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A performance degradation evaluation method for a turbocharger in a diesel engine

机译:柴油机涡轮增压器性能下降评估方法

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摘要

As one of the key systems of the marine power plant diesel engine, the turbocharger directly affects whether the diesel engine can continuously and stably provide the power required for the ship. Owing to a number of uncontrollable factors, such as harsh working conditions and complex structures, the turbocharger may have various failures, causing it to lose its intended function. At present, the fault diagnosis of the marine turbocharger has not been paid enough attention yet and in most cases, the method of ‘ex post diagnosis’ is still adopted. When analysing the nonlinear correspondence between the failure symptoms and failure causes, it is difficult for the existing theories to meet the actual diagnostic requirements. This paper introduces the concept of gas-path diagnosis into the condition monitoring for a marine turbocharger for the first time and proposes the flow capacity index which characterizes the flow capacity of the component and the isentropic efficiency index which characterizes the operating efficiency of the component as two dimensionless evaluation indicators for turbocharger health status. Moreover, the nonlinear mapping relationship between these two health parameters and the gas-path measurable parameters of the turbocharger is studied, and a novel performance degradation evaluation method for a turbocharger is established. The proposed method has been tested in three test cases where the degradation of a model turbocharger has been analysed. These case studies have illustrated that the proposed method can accurately isolate the degraded components and further quantify the degradation of the components.
机译:涡轮增压器作为船舶电站柴油机的关键系统之一,直接影响柴油机能否持续稳定地提供船舶所需的动力。由于多种不可控因素,例如恶劣的工作条件和复杂的结构,涡轮增压器可能会发生各种故障,从而使其失去预期的功能。目前,船用涡轮增压器的故障诊断还没有引起足够的重视,在大多数情况下,仍采用“事后诊断”的方法。当分析故障症状与故障原因之间的非线性对应关系时,现有理论很难满足实际的诊断要求。本文将气路诊断的概念首次引入到船用涡轮增压器的状态监测中,并提出了表征部件流量的流量指数和表征部件运行效率的等熵效率指数。涡轮增压器健康状况的两个无量纲评估指标。此外,研究了这两个健康参数与涡轮增压器气路可测量参数之间的非线性映射关系,建立了一种新型的涡轮增压器性能下降评估方法。所提出的方法已经在三个测试案例中进行了测试,其中分析了模型涡轮增压器的退化。这些案例研究表明,所提出的方法可以准确地分离降解的组分,并进一步量化组分的降解。

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