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首页> 外文期刊>Journal of Thermal Engineering >An Investigation of Effect of Control Jets Location and Blowing Pressure Ratio to Control Base Pressure in Suddenly Expanded Flows
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An Investigation of Effect of Control Jets Location and Blowing Pressure Ratio to Control Base Pressure in Suddenly Expanded Flows

机译:对控制喷射位置和吹气比突然扩大流动控制基础压力影响的研究

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The drag force is an essential factor in any projectile, from road vehicles to rocket or aircraft. The total drag includes skin friction drag, wave drag, and base drag. The base drag is the drag due to low pressure in the base region of the projectile. In the case of suddenly expanded flows, due to the sudden expansion of flow from the nozzle into the enlarged duct, the low pressure is created in the base region of the enlarged tube, which results in base drag and hence overall thrust reduced. In this paper, Computational Fluid Dynamic (CFD) analysis is used to analyze the effect of secondary air blowing jets called control jets to control base pressure in the base region of suddenly enlarged duct. These control jets are placed at different Pitch Circle Diameters (PCD) on the base face of the enlarged pipe. The objective of this work is to increase the base pressure up to atmospheric pressure and hence reduces the base drag. Mach number 3.0 is considered for analysis. The CFD analysis is done for different combinations of Area Ratios (AR) (2, 5 and 8), Nozzle Pressure Ratios (NPR) (2, 5 and 8), and PCD (d1, d2, and d3). Further analysis is done for different air blowing pressure ratios (BPR) to optimize air blowing pressure. The analysis results are plotted for different area ratios, nozzle pressure ratios, and PCD of control jets. By observing results, it can be concluded that the base pressure is strongly influenced by AR, NPR, and PCD of control jets. The air blowing pressure should be optimum to save energy, and the optimum values can be selected from the results.
机译:阻力是任何射弹的重要因素,从道路车辆到火箭或飞机。总拖动包括皮肤摩擦拖动,波拖动和基本拖动。基本拖动是由于射弹基区域的低压导致的拖动。在突然膨胀的流动的情况下,由于从喷嘴流出的流动突然膨胀到扩大管道,在放大管的基部区域中产生低压,从而导致基础拖动,因此整体推力降低。在本文中,计算流体动态(CFD)分析用于分析所谓控制射流的二次空气吹气喷射器的效果,以控制突然扩大管道的基础区域中的基础压力。这些控制射流放置在放大管的基面上的不同间距圆形直径(PCD)。这项工作的目的是将基础压力提高到大气压,因此减少了基础阻力。 Mach Number 3.0被认为是分析。 CFD分析是针对面积比(AR)(2,5和8)的不同组合,喷嘴压力比(NPR)(2,5和8)和PCD(D1,D2和D3)的不同组合进行。对不同的空气吹风压力比(BPR)进行进一步分析,以优化吹气压力。分析结果绘制不同的面积比,喷嘴压力比和控制喷射器的PCD。通过观察结果,可以得出结论,基础压力受到控制喷射器的AR,NPR和PCD的强烈影响。吹气压力应最佳以节省能量,并且可以从结果中选择最佳值。

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