Ⅰ. INTRODUCTION The crux of typhoon prediction is the prediction of typhoon track. In recent years many objective prediction models have been proposed, particularly the statistical-dynamical type has become comparati...Ⅰ. INTRODUCTION The crux of typhoon prediction is the prediction of typhoon track. In recent years many objective prediction models have been proposed, particularly the statistical-dynamical type has become comparatively the more effective one, e. g. the USA NHC-73, the Shanghai SD75 and the Zhejiang ZMI-80 have all proved to be superior to the pure statistical models in practice. In China, due to lack of展开更多
为了克服桥梁伸缩缝病害,考虑了桥梁上部结构、下部结构和基地土的共同作用,建立了半整体式桥台无伸缩缝桥的静力计算模型。以一座长100 m PC连续箱梁桥为例,对该桥在重力、车辆和季节性温度变化荷载作用下进行了弹性大变形分析,对相应...为了克服桥梁伸缩缝病害,考虑了桥梁上部结构、下部结构和基地土的共同作用,建立了半整体式桥台无伸缩缝桥的静力计算模型。以一座长100 m PC连续箱梁桥为例,对该桥在重力、车辆和季节性温度变化荷载作用下进行了弹性大变形分析,对相应的有伸缩缝桥和整体式桥台无伸缩缝桥分析结果进行了对比。结果表明:半整体式桥台无伸缩缝桥主梁的弯矩、剪力、挠度和下部结构的轴力与有伸缩缝桥接近,但主梁中出现了轴力,下部结构弯矩和剪力较有伸缩缝桥大,说明半整体式桥台无伸缩缝桥消除了伸缩缝的病害,结构整体刚度大,是一种有应用推广价值的桥型。展开更多
文摘Ⅰ. INTRODUCTION The crux of typhoon prediction is the prediction of typhoon track. In recent years many objective prediction models have been proposed, particularly the statistical-dynamical type has become comparatively the more effective one, e. g. the USA NHC-73, the Shanghai SD75 and the Zhejiang ZMI-80 have all proved to be superior to the pure statistical models in practice. In China, due to lack of
文摘为了克服桥梁伸缩缝病害,考虑了桥梁上部结构、下部结构和基地土的共同作用,建立了半整体式桥台无伸缩缝桥的静力计算模型。以一座长100 m PC连续箱梁桥为例,对该桥在重力、车辆和季节性温度变化荷载作用下进行了弹性大变形分析,对相应的有伸缩缝桥和整体式桥台无伸缩缝桥分析结果进行了对比。结果表明:半整体式桥台无伸缩缝桥主梁的弯矩、剪力、挠度和下部结构的轴力与有伸缩缝桥接近,但主梁中出现了轴力,下部结构弯矩和剪力较有伸缩缝桥大,说明半整体式桥台无伸缩缝桥消除了伸缩缝的病害,结构整体刚度大,是一种有应用推广价值的桥型。