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MIXED FLOW TURBINES: INLET AND EXIT FLOW UNDER STEADY AND PULSATING CONDITIONS

机译:混合流动涡轮机:入口和恒定脉动条件下的出口流动

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The performance and detailed flow characteristics of a high pressure ratio mixed flow turbine has been investigated under steady and pulsating flow conditions. The rotor has been designed to have a nominal constant incidence (based on free vortex flow in the volute) and it is for use in an automotive high speed diesel turbocharger. The results indicated a departure from the quasi-steady analysis commonly used in turbocharger turbine design. The pulsations from the engine have been followed through the inlet pipe and around the volute; the pulse has been shown to propagate close to the speed of sound and not according to the bulk flow velocity as stated by some researchers. The flow entering and exiting the blades has been quantified by a laser Doppler velocimetry system. The measurements were performed at a plane 3.0 mm ahead of the rotor leading edge and 9.5 mm behind the rotor trailing edge. The turbine test conditions corresponded to the peak efficiency point at 29,400 and 41,300 rpm. The results were resolved in a blade-to-blade sense to examine in greater detail the nature of the flow at turbocharger representative condition-s. A correlation between the combined effects of incidence and exit flow angle with the isentropic efficiency has been shown. The unsteady flow characteristics have been investigated at two flow pulse frequencies, corresponding to internal combustion engine speeds of 1600 and 2400 rpm. Four measurement planes have been investigated: one in the pipe feeding the volute, two in the volute (40° and 130° downstream of the tongue) and one at the exit of the turbine. The pulse propagation at these planes has been investigated; the effect of the different planes on the evaluation of the unsteady isentropic efficiency is shown to be significant. Overall, the unsteady performance efficiency results indicated a significant departure from the corresponding steady performance, in accordance with the inlet and exit flow measurements.
机译:在稳定和脉动的流动条件下研究了高压比混流涡轮机的性能和详细流动特性。转子设计成具有标称恒定入射(基于蜗壳中的自由涡流),并且它用于汽车高速柴油涡轮增压器。结果表明,涡轮增压器涡轮设计常用的准稳态分析。来自发动机的脉动一直穿过入口管和蜗壳周围;脉冲已经示出根据如由一些研究者指出总体流动速度传播接近音速的速度,而不是。进入和离开刀片的流动已经通过激光多普勒速度系统量化。测量在3.0mm的前方前缘的平面上进行,在转子后缘后面的9.5mm。涡轮试验条件与29,400和41,300 rpm的峰值效率相对应。结果在叶片到叶片感应中得到了解,以便更详细地检查涡轮增压器代表条件-S的流动性质。已经示出了利用熵效率的发射率和出口流动角度的组合效果之间的相关性。已经在两个流量脉冲频率下研究了不稳定的流动特性,对应于1600和2400rpm的内燃机速度。已经研究了四个测量平面:一个在管道中的一个,在蜗壳中喂食蜗壳(舌下下游40°和130°),在涡轮的出口处。已经研究了这些平面上的脉冲传播;不同平面对不稳定等熵效率评估的影响被认为是显着的。总的来说,不稳定的性能效率结果表明,根据入口和退出流量测量,从相应的稳态性能出发。

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