Hence, the fuel injection discharge curve is
changed from semi-triangular to rectangular which is usual in common rail fuel
injection system. Injection pressure with respect to amount of injected fuel
and nozzle hole diameter are changed. Injection pressure is calculated by an
experimental equation which is developed for heavy duty diesel engines with
common rail fuel injection system. Power upgrade for 1000 and 2000 bar
injection pressures are discussed. For 1000 bar injection pressure with 188 mg
injected fuel and 3 mm nozzle hole diameter, power is upgraded about 19% in
comparison to original state which is semi-triangular discharge curve with 139
mg injected fuel and 3 mm nozzle hole diameter, with no special change in
cylinder pressure. On the other hand, both the NOX and the Soot emissions
decreased about 30 and 6%, respectively. Compared with the original state, in
the case of 2000 bar injection pressure, with injected fuel and nozzle
diameter, 196 mg and 2.6 mm respectively, the power is upgraded about 22%,
whereas cylinder pressure has been fixed, and the NOX and the Soot emissions
are decreased to 36 and 20%, respectively.
Website: http://www.arjonline.org/engineering/american-research-journal-of-mechanical-and-automation-engineering/
Website: http://www.arjonline.org/engineering/american-research-journal-of-mechanical-and-automation-engineering/
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