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沥青混合料SPT重复荷载试验评价指标研究 被引量:4
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作者 向晋源 孙杰 朱湘 《公路交通技术》 2009年第4期52-55,共4页
通过对简单性能试验(SPT)试验指标(动态模量|E*|、流变时间Ft和流变次数Fn)的分析及试验结果的处理,发现Fn受取样间隔不同而变化,具有不稳定性,作为点指标,具有不合理性。新评价指标应变率SR和理论Fn与不同混合料动稳定度变化规律一致,... 通过对简单性能试验(SPT)试验指标(动态模量|E*|、流变时间Ft和流变次数Fn)的分析及试验结果的处理,发现Fn受取样间隔不同而变化,具有不稳定性,作为点指标,具有不合理性。新评价指标应变率SR和理论Fn与不同混合料动稳定度变化规律一致,可用于评价SPT试验。新指标是由粘弹性损伤力学模型通过origin7.5软件拟合得到的,不受试验和试件误差的影响,值得推广。 展开更多
关键词 SPT试验指标 粘弹性损伤力学模型 origin7.5 应变率 理论流动数
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Wave Interaction with Dual Circular Porous Plates 被引量:2
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作者 Arpita Mondal R. Gayen 《Journal of Marine Science and Application》 CSCD 2015年第4期366-375,共10页
In this paper we have investigated the reflection and the transmission of a system of two symmetric circular-arc-shaped thin porous plates submerged in deep water within the context of linear theory. The hypersingular... In this paper we have investigated the reflection and the transmission of a system of two symmetric circular-arc-shaped thin porous plates submerged in deep water within the context of linear theory. The hypersingular integral equation technique has been used to analyze the problem mathematically. The integral equations are formulated by applying Green's integral theorem to the fundamental potential function and the scattered potential function into a suitable fluid region, and then using the boundary condition on the porous plate surface. These are solved approximately using an expansion-cure-collocation method where the behaviour of the potential functions at the tips of the plates have been used. This method ultimately produces a very good numerical approximation for the reflection and the transmission coefficients and hydrodynamic force components. The numerical results are depicted graphically against the wave number for a variety of layouts of the arc. Some results are compared with known results for similar configurations of dual rigid plate systems available in the literature with good agreement. 展开更多
关键词 water wave scattering circular-arc-shaped plates hypersingular integral equation Green's integral theorem reflection coefficient energy identity hydrodynamic force
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