Safety Evaluation of Hinged Pump-Type Water Gate Fixing Device

Geonhyeok Bang, Jaehoon Lee, Gwanghee Heo, S. Seo, S. Jeon
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Abstract

In several mountainous areas in Korea, the number of small-scale storage facilities are on the rise. The safety of the opening and closing devices of sluice gates used in storage facilities is important. Recently, during the opening and closing of a water gate that used hydraulic pressure, sagging had occurred owing to the loss of hydraulic pressure over time. To solve the sagging problem of the water gate, a hydraulic loss prevention fixing device is used. The purpose of this study is to induce the safety design of a water gate through a theoretical and numerical review of the safety of a fixing device of the water gate. First, to theoretically secure the stability of the water gate fixing device, the fixing device was simplified and analyzed using the transformed-section method considering its cross-sectional height. In addition, the simplified fixing device assumed the point conditions according to the connection type, and the maximum deflection occurring in the fixing device was calculated considering the cross section conversion under the condition of the load acting on it. Through this structural analysis, the maximum deflection problem and stress generated in the fixing device were confirmed, and the safety of the fixing device was assessed to present its safety standard. The FE numerical analysis performed for comparative verification was interpreted as a condition of linear elasticity of isotropy in the fixing device. Consequently, a safety design method for the pump-type water gate fixing device was presented through the theoretical and numerical verification for securing its safety.
铰接泵式水闸固定装置的安全性评价
在韩国的一些山区,小规模储藏设施正在增加。储水设施中闸门启闭装置的安全性是一个重要的问题。最近,在一个使用液压的水门的开启和关闭过程中,由于液压的损失随着时间的推移而出现了下垂。为了解决水闸的下垂问题,采用了液压防损固定装置。本研究的目的是通过对水闸固定装置的安全性进行理论和数值分析,从而引出水闸的安全设计。首先,为了从理论上保证水闸固定装置的稳定性,考虑水闸固定装置的横截面高度,采用变换截面法对水闸固定装置进行了简化和分析。此外,简化后的固定装置根据连接类型假设了点条件,考虑荷载作用下的截面转换,计算了固定装置发生的最大挠度。通过结构分析,确定了固定装置的最大挠度问题和产生的应力,并对固定装置的安全性进行了评估,提出了固定装置的安全标准。为进行比较验证而进行的有限元数值分析被解释为固定装置各向同性的线弹性条件。为此,通过理论和数值验证,提出了水泵式水闸固定装置的安全设计方法。
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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