Laboratory, Bench, and Full-Scale Researches of Strength, Reliability, and Safety of High-Power Hydro Turbines

N. Makhutov, Yury Petrenia, A. Lepikhin, V. Moskvichev, M. Gadenin, A. Tchernyaev
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引用次数: 2

Abstract

Large hydropower plants (HPPs) are categorized as critically and strategically important infrastructure facilities in industrialized countries. Therefore, the issues of ensuring HPPs safety are of paramount importance. In this chapter, the basic aspects of the safety analysis of HPPs, calculation and experimental substantiation of the strength, and resource and reliability of the main equipment are discussed. The scientific and technical measures to ensure safety of HPPs are presented. As a defining measure of safety, it is proposed to ensure the protection of HPPs from severe accidents and disasters according to risk criteria. The main provisions of the risk assessment are presented on the basis of a sequential analysis of loads, features of stress-strain states, characteristics of mechanical properties, and limit states of hydraulic equipment of HPPs. The issues of calculation and experimental evaluation of hydro turbine ’ s resource, which limit the safety of HPPs, are considered. The features of technical diagnosis of hydraulic turbines are considered; characteristic defects and damages are described. The main provisions of the estimated residual life of hydro turbines are presented. The results of the risk estimates of HPPs and hydro turbine resource are given.
大功率水轮机强度、可靠性和安全性的实验室、台架和全尺寸研究
大型水力发电厂(HPPs)在工业化国家被归类为至关重要和具有战略意义的基础设施。因此,确保高压发电厂的安全问题至关重要。本章主要论述了电站安全分析、强度计算与实验验证、主要设备资源与可靠性等基本问题。提出了保证高压电站安全运行的科学技术措施。作为一种明确的安全措施,提出了根据风险准则来确保电厂免受严重事故和灾害的保护。在对高压电站的载荷、应力-应变状态特征、力学性能特征和液压设备极限状态进行序贯分析的基础上,提出了风险评估的主要内容。考虑了水轮机资源的计算和试验评价问题,这些问题制约着电站的安全运行。考虑了水轮机技术诊断的特点;描述了典型缺陷和损伤。介绍了水轮机剩余寿命估算的主要规定。给出了水电和水轮机资源的风险评估结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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