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USING INTEGRAL POWER PLANT DIAGNOSIS TO BOOST MAINTENANCE EFFICIENCY

机译:使用综合电站诊断来提高维护效率

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摘要

Significant decrements in generated power at fossil fuel power plants occur in the few months following annual maintenance which, besides causing economic losses for the power plants, reduce their availability. In order to determine the causes of these decrements, it is a common practice to carry out tests to evaluate the performance of the equipment in which the problem supposedly originates. Because these tests are made individually in the equipment, it is not possible to have an integral vision of the plant operation as a whole and, therefore, the problem related to energy efficiency is not attacked from the root. This paper shows a practical method using in-situ measurements and a commercial simulation computer tool that allows the power plant operators to make an integral thermodynamic assessment. It makes possible to identify the causes of efficiency decrease (for the whole plant and its components) and to quantify the contribution of each equipment to the total power loss. As a result, priorities on the maintenance of the equipment can be determined to tackle the most important energy losses, and obtaining a total solution to the problem of energy decrement. The paper includes the results obtained from the application of this methodology tp assess a 158 MW fossil fuel power plant unit in Mexico.
机译:化石燃料发电厂的发电量在年度维护后的几个月内会大大减少,这不仅会给发电厂造成经济损失,还会降低其可用性。为了确定这些减少的原因,通常的做法是进行测试以评估问题根源所在的设备的性能。由于这些测试是在设备中单独进行的,因此不可能对整个工厂的运行有一个完整的认识,因此,与能源效率有关的问题不会从根本上受到攻击。本文展示了一种使用现场测量和商业仿真计算机工具的实用方法,该工具可以使电厂操作员进行整体热力学评估。它可以确定效率降低的原因(对于整个工厂及其组件),并可以量化每个设备对总功率损耗的贡献。结果,可以确定设备维护的优先级以解决最重要的能量损失,并获得能量减少问题的整体解决方案。该文件包括通过应用该方法获得的结果。tp评估了墨西哥的158兆瓦化石燃料发电厂。

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