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首页> 外文期刊>Applied Energy >Comparative evaluation of various methodologies to account for the effect of load variation during cylinder pressure measurement of large scale two-stroke diesel engines
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Comparative evaluation of various methodologies to account for the effect of load variation during cylinder pressure measurement of large scale two-stroke diesel engines

机译:大型二冲程柴油机气缸压力测量期间考虑负载变化影响的各种方法的比较评估

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摘要

A significant number of fault-detection and fault diagnosis methods are based on the use of the measured cylinder pressure to estimate critical engine parameters i.e. cylinder brake power, fuel consumption, compression condition, injection timing etc. But, the results derived from the application of these techniques depend strongly on the quality of data used. A common problem which has been identified by many researchers is load variation during cylinder pressure measurement. This for some applications (marine) can become significant and in some cases makes unusable utilization of cylinder pressure measurement. According to the conventional measurement technique for field applications, cylinder pressure is measured sequentially instead of simultaneously due to issues related mainly to cost, applicability and complexity. Because of this, the operating parameters that are estimated for each cylinder depend on instantaneous engine load. Therefore when an operating problem or a mistuning is identified, the distinction for the actual cause (i.e. if it is attributed to a malfunction, mistuning or to engine load variation during measurement), is difficult because cylinders are not measured simultaneously. For this reason, in the present work, three methodologies that have been developed to account for the effect of load variation on diagnosis results are presented and evaluated in an attempt to be offered an alternative against simultaneous cylinder pressure measurement. For this purpose, a well validated diagnostic technique, developed by the present research group, is employed and modified accordingly. The aforementioned methodologies have been applied on a large-scale two-stroke diesel engine used for power generation in a Greek island at two different operating conditions. From the application of each method, diagnosis and tuning results are derived which are then compared against the respective ones obtained from the conventional diagnosis technique which neglects the effect of load variation during measurement. The evaluation is based on the comparison of vital engine performance data i.e. brake power output, cylinder fuel flow rate, peak firing pressure, ignition angle and compression quality. From the comparison of the diagnosis results it is revealed that the three methodologies provide adequate results while the one which is based on the use of two cylinder pressure sensors provides a very competitive alternative against simultaneous cylinder pressure measurement, offering the advantage of simplicity and low cost. Most important it is demonstrated the potential for all three methods to propose the required engine tuning to guarantee uniform cylinder operation despite variation of load during measurement.
机译:大量的故障检测和故障诊断方法是基于使用测得的气缸压力来估算发动机的关键参数,例如气缸制动功率,燃油消耗,压缩条件,喷射正时等。但是,这些结果来自于这些技术在很大程度上取决于所使用数据的质量。许多研究人员发现的一个普遍问题是气缸压力测量期间的负载变化。这对于某些应用(海洋)可能会变得很重要,并且在某些情况下无法利用气缸压力测量。根据用于现场应用的常规测量技术,由于主要涉及成本,适用性和复杂性的问题,气缸压力是顺序而不是同时测量的。因此,每个气缸估计的运行参数取决于瞬时发动机负载。因此,当识别出操作问题或漏气时,由于不能同时测量气缸,因此难以区分实际原因(即,归因于故障,漏气或测量期间的发动机负荷变化)。由于这个原因,在本工作中,提出并评估了三种方法以解决负载变化对诊断结果的影响,并试图提供一种替代方法,以同时进行气缸压力测量。为此,采用并修改了由本研究小组开发的经过充分验证的诊断技术。前述方法已经应用于在希腊岛上以两种不同的操作条件发电的大型二冲程柴油发动机。从每种方法的应用中,得出诊断和调整结果,然后将其与从传统诊断技术获得的相应结果进行比较,而传统诊断技术忽略了测量过程中负载变化的影响。该评估基于重要的发动机性能数据的比较,即制动功率输出,气缸燃油流量,峰值点火压力,点火角度和压缩质量。从诊断结果的比较中可以看出,这三种方法提供了足够的结果,而一种基于使用两个气缸压力传感器的方法则提供了一种同时进行气缸压力测量的极具竞争力的替代方法,具有简便和低成本的优点。 。最重要的是,这证明了所有三种方法都可以提出所需的发动机调整方案,以确保尽管测量过程中负载发生变化,但仍可确保气缸均匀运行。

著录项

  • 来源
    《Applied Energy》 |2014年第1期|1027-1042|共16页
  • 作者单位

    Internal Combustion Engines Laboratory, School of Mechanical Engineering, National Technical University of Athens, 9 Heroon Polytechniou St., Zografou Campus, 157 80 Athens, Greece;

    Thermodynamic & Propulsion Systems Section, Department of Aeronautical Sciences, Hellenic Air Force Academy, Dekelia Air Force Base, 1010 Dekelia, Attiki, Greece;

    Internal Combustion Engines Laboratory, School of Mechanical Engineering, National Technical University of Athens, 9 Heroon Polytechniou St., Zografou Campus, 157 80 Athens, Greece;

    Internal Combustion Engines Laboratory, School of Mechanical Engineering, National Technical University of Athens, 9 Heroon Polytechniou St., Zografou Campus, 157 80 Athens, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Diagnosis; Engine condition monitoring; Load variation; Electric power station; Diesel engine;

    机译:诊断;发动机状态监控;负载变化;电站;柴油发动机;

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