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厚度阶梯式改变圆柱壳体在均匀外部压力作用下的屈曲分析
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作者 谌磊 j.m.rotter +1 位作者 彭奕亮 杨光 《工业建筑》 CSCD 北大核心 2013年第8期125-132,共8页
厚度呈阶梯式改变圆柱壳体结构在工程实践中有着广泛的应用,例如垂直安放的各种容器和筒仓结构。这类结构在空置或部分空置时,在外部压力的作用下易发生屈曲破坏。由于壳体复杂的厚度变化形式,屈曲模态可能有多种形式,如何准确地判断壳... 厚度呈阶梯式改变圆柱壳体结构在工程实践中有着广泛的应用,例如垂直安放的各种容器和筒仓结构。这类结构在空置或部分空置时,在外部压力的作用下易发生屈曲破坏。由于壳体复杂的厚度变化形式,屈曲模态可能有多种形式,如何准确地判断壳体的屈曲模态是此类结构设计时的一个难题。提出一种新的方法——"加权平均厚度方法",这种方法可以对任何厚度阶梯式改变的短、中等长度圆柱壳体结构进行稳定性分析。用此方法得到的结果与利用有限元软件ABAQUS得到的精确结果以及用当前欧洲规范得到的结果进行对比,结果表明,"加权平均厚度方法"可以对厚度阶梯式改变的短、中等长度圆柱壳体在外部均匀压力作用下的屈曲强度及屈曲模态进行非常准确的评估。 展开更多
关键词 圆柱壳体 筒仓 厚度阶梯式改变圆柱壳体 外部压力 屈曲
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Prediction of flow patterns during silo discharges using a finite element approach and its preliminary experimental verification 被引量:16
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作者 S.Ding H.Li +1 位作者 J.Y.Ooi j.m.rotter 《Particuology》 SCIE EI CAS CSCD 2015年第1期42-49,共8页
Obtaining a reliable discharge of particulate solids from a storage silo is a prerequisite to securing oper- ational adequacy in solids handling processes. If a silo is poorly designed, an unreliable interrupted disch... Obtaining a reliable discharge of particulate solids from a storage silo is a prerequisite to securing oper- ational adequacy in solids handling processes. If a silo is poorly designed, an unreliable interrupted discharge often occurs. In this study, an in-house finite element (FE) program was modified to predict the particulate solids flow patterns during discharges from silos, and the effect of a double-cone insert on such flow patterns. In FE modeling, a Eulerian approach was adopted with an assumption of steady-state flow-a state that greatly facilitated investigations on the effects of double-cone inserts on the flow of particulate solids. Predictions were carried out on whether the discharge was in mass flow or funnel flow, associated with the inclination angle of the silo's hopper. Predicted results were in agreement with the Jenike Chart, and proved that an upper lateral pressure ratio value gave a better critical hopper half angle to achieve mass flow (EN 1991-4, 2006). The shape and size of the stagnant zone were further discussed to address the flow channel boundary between the flowing and static solids if the discharge was in a funnel pattern. Results also showed the effects of a double-cone insert on the flow patterns which con- verted silos from funnel flow to mass flow up to a certain hopper inclination angle and would improve the flow pattern even for shallower angles. Experiments were carried out to verify some of the predicted results. Some qualitative comparisons were made between the predicted results and experimental mea- surements, which indicated that further efforts are needed in predicting the shape of the stagnant zone (flow channel boundary) during funnel flow discharges. 展开更多
关键词 Discharge pattern Flow boundary Double-cone insert FE analysis Preliminary verification
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