VERIFICATION OF GEOMETRIC MODELS OF THE LPC ROTOR OF THE K-1000-60/3000 TURBINE UNIT BASED ON NATURAL AND CRITICAL FREQUENCIES IN THE ANSYS SOFTWARE COMPLEX

Olga Chernousenko, Bohdan Marysiuk
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Abstract

One of the priority tasks of the energy industry is to ensure the reliable and safe operation of steam turbine units of thermal power plants and nuclear power plants. Given the difficult situation in the country, it is impossible to replace outdated equipment that has exhausted its design resource with new ones. As is known, the safety factor of the material taken into account during the design of steam turbine equipment was very approximate. At that time, there were no data on the operation of power equipment, which would have already worked for 200-220 thousand hours. in difficult operating conditions. The situation has changed now. There are power installations that have exhausted or are close to exhausting their design resource. By conducting experimental studies with metal samples of this equipment, it is possible to significantly clarify the physical and mechanical properties of steels and their damage due to operation. Therefore, the problem of extending the resource is becoming increasingly important. Computer modeling has greatly simplified the task of calculating the resource of the equipment. However, such a complex object as a steam turbine requires significant computing resources, and the calculation of equations in all finite element nodes is quite time-consuming. It is necessary to look for ways to rationalize calculation mathematical models. At the same time, the accuracy of the calculation should remain at a satisfactory level. In this work, were created simplified geometric models of the rotor of the LPC turbine unit К-1000-60/3000. The option is considered of replacing the working blades with equivalent distributed masses and toroidal rings. Verification of the obtained models based on critical rotation frequencies confirmed the possibility of replacing the working blades with distributed masses. On the other hand, the presence of toroidal rings of large radii leads to a significant reduction of critical frequencies in comparison with normalized values.
基于固有频率和临界频率的k-1000-60/3000汽轮机组LPC转子几何模型在ansys软件中的验证
保证火电厂和核电站汽轮机机组的可靠、安全运行是能源工业的首要任务之一。考虑到国内的困难情况,用新设备替换已经耗尽设计资源的过时设备是不可能的。众所周知,在汽轮机设备的设计中所考虑的材料的安全系数是非常近似的。当时没有电力设备的运行数据,这些设备已经工作了20 -22万小时。在困难的操作条件下。现在情况变了。有些电力装置已经耗尽或接近耗尽其设计资源。通过对该设备的金属样品进行实验研究,可以显著地阐明钢的物理和机械性能及其因操作而造成的损伤。因此,资源的延伸问题变得越来越重要。计算机建模大大简化了计算设备资源的任务。然而,像汽轮机这样复杂的对象需要大量的计算资源,并且计算所有有限元节点的方程非常耗时。有必要寻找使计算数学模型合理化的方法。同时,计算的准确性应保持在令人满意的水平。在这项工作中,建立了LPC汽轮机组转子的简化几何模型К-1000-60/3000。考虑将工作叶片替换为等效分布质量和环形环的方案。基于临界旋转频率的模型验证了用分布质量代替工作叶片的可能性。另一方面,与归一化值相比,大半径环形环的存在导致临界频率的显著降低。
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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