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Unsteady compressible boundary layer flow over a circular cone near aplane of symmetry

机译:非对称可压缩边界层在对称平面附近的圆锥上流动

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摘要

An analysis has been performed to study the unsteady laminar compressible boundary layer governing the hypersonic flow over a circular cone at an angle of attack near a plane of symmetry with either in flow or out flow in the presence of suction. The flow is assumed to be steady at time t= 0 and at t 0 it becomes unsteady due to the time-dependent free stream velocity which varies arbitrarily with time. The nonlinear coupled parabolic partial differential equations under boundary layer approximations have been solved by using an implicit finite-difference method. It is found that suction plays an important role in stabilising the fluid motion and in obtaining unique solution of the problem. The effect of the cross flow parameter is found to be more pronounced on the cross flow surface shear stress than on the streamwise surface shear stress and surface heat transfer.Beyond a certain value of the cross flow parameter overshoot in the cross flow velocity occurs and the magnitude of this overshoot increases with the cross flow parameter. The time variation of the streamwise surface shear stress is more significant than that of the cross flow surface shear stress and surface heat transfer. The suction and the total enthalpy at the wall exert strong infuence on the streamwise and cross flow surface shear stresses and the surface heat transfer except that the effect of suction on the cross flow surfaces hear stress is small.
机译:已经进行了分析以研究存在于吸力的情况下流入或流出时在对称平面附近的迎角下控制圆锥上的高超音速流动的不稳定的层状可压缩边界层。假定流量在时间t = 0时是稳定的,而在t> 0时,由于随时间变化的随时间变化的自由流速度变得不稳定。利用隐式有限差分法求解了边界层近似下的非线性耦合抛物线偏微分方程。发现吸力在稳定流体运动和获得问题的独特解决方案中起着重要作用。发现错流参数对错流表面剪应力的影响比对流向表面切应力和表面传热的影响更为明显。除了错流参数的某个值超过错流速度之外,还会发生错流。此过冲的幅度随错流参数的增加而增加。流向表面切应力的时间变化比错流表面切应力和表面传热的时间变化更大。壁上的吸力和总焓对流向和横流表面的切应力和表面热传递产生强烈的影响,除了在横流表面上的吸力的影响很小。

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