Current research shows that the traditional shock control bump(SCB) can weaken the intensity of shock and better the transonic buffet performance. The author finds that when SCB is placed downstream of the shock, it...Current research shows that the traditional shock control bump(SCB) can weaken the intensity of shock and better the transonic buffet performance. The author finds that when SCB is placed downstream of the shock, it can decrease the adverse pressure gradient. This may prevent the shock foot separation bubble to merge with the trailing edge separation and finally improve the buffet performance. Based on RAE2822 airfoil, two types of SCB are designed according to the two different mechanisms. By using Reynolds-averaged Navier-Stokes(RANS) and unsteady Reynolds-averaged Navier-Stokes(URANS) methods to analyze the properties of RAE2822 airfoil with and without SCB, the results show that the downstream SCB can better the buffet performance under a wide range of freestream Mach number and the steady aerodynamics characteristic is similar to that of RAE2822 airfoil. The traditional SCB can only weaken the intensity of the shock under the design condition. Under the off-design conditions, the SCB does not do much to or even worsen the buffet performance. Indeed, the use of backward bump can flatten the leeward side of the airfoil, and this is similar to the mechanism that supercritical airfoil can weaken the recompression of shock wave.展开更多
The potential application of tuned liquid column damper (TLCD) for suppressing wind-induced vibration of long span bridges is explored in this paper.By installing the TLCD in the bridge deck,a mathematical model for t...The potential application of tuned liquid column damper (TLCD) for suppressing wind-induced vibration of long span bridges is explored in this paper.By installing the TLCD in the bridge deck,a mathematical model for the bridge-TLCD system is established.The governing equations of the system are developed by considering all three displacement components of the deck in vertical,lateral,and torsional vibrations,in which the interactions between the bridge deck,the TLCD,the aeroelastic forces,and the aerodynamic forces are fully reflected.Both buffeting and flutter analyses are carried out.The buffeting analysis is performed through random vibration approach,and a critical flutter condition is identified from flutter analysis.A numerical example is presented to demonstrate the control effectiveness of the damper and it is shown that the TLCD can be an effective device for suppressing wind-induced vibration of long span bridges,either for reducing the buffeting response or increasing the critical flutter wind velocity of the bridge.展开更多
为有效实现对斜拉桥多阶模态参与的抖振响应减振,研究基于H2性能的梯度优化法,实现在空间多点布置且对多阶模态频率调谐的分布式TMD(tuned mass damper)参数的同步和整体优化。建立能表达为闭环静力反馈控制的风荷载作用下斜拉桥与分布...为有效实现对斜拉桥多阶模态参与的抖振响应减振,研究基于H2性能的梯度优化法,实现在空间多点布置且对多阶模态频率调谐的分布式TMD(tuned mass damper)参数的同步和整体优化。建立能表达为闭环静力反馈控制的风荷载作用下斜拉桥与分布式TMD的系统模型;以H2范数为性能目标函数推导其对TMD参数的梯度矩阵,采用修正的BFGS算法求解分布式TMD参数的非凸优化问题。以南京长江三桥某施工阶段的结构非密频和密频两种状态,实现分布式TMD对斜拉桥抖振响应减振的参数优化和动力仿真,并与经典的单TMD设计方法对比,结果显示对分布式TMD参数优化方法的有效性,特别是在结构密频状态时体现了更高的减振效率。展开更多
文摘Current research shows that the traditional shock control bump(SCB) can weaken the intensity of shock and better the transonic buffet performance. The author finds that when SCB is placed downstream of the shock, it can decrease the adverse pressure gradient. This may prevent the shock foot separation bubble to merge with the trailing edge separation and finally improve the buffet performance. Based on RAE2822 airfoil, two types of SCB are designed according to the two different mechanisms. By using Reynolds-averaged Navier-Stokes(RANS) and unsteady Reynolds-averaged Navier-Stokes(URANS) methods to analyze the properties of RAE2822 airfoil with and without SCB, the results show that the downstream SCB can better the buffet performance under a wide range of freestream Mach number and the steady aerodynamics characteristic is similar to that of RAE2822 airfoil. The traditional SCB can only weaken the intensity of the shock under the design condition. Under the off-design conditions, the SCB does not do much to or even worsen the buffet performance. Indeed, the use of backward bump can flatten the leeward side of the airfoil, and this is similar to the mechanism that supercritical airfoil can weaken the recompression of shock wave.
基金the Hong Kong Polytechnic University and the Hong Kong Research Grant Council.
文摘The potential application of tuned liquid column damper (TLCD) for suppressing wind-induced vibration of long span bridges is explored in this paper.By installing the TLCD in the bridge deck,a mathematical model for the bridge-TLCD system is established.The governing equations of the system are developed by considering all three displacement components of the deck in vertical,lateral,and torsional vibrations,in which the interactions between the bridge deck,the TLCD,the aeroelastic forces,and the aerodynamic forces are fully reflected.Both buffeting and flutter analyses are carried out.The buffeting analysis is performed through random vibration approach,and a critical flutter condition is identified from flutter analysis.A numerical example is presented to demonstrate the control effectiveness of the damper and it is shown that the TLCD can be an effective device for suppressing wind-induced vibration of long span bridges,either for reducing the buffeting response or increasing the critical flutter wind velocity of the bridge.
文摘为有效实现对斜拉桥多阶模态参与的抖振响应减振,研究基于H2性能的梯度优化法,实现在空间多点布置且对多阶模态频率调谐的分布式TMD(tuned mass damper)参数的同步和整体优化。建立能表达为闭环静力反馈控制的风荷载作用下斜拉桥与分布式TMD的系统模型;以H2范数为性能目标函数推导其对TMD参数的梯度矩阵,采用修正的BFGS算法求解分布式TMD参数的非凸优化问题。以南京长江三桥某施工阶段的结构非密频和密频两种状态,实现分布式TMD对斜拉桥抖振响应减振的参数优化和动力仿真,并与经典的单TMD设计方法对比,结果显示对分布式TMD参数优化方法的有效性,特别是在结构密频状态时体现了更高的减振效率。