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The role of real power output from farm tractor engines in determining their environmental performance in actual operating conditions

机译:Real Power输出从农用拖拉机发动机的作用在实际操作条件下确定其环境性能

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The paper discusses the determination of engine torque to be used to calculate work performed by a non-road vehicle when determining specific exhaust emissions. During investigations related to the environmental indexes under actual operating conditions, the value of torque is pulled from the vehicle OBD system. It is estimated based on the pressure and duration of the fuel injection. The work of an engine calculated in this way is overrated. It allows for the engine internal losses such as aerodynamic resistance and internal friction losses. The paper presents tests on a farm tractor, in which a portable chassis dynamometer and a portable exhaust emissions measurement and data recording systems were applied. In the performed tests, the engine operated at steady work points: defined engine speeds and loads. Based on the Willans method, the data from the vehicle onboard diagnostic system and the calculated values of the fuel consumption a correction curve was determined. It should be used when correcting the engine torque during measurements under actual operating conditions. Based on the recorded concentrations of the emission components, specific emission was calculated allowing for the corrective calculation. This was used to perform a comparative analysis with the emission limits specified by the Stage IIIB standard that the test object was compliant with. The presented research methodology may be successfully applied in testing other non-road machinery whose environmental indexes are defined based on specific emissions. In research of machines in actual condition, necessary is to determine the engine internal resistance and take it into account when determining the engine torque in the field tests. This will allow a determination of the real environmental indexes.
机译:本文讨论了用于在确定特定废气排放时由非公路车辆执行的工程来计算发动机扭矩的确定。在与实际操作条件下与环境指标相关的调查期间,从车辆OBD系统中拉出扭矩的值。据估计,基于燃料喷射的压力和持续时间。以这种方式计算的发动机的工作被高估了。它允许发动机内部损耗,例如空气动力学电阻和内部摩擦损失。本文提出了在农用拖拉机上的测试,其中采用便携式底盘测功机和便携式排放测量和数据记录系统。在执行的测试中,发动机在稳定的工作点运行:定义的发动机速度和负载。基于WILSANS方法,确定来自车辆车载诊断系统的数据和燃料消耗的计算值校正曲线。在实际操作条件下测量期间校正发动机扭矩时应使用它。基于所记录的发射组分的浓度,计算允许纠正措施的特定发射。这用于对比较分析进行比较分析,其中阶段IIIB标准指定的排放限制符合测试对象符合的标准。所提出的研究方法可以成功地应用于测试环境指标的其他非道路机械基于特定排放来定义。在实际情况下的机器研究中,需要确定发动机内部电阻并在确定现场测试中的发动机扭矩时考虑到其考虑。这将允许确定真实的环境指标。

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