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基于扩展有限元法的钢桥面横隔板弧形切口疲劳裂纹扩展特性研究
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作者 向泽 刘力 祝志文 《桥梁建设》 EI CSCD 北大核心 2024年第3期46-53,共8页
为了解正变异性钢桥面板横隔板弧形切口疲劳开裂的规律,以某跨径350 m的独塔单跨钢箱梁自锚式悬索桥为背景,基于扩展有限元法建立纵肋-横隔板弧形切口多尺度裂纹扩展数值模型,求解弧形切口在轮载作用下的应力强度因子,分析轮载-热残余... 为了解正变异性钢桥面板横隔板弧形切口疲劳开裂的规律,以某跨径350 m的独塔单跨钢箱梁自锚式悬索桥为背景,基于扩展有限元法建立纵肋-横隔板弧形切口多尺度裂纹扩展数值模型,求解弧形切口在轮载作用下的应力强度因子,分析轮载-热残余应力耦合作用下的疲劳裂纹扩展形态和特性。结果表明:当顺桥向车轮作用于弧形切口正上方时,应力强度因子急剧增大,基于该响应曲线可以识别疲劳荷载模型的轴组,但无法识别轴组内的单轴。弧形切口切向热残余拉应力峰值达到341.1 MPa,使得轮载作用下的压应力幅转换为拉应力幅,裂纹扩展方向与实桥疲劳裂纹的扩展形态基本吻合。由于弧形切口处于复杂的三维变形状态,以面内变形为主,因而弧形切口为Ⅰ型断裂主导的Ⅰ-Ⅱ-Ⅲ型复合裂纹扩展模式,裂纹扩展速率与应力强度因子幅均随着裂纹扩展呈现出先增大后减小的趋势。 展开更多
关键词 正交异性钢桥面板 隔板 弧形切口 疲劳 裂纹 应力强度因子 热残余应力 扩展有限元法
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进行“数学猜想”的几种方法
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作者 祝朝富 《数学教学》 北大核心 1995年第1期21-23,共3页
牛顿曾说:“没有大胆的猜想,就做不出伟大的发现.“波利亚曾说:要成为一个好的数学家……,你必须首先是一个好的猜想家.”虽然数学猜想是一种直觉判断,但决不是盲目乱猜,要猜得准,就要总结猜想方法,提高猜想能力.
关键词 数学猜想 猜想法 类比猜想 猜想方法 周期函数 归纳猜想 隔板模 直觉判断 波利亚 猜想能力
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Velocity Profiles between Two Baffles in a Horizontal Circular Tube 被引量:1
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作者 Tae-Hyun Chang Hae-Soo Lee +2 位作者 Keon-Je Oh Doeg Hee Doh Chang-Hoan Lee 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第6期544-551,共8页
The shell and tube heat exchanger is an essential part of a power plant for recovering heat transfer between the feed water of a boiler and the wasted heat.The baffles are also an important element inside the heat exc... The shell and tube heat exchanger is an essential part of a power plant for recovering heat transfer between the feed water of a boiler and the wasted heat.The baffles are also an important element inside the heat exchanger.Internal materials influence the flow pattern in the bed.The influence of baffles in the velocity profiles was observed using a three-dimensional particle image velocimetry around baffles in a horizontal circular tube.The velocity of the particles was measured before the baffle and between them in the test tube.Results show that the flows near the front baffle flow were parallel to the vertical wall,and then concentrate on the upper opening of the front baffle.The flows circulate in the front and rear baffles.These flow profiles are related to the Reynolds number(Re) or the flow intensity.The velocity profiles at lower Re number showed a complicated mixing,concentrating on the lower opening of the rear baffle as front wall.Swirling flow was employed in this study,which was produced using tangential velocities at the inlet.At the entrance of the front baffle,the velocity vector profiles with swirl were much different from that without swirl.However,velocities between two baffles are not much different from those without swirl. 展开更多
关键词 BAFFLE Shell and tube Tangential inlet SWIRL Particle image velocimetry
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