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Experimental and Numerical Study of Impact of Air Filter Holes Masking on Altitude at Heavy-Duty Diesel Engine

机译:重型柴油机空气滤清器孔掩蔽对海拔高度影响的实验与数值研究

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摘要

At high altitudes, power of an internal combustion engine reduces due to air density reduction. In turbocharged diesel engine this issue affects the performance of the compressor and can result in unstable operation of the turbocharger if the power is not decreased by engine actuator. Mainly for testing the effects of altitude in the test room, air throttle valve and combustion air handling unit were used to reduce the suction air pressure. Easier and cheaper solution to consider effect of altitude on engine performance is to mask part of the air filter to reduce the suction pressure. In this paper, pressure drop against 0%, 26%, 52%, 66% and 74% of air filter hole’s masking for different mass flow rates has been studied by computational fluid dynamics. The analysis output mass flow rate-pressure diagram for the air filter, will be used as input data in the GT-Power software which is a one-dimensional computational fluid dynamics software and the effect of masking on altitude and performance at different revolutions per minute of the engine is investigated. Also, an experimental and computational fluid dynamics study was carried out to predict altitude against different proportions of air filter hole’s masking at 1000 rpm. The predicted results are validated by comparing with those of experimental data. A good agreement between the predicted and experimental values ensures the accuracy of the numerical predictions with the present work.
机译:在高海拔地区,由于空气密度的降低,内燃机的功率会降低。在涡轮增压柴油机中,如果不通过发动机执行器降低功率,此问题会影响压缩机的性能,并可能导致涡轮增压器的不稳定运行。主要用于测试高度对测试室的影响,使用了空气节流阀和燃烧空气处理单元来降低吸入空气压力。考虑海拔高度对发动机性能影响的更简单,更便宜的解决方案是对空气过滤器的一部分进行遮盖,以降低吸气压力。本文通过计算流体动力学研究了针对不同质量流量的空气过滤器孔掩膜的0%,26%,52%,66%和74%的压降。空气滤清器的分析输出质量流速-压力图将用作GT-Power软件的输入数据,该软件是一维计算流体动力学软件,在每分钟不同转数下,掩膜对高度和性能的影响对发动机的零件进行了调查。此外,还进行了实验和计算流体动力学研究,以针对1000 rpm下空气过滤器孔的不同遮盖比例预测高度。通过与实验数据进行比较,验证了预测结果。预测值和实验值之间的良好一致性确保了当前工作的数值预测的准确性。

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