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The Impact of Volute Aspect Ratio on the Performance of a Mixed Flow Turbine

机译:蜗壳纵横比对混流涡轮性能的影响

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Current trends in the automotive industry towards engine downsizing mean turbocharging now plays a vital role in engine performance. A turbocharger increases charge air density using a turbine to extract waste energy from the exhaust gas to drive a compressor. Most turbocharger applications employ a radial inflow turbine. However, mixed flow turbines can offer non-zero blade angles, reducing leading edge (LE) separation at low velocity ratios. The current paper investigates the performance of a mixed flow turbine with three different volute aspect ratio ( AR ) designs ( AR = 0.5, 1 and 2). With constant A/r (ratio of volute area to centroid radius), the AR = 0.5 volute design produced a 4.3% increase in cycle averaged mass flow parameter (MFP) compared to the AR = 2 design. For the purpose of performance comparison, it was necessary to manipulate the volute A/r ?¢????s to ensure constant MFP for aerodynamic similarity. With the volute A/r ?¢????s manipulated to ensure constant MFP for aerodynamic similarity, the maximum variation of cycle averaged normalized efficiency measured between the designs was 1.47%. Purely in the rotor region, the variation in normalized cycle averaged efficiency was 1%. The smallest tested volute aspect ratio showed a significant increase in volute loss while the AR s of 1 and 2 showed similar levels of loss. The smallest AR volute showed significant secondary flow development in the volute. The resulting variation in LE incidence was found to vary as a result.
机译:汽车行业目前朝着发动机小型化的趋势意味着涡轮增压现在对发动机性能起着至关重要的作用。涡轮增压器使用涡轮从排气中提取废气能量来驱动压缩机,从而提高增压空气密度。大多数涡轮增压器应用都采用径向流入涡轮机。但是,混流涡轮可以提供非零的叶片角,从而降低了低速比时的前缘(LE)分离。目前的论文研究了具有三种不同蜗壳纵横比(AR)设计(AR = 0.5、1和2)的混流式涡轮机的性能。在恒定的A / r(蜗壳面积与质心半径之比)的情况下,与AR = 2设计相比,AR = 0.5蜗壳设计的循环平均质量流量参数(MFP)增长了4.3%。为了进行性能比较,有必要对蜗壳A / r进行操纵以确保恒定的MFP以实现空气动力学相似性。为了确保空气动力学相似性而对蜗壳A / r进行控制以确保恒定的MFP,设计之间测得的循环平均归一化效率的最大变化为1.47%。仅在转子区域中,归一化循环平均效率的变化为1%。测试的最小蜗壳纵横比显示蜗壳损失显着增加,而AR s为1和2则显示相似的损失水平。最小的AR蜗壳在蜗壳中显示出明显的二次流发展。结果发现LE发生率的变化是变化的。

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