首页> 外文期刊>International Journal of Automotive Technology >EXPERIMENTAL VALIDATION OF A MATHEMATICAL MODEL OF A REED-VALVE RECIPROCATING AIR COMPRESSOR FROM AN AUTOMOTIVE-BRAKING SYSTEM
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EXPERIMENTAL VALIDATION OF A MATHEMATICAL MODEL OF A REED-VALVE RECIPROCATING AIR COMPRESSOR FROM AN AUTOMOTIVE-BRAKING SYSTEM

机译:汽车制动系统簧片阀往复式空气压缩机数学模型的实验验证

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摘要

Mathematical simulation is the process of designing a model of a real system and then conducting experiments with the simulation to understand the system's behavior. Mathematical simulation is widely used for investigating and designing compressors, and with a minimal number of simplifying assumptions, mathematical models can be used in conjunction with modern computing tools to solve complicated problems. A considerable amount of previous research has focused on the mathematical modeling of reciprocating air compressors used in automotive braking. The aim of the present work was to experimentally validate the mathematical model for such compressors. We present a simplified and effective mathematical model for estimating compressor performance, and this model can easily be executed using personal computers. Parameters such as compressor speed, discharge pressure and clearance volume were evaluated in terms of their effect on the thermodynamic behavior of compressors. The model can predict cylinder pressure, cylinder volume, cylinder temperature, valve lift and resultant torque at different crank angles; it can also predict the free air delivered and the indicated power of the compressor. Therefore, the model has been validated using experimental results.
机译:数学模拟是设计实际系统模型,然后通过模拟进行实验以了解系统行为的过程。数学模拟被广泛用于压缩机的研究和设计,并且在简化假设最少的情况下,数学模型可以与现代计算工具结合使用来解决复杂的问题。先前的大量研究都集中在汽车制动中使用的往复式空气压缩机的数学模型上。本工作的目的是通过实验验证这种压缩机的数学模型。我们提出了一种简单有效的数学模型来估算压缩机的性能,并且可以使用个人计算机轻松执行该模型。根据对压缩机热力学行为的影响,评估了诸如压缩机速度,排气压力和间隙体积之类的参数。该模型可以预测不同曲柄角下的汽缸压力,汽缸容积,汽缸温度,气门升程和合成转矩;它还可以预测输送的自由空气和压缩机的指示功率。因此,该模型已使用实验结果进行了验证。

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