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Study on Effect of Piston System on Seismic Performance for Cylinder Gasholder

机译:活塞系统对气瓶储气罐抗震性能影响的研究

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摘要

The cylinder gasholder is a large size complicate mechanic equipment. The weight of piston system increases evidently with cylinder gasholders tends to be large capacity and high pressure. In design, conventional calculation model of seismic response takes the weight of piston system into the main mass, regards the piston system as the negative factors on the seismic performance of gasholder. Bearing the gas pressure, the piston system actually suspends in the cylinder shell with the oil sealing between the piston side and cylinder shell. The spring idler pulleys are set at the ends of piston trusses to fulfill the flexible contact between the piston and the columns in cylinder shell. In this paper, based on the actual construction, taking the piston system as suspended mass, the SM calculation model for seismic design of cylinder gasholder is established. Taking a 300,000 m~3 cylinder gasholder as an example, selecting 3 earthquake waves, the seismic responses for conventional and SM models are calculated. The calculation results show that the piston has a remarkable positive damping effect on the seismic performance of gasholder.
机译:气瓶储气罐是大型复杂的机械设备。活塞系统的重量明显增加,因为气缸储气罐趋于大容量和高压。在设计中,传统的地震反应计算模型以活塞系统的重量为主要质量,将活塞系统作为影响储气罐抗震性能的不利因素。承受气压后,活塞系统实际上悬挂在气缸壳中,并且在活塞侧和气缸壳之间形成油封。弹簧惰轮设置在活塞桁架的端部,以实现活塞与气缸壳中柱之间的灵活接触。本文以实际结构为基础,以活塞系统为悬吊质量,建立了气缸气柜抗震设计的SM计算模型。以30万立方米〜3缸的储气罐为例,选择3个地震波,计算了常规模型和SM模型的地震响应。计算结果表明,活塞对储气罐的抗震性能具有显着的正阻尼作用。

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