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Analysis of Crank Angle Resolved In-Cylinder Combustion Modeling for Real Time Diesel Engine Simulations

机译:实时柴油发动机模拟曲柄角分辨汽缸燃烧建模分析

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摘要

Mainly due to environmental regulation, future Engine Control Unit (ECU) will be equipped with in-cylinder pressure sensors. The introduction of this innovative solution has increased the number of involved variables, requiring an unceasing improvement in the modeling approaches and in the computational capabilities of Engine Control Unit (ECU). Hardware in the Loop (HIL) test system therefore has to provide in-cylinder pressure in real time from an adequate model. This paper describes a synthesis of our study targeted to the development of in-cylinder crank angle combustion model excluding look up tables, dedicated to HIL test bench. The main objective of the present paper is a comprehensive analysis of a reduced combustion model, applied to a direct injection Diesel engine at varying engine operating range, including single injection and multi injection strategies. The developed model has required an important identification step to calibrate the parameters of the combustion model based on single and double Wiebe function. The difficulty to derive one calibrated model for all engine operations is discussed. This study allows to develop two calibrated combustion models one applied to high engine speeds and the other to low and medium engine speeds. The global model is able to run within one crank angle degree required by real time simulations. The precision of the model is analyzed by comparing in-cylinder pressure traces and ignition delay times at varying engine operating conditions.
机译:主要是由于环境监管,未来的发动机控制单元(ECU)将配备缸内压力传感器。这种创新解决方案的引入增加了涉及变量的数量,需要在发动机控制单元(ECU)的建模方法和计算能力中的不断改进。因此,环路(HIL)测试系统的硬件必须从足够的模型实时提供缸内压力。本文介绍了我们研究的合成,该研究旨在开发缸内曲柄角燃烧模型,不包括朝上的表格,专用于HIL测试台。本文主要目的是对燃烧模型的综合分析,适用于不同发动机运行范围的直喷柴油发动机,包括单注射和​​多注射策略。开发的模型需要一个重要的识别步骤来校准基于单双Wiebe功能的燃烧模型的参数。讨论了难以推导出所有发动机操作的校准模型。该研究允许开发用于高发动机速度的两个校准的燃烧模型,另一个校准燃烧模型,另一个校准的燃烧模型,另一个校准的燃烧模型,另一个到较低和中等发动机速度。全局模型能够在实时仿真所需的一个曲柄角度内运行。通过比较变化发动机操作条件的缸内压力迹线和点火延迟时间来分析模型的精度。

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