1)  vibration loading
震载
2)  earthquake load
地震载荷
1.
Analysis of the Influence of the Diameters of the Tie-Rods on Spherical Tanks Under Earthquake Loads;
震载荷下拉杆直径对球罐的影响分析
2.
Seismic response analysis of buried pipelines under the earthquake load;
埋地管道在地震载荷作用下的动力响应分析
3.
The API650 standard for the design of oil storage tanks and key factors for deciding whether the oil storage tanks should have anchors or not such as wind load, earthquake load, internal pressure in GB50341 " Standard for design of Vertical Cylindrical Steel Welded Oil Tanks" are analyzed and compared.
分析对比美国石油学会油罐设计规范APl650和IGB50341《立式圆筒形钢制焊接油罐设计规范》中确定储罐是否带锚栓的关键因素,包括风载荷、地震载荷和设计内压,探讨了锚栓储罐设计中应注意的问题,如罐壁、罐顶的设计,锚栓力的确定,锚栓座的计算等。
3)  seismic load
地震载荷
1.
By adopting Membrane Theory I within the elastic limit, this project abides by the requirement in Steel Pressure Container GB150-98,deduces and calculates the secondary membrane stress caused by pressure, keeps stress under allowable stress according to the Principal Stress Theory, It approximately calculates the wind load with mass spectrometry, and seismic load Curved Method Prospecting Theory.
对于风载荷 ,分段进行质量折算法近似计算 ;对于地震载荷 ,采用反应谱曲线理论 ,假设塔设备是弹性的但允许塔弹塑性变形 ,取其较薄弱的截面进行应力分析、校核等。
4)  earthquake loading
地震载荷
1.
The natural frequencies and the corresponding vibration modals of the reactor are obtained by performing modal analysis so that the dynamic responses of the reactor to the wind and earthquake loadings can be determined.
应用Lanczos算法对聚丙烯环管反应器进行了模态分析,得出了其固有频率和相应的振型,从而可以计算聚丙烯环管反应器对风载荷和地震载荷的动态响应。
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