容热网络,可以执行稳态或瞬态热模拟。两个区域,准尺寸火花点火发动机仿真用于确定缸内气体温度和对流系数。随后可以从一般发动机尺寸,材料和操作条件的规格预测发动机热通量和元件温度。重点是最小化模型输入的数量并保持它们尽可能简单,以使模型实用,可用作早期设计工具。全球模型的成功取决于正确缩放通用发动机输入,以准确地模拟发动机设计家庭的发动机热流路径。本文详细描述了合适的可伸缩子模型的开发和验证。仿真子模型和整体系统预测验证了来自两个火花点火发动机的数据。进行几种灵敏度研究以确定发动机和排气系统内最显着的传热路径。总的来说,已经表明该模型是预测稳态散热和元件温度的强大工具,以及瞬态部件温度。

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