Modelling of Dynamic Interactions in the Fuel Rail for the Aircraft Diesel Engine

The paper reports a computer model for simulating dynamic responses in fuel rail of aircraft diesel engine. The fuel system is designed for use in a two-stroke compression-ignition engine with opposite pistons. The methodology of building a fuel system model in the AVL Hydsim program and the results...

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Main Authors: Rafał Sochaczewski, Paweł Magryta
Format: Article
Language:English
Published: Society of Polish Mechanical Engineers and Technicians 2020-12-01
Series:Advances in Science and Technology Research Journal
Subjects:
Online Access:http://www.journalssystem.com/astrj/Modelling-of-dynamic-interactions-in-the-fuel-rail-for-the-aircraft-Diesel-engine,127168,0,2.html
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spelling doaj-202b2d1f94574abf8500d85cf9cf89972020-11-25T18:39:52ZengSociety of Polish Mechanical Engineers and TechniciansAdvances in Science and Technology Research Journal2080-40752299-86242020-12-0114416817610.12913/22998624/127168127168Modelling of Dynamic Interactions in the Fuel Rail for the Aircraft Diesel EngineRafał Sochaczewski0Paweł Magryta1Department of Thermodynamics, Fluid Mechanics and Aviation Propulsion Systems Lublin University of TechnologyDepartment of Thermodynamics, Fluid Mechanics and Aviation Propulsion Systems Lublin University of TechnologyThe paper reports a computer model for simulating dynamic responses in fuel rail of aircraft diesel engine. The fuel system is designed for use in a two-stroke compression-ignition engine with opposite pistons. The methodology of building a fuel system model in the AVL Hydsim program and the results of simulation studies are presented. Determination of dynamic phenomena in the fuel rail required the construction of a model of the entire supply system. It is a common rail system with a three-section positive displacement pump and electromagnetic fuel injectors. The system is also equipped with a PID regulator to maintain the present pressure in the fuel rail. For the purposes of the research, two structures of the fuel rail were developed. They differ in dimensions, spacing of the outlet ports and location of the high-pressure connection. The research allowed to determine the interactions between the geometry of the fuel rail and the supply method with the fuel pressure and injector mass flow rate. This will optimise the design of the fuel rail for the three-cylinder engine power supply system.http://www.journalssystem.com/astrj/Modelling-of-dynamic-interactions-in-the-fuel-rail-for-the-aircraft-Diesel-engine,127168,0,2.htmlmodelingdiesel enginecommon railtwo-stroke
collection DOAJ
language English
format Article
sources DOAJ
author Rafał Sochaczewski
Paweł Magryta
spellingShingle Rafał Sochaczewski
Paweł Magryta
Modelling of Dynamic Interactions in the Fuel Rail for the Aircraft Diesel Engine
Advances in Science and Technology Research Journal
modeling
diesel engine
common rail
two-stroke
author_facet Rafał Sochaczewski
Paweł Magryta
author_sort Rafał Sochaczewski
title Modelling of Dynamic Interactions in the Fuel Rail for the Aircraft Diesel Engine
title_short Modelling of Dynamic Interactions in the Fuel Rail for the Aircraft Diesel Engine
title_full Modelling of Dynamic Interactions in the Fuel Rail for the Aircraft Diesel Engine
title_fullStr Modelling of Dynamic Interactions in the Fuel Rail for the Aircraft Diesel Engine
title_full_unstemmed Modelling of Dynamic Interactions in the Fuel Rail for the Aircraft Diesel Engine
title_sort modelling of dynamic interactions in the fuel rail for the aircraft diesel engine
publisher Society of Polish Mechanical Engineers and Technicians
series Advances in Science and Technology Research Journal
issn 2080-4075
2299-8624
publishDate 2020-12-01
description The paper reports a computer model for simulating dynamic responses in fuel rail of aircraft diesel engine. The fuel system is designed for use in a two-stroke compression-ignition engine with opposite pistons. The methodology of building a fuel system model in the AVL Hydsim program and the results of simulation studies are presented. Determination of dynamic phenomena in the fuel rail required the construction of a model of the entire supply system. It is a common rail system with a three-section positive displacement pump and electromagnetic fuel injectors. The system is also equipped with a PID regulator to maintain the present pressure in the fuel rail. For the purposes of the research, two structures of the fuel rail were developed. They differ in dimensions, spacing of the outlet ports and location of the high-pressure connection. The research allowed to determine the interactions between the geometry of the fuel rail and the supply method with the fuel pressure and injector mass flow rate. This will optimise the design of the fuel rail for the three-cylinder engine power supply system.
topic modeling
diesel engine
common rail
two-stroke
url http://www.journalssystem.com/astrj/Modelling-of-dynamic-interactions-in-the-fuel-rail-for-the-aircraft-Diesel-engine,127168,0,2.html
work_keys_str_mv AT rafałsochaczewski modellingofdynamicinteractionsinthefuelrailfortheaircraftdieselengine
AT pawełmagryta modellingofdynamicinteractionsinthefuelrailfortheaircraftdieselengine
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