Study of cycle-by-cycle variations of natural gas direct injection combustion using a rapid compression machine

Author:

Huang Z1,Shiga S2,Ueda T3,Nakamura H2,Ishima T2,Obokata T2,Tsue M4,Kono M4

Affiliation:

1. Xi'an Jiaotong University School of Energy and Power Engineering Xian, People's Republic of China

2. Gunma University Department of Mechanical Systems Engineering Kiryu, Japan

3. Nissan Motor Company Ltd Engine Engineering Department Yokohama, Japan

4. University of Tokyo Department of Aeronautics and Astronautics Tokyo, Japan

Abstract

Cycle-by-cycle variations of natural gas direct injection (CNG DI) combustion were studied by using a rapid compression machine. Results show that CNG DI combustion can realize high combustion stability with less cycle-by-cycle variation in the maximum pressure rise, the maximum rate of pressure rise and the maximum rate of heat release at the given equivalence ratios. Mixture stratification and fast flame propagation with the aid of turbulence produced by the high speed fuel jet are considered to be responsible for these behaviours. Cycle-by-cycle variations in combustion durations and combustion products present higher magnitudes than those of maximum pressure rise and maximum rate of heat release. Cycle-by-cycle variations of CO and unburned CH4 show an interdependence with the variation of the late combustion duration, and the variation of NO x shows an interdependence with the variation of the rapid combustion duration. Cycle-by-cycle variations are found to be insensitive to the equivalence ratios in CNG DI combustion.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Aerospace Engineering

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