ANALYSIS OF THE MAIN APPROACHES TO THE ASSESSMENT OF THE CONDITION OF TPP AND NPP EQUIPMENT

Olexander Efimov, Larysa Tiutiunyk, Tetyana Harkusha, Igor Sydorkin, Dmytro Vasyunin
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Abstract

The materials of the article analyze the current state of the energy industry in Ukraine and the countries of the world and analyze the ways to increase the efficiency of thermal power plants and nuclear power plants. The elements of the power unit can be affected by aging processes that occur over time or as a result of long-term use. The negative impact of aging can lead to the degradation of the element, namely to the deterioration of its reliability and, as a result, the safety of the power unit as a whole. The development and implementation of measures to mitigate aging processes and to ensure reliable operation of elements during the reassigned resource period is a mandatory type of activity for managing the aging of thermomechanical equipment and pipelines.Monitoring of the technical condition of the elements is performed by monitoring the established parameters and characteristics that determine the technical condition of the elements, during their operation, during tests, measurements, operational control of metal, repairs and maintenance of the elements. Monitoring should be carried out systematically throughout the entire life of the power unit. In turn, technical diagnostics monitors the current state of all elements, detects abnormal conditions, determines the causes of  their appearance, which allows you to assess the situation and take measures to eliminate them. The purpose of the article is to analyze the main approaches to assessing the state of energy equipment of thermal and nuclear power plants.
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对评估 TPP 和 NPP 设备状况的主要方法的分析
文章的材料分析了乌克兰和世界各国能源工业的现状,并分析了提高火电厂和核电厂效率的方法。随着时间的推移或长期使用,发电设备的元件可能会受到老化过程的影响。老化的负面影响会导致元件退化,即可靠性下降,进而影响整个动力装置的安全性。在热力机械设备和管道的老化管理中,制定和实施减缓老化过程的措施并确保元件在重新分配资源期间的可靠运行是一项必须开展的活动。元件技术状况的监测是通过监测确定元件技术状况的既定参数和特征来进行的,这些参数和特征包括元件运行期间、测试期间、测量期间、金属的运行控制期间、元件的维修和维护期间。监测应在动力装置的整个使用寿命期间系统地进行。反过来,技术诊断可以监控所有元件的当前状态,检测异常情况,确定出现异常的原因,从而对情况进行评估并采取措施消除异常情况。本文旨在分析评估火电厂和核电厂能源设备状态的主要方法。
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