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Development of a new Peugeot XUD9 10-hour cyclic test to evaluate the nozzle coking propensity of diesel fuels

机译:开发新的标致XUD9 10小时的循环试验,评估柴油燃料的喷嘴焦化倾向

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The XUD9 IDI 6-hour steady-state test was developed to evaluate the nozzle coking propensity of diesel fuels. After the CEC 1997 Round-Robin, it was concluded that this test could not discriminate between fuels with the statistical confidence required for CEC tests. Furthermore, it was noted that the test would have to be considerably improved if it was to have any chance of meeting the CEC statistical standards. In 1998, Texaco proposed a 10-hour cyclic test as a replacement for the 6- hour steady-state test. A Task-Force was formed to investigate whether this test was a suitable alternative. After a mini Round-Robin, using the 10-hour cyclic test method, the high potential of the test was confirmed. Dynamic fuel injection timing was identified as the single most important parameter affecting nozzle coking. Cost-effective equipment was selected for measuring dynamic fuel injection timing accurately. The fuel pump was modified so that its internal automatic injection timing mechanism was locked to give a fixed injection timing. Several significant changes were made to the test method to ensure better control of the test. Another Round-Robin was carried out by Task-Force members to evaluate the effect of all these changes to the test. The results demonstrated greater consistency of data and good discrimination between fuels. In total, after 8 Task-Force meetings and numerous tests it was concluded that the 10-hour test had significantly higher discrimination than the 6-hour test. In addition, the mini Round-Robin data analysis indicated that the test met CEC statistical requirements. The EFTC ratified the findings, which enabled the Task-Force to proceed with the development of this test and to conduct a full Round-Robin.
机译:开发了XUD9 IDI 6小时稳态测试,以评估柴油燃料的喷嘴焦化倾向。在CEC 1997年的循环之后,得出结论,该试验无法在CEC测试所需的统计信心之间区分燃料。此外,有人指出,如果有可能符合CEC统计标准,则必须明显改善测试。 1998年,Texaco提出了10小时的循环试验作为6小时稳态测试的替代品。形成任务力以研究该测试是否是合适的替代品。经过迷你循环,使用10小时循环试验方法,确认了测试的高潜力。动态燃料喷射时间被识别为影响喷嘴焦化的单一重要参数。选择经济高效的设备,用于准确测量动态燃料喷射正时。修改燃料泵,使其内部自动喷射正时机构锁定以提供固定的喷射正时。对测试方法进行了几种重大变化,以确保更好地控制测试。另一个圆罗宾由任务力成员进行,以评估所有这些变化对测试的影响。结果表明了数据的更大一致性以及燃料之间的良好歧视。总共在8次任务责任会议和许多测试后,得出的结论是,10小时测试显着高于6小时测试的歧视。此外,迷你循环数据分析表明测试符合CEC统计要求。 EFTC批准了调查结果,这使得任务力能够继续开发该测试并进行全面的循环。

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