3D simulation of a ballistic direct injection cycle for the assessment of fuel property effects on cavitating injector internal flow dynamics and primary breakup

Author:

Schwarz PhilipORCID,Blume MartinORCID,Weiß Lukas,Wensing Michael,Skoda Romuald

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference98 articles.

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2. Coupled simulation of nozzle flow and spray formation using diesel and biodiesel for CI engine applications;Battistoni,2012

3. Large-Eddy simulation of turbulent, cavitating fuel flow inside a 9-hole Diesel injector including needle movement;Örley;Int J Engine Res,2017

4. Comparative study of the internal flow in diesel injection nozzles at cavitating conditions at different needle lifts with steady and transient simulations approaches;Salvador;Proc Inst Mech Eng D,2018

5. Zooming into primary breakup mechanisms of high-pressure automotive sprays;Kirsch,2017

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