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Nonlinear turbulence models for predicting strong curvature effects
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作者 徐晶磊 马晖扬 黄宇宁 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2008年第1期31-42,共12页
Prediction of the characteristics of turbulent flows with strong streamline curvature, such as flows in turbomachines, curved channel flows, flows around airfoils and buildings, is of great importance in engineering a... Prediction of the characteristics of turbulent flows with strong streamline curvature, such as flows in turbomachines, curved channel flows, flows around airfoils and buildings, is of great importance in engineering applications and poses a very practical challenge for turbulence modeling. In this paper, we analyze qualitatively the curvature effects on the structure of turbulence and conduct numerical simulations of a turbulent Uduct flow with a number of turbulence models in order to assess their overall performance. The models evaluated in this work are some typical linear eddy viscosity turbulence models, nonlinear eddy viscosity turbulence models (NLEVM) (quadratic and cubic), a quadratic explicit algebraic stress model (EASM) and a Reynolds stress model (RSM) developed based on the second-moment closure. Our numerical results show that a cubic NLEVM that performs considerably well in other benchmark turbulent flows, such as the Craft, Launder and Suga model and the Huang and Ma model, is able to capture the major features of the highly curved turbulent U-duct flow, including the damping of turbulence near the convex wall, the enhancement of turbulence near the concave wall, and the subsequent turbulent flow separation. The predictions of the cubic models are quite close to that of the RSM, in relatively good agreement with the experimental data, which suggests that these models may be employed to simulate the turbulent curved flows in engineering applications. 展开更多
关键词 curvature effect nonlinear eddy viscosity turbulence model Reynolds stressmodel
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大芯径光纤温度特性研究
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作者 马洪虎 王金忠 +3 位作者 Alhadi Mohammed Alarabi Abakar 杨明超 赵霞 刘礼华 《激光与光电子学进展》 CSCD 北大核心 2016年第5期213-218,共6页
利用高低温设备实验研究大芯径光纤在-100~100℃温度范围内温度对大芯径光纤传输损耗的影响。实验结果表明,大芯径光纤在光纤传输第1窗口(850nm波段)传输损耗系数随着温度随机波动,在整个温度区间内其传输损耗系数在2.543dB/km^4.237dB... 利用高低温设备实验研究大芯径光纤在-100~100℃温度范围内温度对大芯径光纤传输损耗的影响。实验结果表明,大芯径光纤在光纤传输第1窗口(850nm波段)传输损耗系数随着温度随机波动,在整个温度区间内其传输损耗系数在2.543dB/km^4.237dB/km范围内波动;研究还发现,经过高低温循环实验测试后,光纤纤芯与包层处未产生顺磁性缺陷,说明在此温度范围内光纤化学键未发生断键情况。通过建立相应的应力模型解释了大芯径光纤在高低温两端传输损耗系数波动较大的原因,并提出了减少温度对大芯径光纤传输损耗影响的相应措施。 展开更多
关键词 光纤光学 高低温循环 大芯径光纤 传输损耗系数 应力模型
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