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VARIABLE ASYMMETRIC TURBINE FOR HEAVY DUTY TRUCK ENGINES

机译:重型卡车发动机的可变不对称涡轮

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Turbochargers with variable turbine geometry (VGT) are established in diesel engines for passenger cars because of the beneficial effect on transient operation. The variability permits the reduction of exhaust back pressure, resulting in lower fuel consumption. There are only a few applications in heavy duty truck engines due to increased mechanical complexity and vulnerability to failure. This paper presents a turbine concept with a simple variability developed for a heavy duty engine. The variability is achieved upstream of the rotor by changing the sectional area of the volute. This can be done through a rotationally movable ring which shifts the circumferential position of the volute tongues. These separate both scrolls of a double segment turbine and can be rotated by an electric actuator. The performance maps measured at the hot gas test stand show the large variability of the flow parameter and the high efficiency levels over the operating range of the variable asymmetric turbine (VAT). The flow field is computed by the use of 3D-CFD simulations in order to analyze the loss-generating mechanisms that occur within the machine. Test runs on an engine test stand demonstrate the high potential of the concept concerning reduction of fuel consumption and a wide scope of realizable EGR rates in order to reduce NO_x emissions in a cost-effective way. The resultant large mass flow variability allows the deletion of the waste gate and enables efficiency improvements.
机译:由于对瞬态运行的有益影响,在乘用车的柴油发动机中建立了具有可变涡轮几何形状(VGT)的涡轮增压器。可变性可以降低排气背压,从而降低燃油消耗。由于增加的机械复杂性和易损坏性,在重型卡车发动机中只有很少的应用。本文介绍了一种为重型发动机开发的具有简单可变性的涡轮机概念。通过改变蜗壳的截面积可以在转子上游实现可变性。这可以通过可旋转的环来实现,该环可移动蜗壳舌的圆周位置。这些分开的双段涡轮的两个涡旋,可以通过电动执行器旋转。在热气试验台上测得的性能图表明,在可变不对称涡轮机(VAT)的工作范围内,流量参数变化很大,效率水平很高。通过使用3D-CFD模拟来计算流场,以便分析机器内部发生的损耗产生机理。在发动机试验台上进行的试验证明了该概念在降低燃油消耗和实现可实现的EGR率方面的巨大潜力,以便以经济高效的方式减少NO_x排放。所产生的大的质量流量可变性允许删除废气门并提高效率。

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