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One Dimensional Modeling and Experimental Validation of Single Cylinder Pneumatic Combustion Hybrid Engine

机译:单缸气动混合动力发动机的一维建模与实验验证

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摘要

The objective of this paper is to present and to validate a numerical model of a single-cylinder pneumatic-combustion hybrid engine. The model presented in this paper contains 0-D sub-models for non-spatially distributed components: Engine cylinder, Air tank, wall heat losses. 1-D sub-models for spatially distributed components are applied on the compressive gas flows in pipes (intake, exhaust and charging). Each pipe is discretized, using the Two-Steps Lax-Wendroff scheme (LW2) including Davis T.V.D. The boundaries conditions used at pipe ends are Method Of Characteristics (MOC) based. In the specific case of a valve, an original intermediate volume MOC based boundary condition is used. The numerical results provided by the engine model are compared with the experimental data obtained from a single cylinder prototype hybrid engine on a test bench operating in 4-stroke pneumatic pump and 4 stroke pneumatic motor modes. In each mode, the prediction of the mass flow rates, amplitude and timing of the charging pipe waves are satisfactory, without using any discharge coefficient. Indicated work and p-V diagrams are similar between simulation and measurements in the case of pneumatic pump mode. For the pneumatic motor mode the model underestimates cylinder pressure during the charging process.
机译:本文的目的是提出并验证单缸气动混合动力发动机的数值模型。本文介绍的模型包含用于非空间分布组件的0-D子模型:发动机气缸,空气箱,壁热损失。将空间分布组件的一维子模型应用于管道中的压缩气体流(进气,排气和充气)。使用戴维斯T.V.D.的两步Lax-Wendroff方案(LW2)离散化每个管道。管端使用的边界条件基于特征方法(MOC)。在阀门的特定情况下,使用基于原始中间体积MOC的边界条件。将发动机模型提供的数值结果与从单缸原型混合动力发动机在以4冲程气动泵和4冲程气动马达模式运行的试验台上获得的实验数据进行比较。在每种模式下,在不使用任何排放系数的情况下,对装料管波的质量流量,振幅和时间的预测是令人满意的。在气动泵模式下,模拟和测量之间的指示工作图和p-V图相似。对于气动马达模式,模型会低估充气过程中的气缸压力。

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