2017
DOI: 10.1051/matecconf/201710804011
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Decoupling Analysis on Pressure Fluctuation and Needle Valve Response for High Pressure Common Rail Injector

Abstract: In the process of multiple injections, the influence of different injections makes the controlling of cycle fuel injection quantity more difficult. The high pressure common rail (HPCR) simulation model is established in AMESim environment. Through the method of combining numerical simulation and experiment test, it is found that the strong coupling of pressure fluctuation and needle valve response is the fundamental reason, which leads to the fluctuation of main injection fuel quantity (MIFQ) with dwell time (… Show more

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“…Consequently, the pressure at the high-pressure tubing end can be considered to be equal to the nozzle-end pressure. This paper establishes the mathematical formulas for the diesel oil flow rate of fuel injectors' mathematical model as follows [16,27].…”
Section: Mathematical Model Of Fuel Injectorsmentioning
confidence: 99%
“…Consequently, the pressure at the high-pressure tubing end can be considered to be equal to the nozzle-end pressure. This paper establishes the mathematical formulas for the diesel oil flow rate of fuel injectors' mathematical model as follows [16,27].…”
Section: Mathematical Model Of Fuel Injectorsmentioning
confidence: 99%