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Reliability Assessment of a Co-Generation Power Plant in a Sugar Mill Using Fault Tree Analysis

机译:基于故障树分析的糖厂热电联产电厂可靠性评估

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摘要

Combined heat-and-power systems can produce energy and heat efficiently compared to separate systems, and also contributes to greenhouse gas emission reduction in most of the process industries. Under such circumstances, we ought to analyze and optimize the reliability in terms of performance of the power plant for various applications. In this article, the reliability study carried out in a sugar mill combined heat and power plant using fault tree analysis is presented and discussed. Common cause failures are evaluated using the β-factor model and the available failure data sourced from the plant. Based on the analysis, it is found that the probability of failure on demand or unavailability of the plant is 2.50E-3. It is observed that a very high condenser exhaust temperature is the major contributor to the unavailability of the plant. The other significant contributing factors for plant unavailability are alternator coolant jammed and lube oil tank valve leak. Such failures can be averted by implementing stringent preventive and periodic maintenance techniques.
机译:与单独的系统相比,热电联产系统可以高效地产生能量和热量,并且在大多数过程工业中也有助于减少温室气体的排放。在这种情况下,我们应该针对各种应用在电厂性能方面分析和优化可靠性。在本文中,提出并讨论了使用故障树分析在糖厂热电厂联合进行的可靠性研究。使用β因子模型和来自工厂的可用故障数据来评估常见原因故障。根据分析,发现按需失败或工厂不可用的概率为2.50E-3。可以看出,很高的冷凝器排气温度是造成工厂无法使用的主要原因。导致工厂无法使用的其他重要因素是交流发电机冷却液堵塞和润滑油箱阀泄漏。通过实施严格的预防性和定期维护技术,可以避免此类故障。

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