Understanding the Twin Scroll Turbine: Flow Similarity

Author:

Brinkert Nils1,Sumser Siegfried1,Schulz Achmed2,Weber Siegfried1,Fieweger Klaus1,Bauer Hans-Jo¨rg2

Affiliation:

1. Daimler AG, Stuttgart, Germany

2. Karlsruhe Institute of Technology, Karlsruhe, Germany

Abstract

The current study investigates the flow conditions of a twin scroll asymmetric turbine. This is motivated by the operating conditions of the turbine at a heavy-duty reciprocating internal combustion engine with exhaust gas recirculation. The flow conditions of the turbine at the engine can be described best with the turbine scroll interaction map. Standard hot gas measurements of a turbocharger turbine are presented and discussed. Due to the strong interaction of the turbine scrolls, further hot gas measurements are performed at partial admission conditions. The turbine inlet conditions are analysed experimentally, in order to characterize the turbine performance. The turbine scroll pressure ratio is varied, leading to unequal twin turbine admission conditions. The flow behaviour is analysed regarding its ability for further extrapolation. Beyond scroll pressure ratio variations, unequal temperature admission conditions were studied. A way of characterizing the representative turbine inlet temperature, regarding the reduced turbine speed, is presented. The different scroll parameter ratios are evaluated regarding their capability of describing flow similarity under different unequal turbine admission conditions. In this content, turbine scroll Mach number ratio, velocity ratio and mass flow ratio are assessed. Furthermore, a generic representation of the turbine flow conditions at the engine is presented, based on standard turbine performance maps.

Publisher

ASMEDC

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Hybrid Experimental-CFD Mapping Approach for Twin-Entry Turbo Turbine;SAE Technical Paper Series;2023-10-31

2. Simulation of a Combined Nozzled and Nozzleless Twin-Entry Turbine for Improved Efficiency;Journal of Engineering for Gas Turbines and Power;2019-03-11

3. Trennungsverhalten zweiflutiger Turbinen bei aufgeladenen Ottomotoren;MTZ - Motortechnische Zeitschrift;2013-09-04

4. 3D CFD Simulation of Twin Entry Turbochargers in an Engine Environment;High Performance Computing in Science and Engineering ‘13;2013

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