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Numerical Laser Energy Deposition on Supersonic Cavity Flow and Sensor Placement Strategies to Control the Flow

机译:超音速腔流量和传感器放置策略的数值激光能量沉积控制流量

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In this study, the impact of laser energy deposition on pressure oscillations and relative sound pressure levels (SPL) in an open supersonic cavity flow is investigated. Laser energy with a magnitude of 100 mJ is deposited on the flow just above the cavity leading edge and up to 7 dB of reduction is obtained in the SPL values along the cavity back wall. Additionally, proper orthogonal decomposition (POD) method is applied to thex-velocity data obtained as a result of computational fluid dynamics simulations of the flow with laser energy deposition. Laser is numerically modeled using a spherically symmetric temperature distribution. By using the POD results, the effects of laser energy on the flow mechanism are presented. A one-dimensional POD methodology is applied to the surface pressure data to obtain critical locations for the placement of sensors for real time flow control applications.
机译:在该研究中,研究了激光能量沉积对开放式腔流动中的压力振荡和相对声压水平(SPL)的影响。具有100mJ幅度的激光能量沉积在刚刚上方的流动上方,并且在沿腔后壁的SPL值中获得高达7 dB的减少。另外,适当的正交分解(POD)方法应用于由于具有激光能量沉积的流量的计算流体动力学模拟而获得的X速度数据。使用球形对称温度分布在数模上建模激光。通过使用POD结果,提出了激光能量对流动机构的影响。一维POD方法被应用于表面压力数据,以获得用于在实时流量控制应用的传感器的放置的关键位置。

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