首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Fluid flow and static structural analysis of E-glass versus S2-glass fiber/epoxy reinforced pipe joints
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Fluid flow and static structural analysis of E-glass versus S2-glass fiber/epoxy reinforced pipe joints

机译:E-玻璃的流体流动和静态结构分析与S2-玻璃纤维/环氧加强管接头

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Glass fiber/epoxy reinforced composite pipes are regularly used in the field were circulation of extreme pressured chemical fluids, transfer of industrial wastes, oil and natural gas transmission occurs. In oil and natural gas industry, the heavy crude oil transporting pipe lines are exposed to unsteady pressure waves which generate rise and fall stress levels in the pipes. Computational Fluid Dynamics Analysis was implemented using Ansys 15.0 Fluent software?to investigate the consequences of these pressure waves on some detailed joints in the pipes. Relating on the type of heavy crude oil being employed, the flow behaviour stated a significant degree of stress levels in evident connecting joints, causing the joints to become weak over a sustained period of usage. In this analysis comparison of various pipe joints was done by using different material and the end result of the stress volume in the pipe joints were checked so that the life of the pipe joints can be optimized by the change of material.
机译:玻璃纤维/环氧增强复合材料管道经常用于该领域是极端压力的化学品流体的循环,产业废物的转移,油和天然气传输发生。在石油和天然气工业中,大型原油输送管线暴露于不稳定的压力波,在管道中产生上升和下降应力水平。使用ANSYS 15.0流畅的软件实现了计算流体动力学分析?研究这些压力波对管道中一些详细的关节的后果。关于采用重型原油的类型,流动行为在明显的连接接头中规定了显着程度的应力水平,导致关节在持续使用期内变弱。在这种分析中,通过使用不同的材料进行各种管道的比较,并检查管接头中应力体积的最终结果,以便通过材料的变化优化管接头的寿命。

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