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1.
Parametric Studies on Aerostatics Stability for Suspension Bridges
大跨径悬索桥静风稳定性的参数研究
2.
Analysis of Static-wind Stability of Bridges with Consideration of Reynolds Number Effects
考虑雷诺数效应的桥梁静风稳定分析
3.
Wind Induced Vibration Analysis in Time Domain and Aerostatic Stability Study for Cable-Stayed Bridge
斜拉桥风振响应时域分析及静风稳定性研究
4.
Analysis of the nonlinear aerostatic stability of a long-span suspension bridge under yawed wind
斜风作用下大跨度悬索桥非线性静风稳定分析
5.
Flutter, Buffeting and Aerostatic Stability Analysis for Long-span Cable-stayed Bridges;
大跨度斜拉桥颤抖振响应及静风稳定性分析
6.
Static Wind-Induced Lateral Stability Analysis of Long Span Concrete Filled Steel Tubulrear Arches Bridge;
大跨度钢管混凝土拱桥横向静风稳定分析
7.
Time Domain Flutter Analysis and Areostatic Stability Study for Long-Span Suspention Bridge
大跨度悬索桥颤振时域分析及静风稳定性分析
8.
Nonlinear Aerostatic Stability Analysis of the Construction Catwalks for Long-Span Suspension Bridge
大跨径悬索桥猫道非线性静风稳定性分析
9.
An Aerostatic Stability Method for Long-Span Bridges Considering Geometrical, Material and Static Wind Load Nonlinearities
考虑几何与材料及静风荷载的非线性因素的大跨径桥梁静风稳定分析法
10.
Aerostatic Stability of Xihoumen Bridge during Erection and Strength Analysis of Temporary Connection;
西堠门大桥施工阶段静风稳定性分析及主梁临时连接件强度分析
11.
Spatial Cable System Calculation Method and Static Wind Stability Analysis of a Self-anchored Suspension Bridge;
自锚式悬索桥空间主缆系统计算与静风稳定性分析
12.
Static Stability Analysis and Time Domain Wind-Induced Buffeting Analysis of the Long-Tan River Long-Span Bridge;
龙潭河特大桥静力稳定性及风致抖振时域分析
13.
Study on Static Voltage Stability Considered with Large-scale Wind Farms
大型风电场对静态电压稳定性的影响研究
14.
Assessment of Based on the Static Stability of Wind Power Grid-impact
基于静态稳定的风电接入电网影响评估
15.
Studies on Static Voltage Stability of the Regional Power Grid Connected with Wind Farms
风电接入地区电网的的静态电压稳定性研究
16.
steady state stability limit with constant flux
恒定磁时静态稳定极限
17.
Study on Style and Mechanism of Aerostatic Stability for Long Span Bridge;
大跨度桥梁静风失稳形态及机理研究
18.
For system stability, the influence of the static powder bed height was the most obvious, whereas the impact of the fluidization air velocity was slighter.
对于系统稳定性,静止料层高度的影响最显著,而流化风速的影响较轻微。