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Continuous Online Oil Consumption Measurement with the SO_2 Tracer Method

机译:使用SO_2示踪方法连续在线油耗测量

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Environmental issues have a significant influence on the development of modern combustion engines. Particularly the tightening of emission limits in Europe and the USA have to be considered in the development process. One issue that influences the emissions of engines is the oil consumption of the engine and thus the reduction of the oil consumption of combustion engines has gained importance in recent years. In order to optimize the oil consumption of the engine a measurement technique is needed that allows a very accurate detection of the engine oil consumption for steady state as well as for transient engine operation points. Since conventional measurement techniques provide only limited accuracy at long measuring times and are only applicable for steady state engine operation new methods for the online detection of the engine oil consumption have to be established. New methods for the oil consumption measurement are the tracer methods. Here, a tracer substance in the oil is used that can be detected in the exhaust gas. The actual oil consumption of the engine can then be calculated with the measured concentration of the tracer substance. One of the tracer methods is the SO_2 tracer method. For this method sulfur is used as tracer in the engine oil. The oil consumption is calculated with the occurring sulfur dioxide (SO_2) in the exhaust gas. The aim of this study was the implementation of the SO_2 tracer method at the Combustion Engines and Emission Control Laboratory at the University of Applied Sciences Regensburg. The detection of the SO_2 concentration in the exhaust gas was done by means of an IMR mass spectrometer. For the implementation and validation of the measurement setup was done by comparing the achieved results of the SO_2 tracer method to gravimetric oil consumption measurement results. For this purpose measurements with steady state and transient engine operation were carried out with the parallel measurement of the engines oil consumption with both techniques. Thereby the main focus was on low engine operation points because there low oil consumption rates are supposed to occur and thus the oil consumption measurement is most challenging there. Besides the validation of the measurement setup the influence of the engine operation mode and cylinder modifications was investigated. Therefore measurements with steady state and transient engine operation as well as single cylinder measurements on cylinders, on which special modifications had been applied, were carried out using the SO_2 tracer method for calculation the oil consumption.
机译:环境问题对现代燃烧发动机的发展产生了重大影响。特别是在开发过程中考虑欧洲和美国的排放限制的收紧。影响发动机排放的一个问题是发动机的石油消耗,从而降低了燃烧发动机的油耗近年来的重要性。为了优化发动机的油耗,需要测量技术,其允许非常准确地检测发动机油耗的稳态以及瞬态发动机操作点。由于传统的测量技术在长测量时间提供有限的精度,因此仅适用于稳态发动机操作,必须建立用于在线检测发动机油耗的新方法。油耗测量的新方法是示踪方法。这里,使用油中的示踪物质,其可以在废气中检测。然后可以用测量的示踪物质的浓度计算发动机的实际油耗。其中一个示踪方法是SO_2示踪方法。对于该方法,硫在发动机油中用作示踪剂。用废气中的发生硫(SO_2)计算油消耗。该研究的目的是在应用科学雷根斯堡大学的燃烧发动机和排放控制实验室中实施SO_2示踪方法。通过IMR质谱仪进行废气中的SO_2浓度的检测。对于测量设置的实现和验证,通过比较所取得的SO_2示踪方法的达到重量油耗测量结果来完成测量设置。为此目的测量具有稳态和瞬态发动机操作,并通过两种技术的发动机油耗的并行测量来进行。因此,主焦点在低发动机操作点上,因为可能会发生低油耗率,因此在那里最具挑战性的油耗测量。除了验证测量设置外,还研究了发动机操作模式和汽缸改造的影响。因此,使用SO_2示踪方法进行了稳定状态和瞬态发动机操作以及汽缸上的单个气缸测量,用于计算用于计算油耗的SO_2示踪方法。

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