Performance Analysis on Variable Injectors to Improve the Internal Velocities and Flow Rates in a Fuel System for Natural Gas Vehicles

Author:

Kim Kwon Se1,Choi Doo Seuk1

Affiliation:

1. Kongju National University

Abstract

The present study has been attempted to systematically perform a visualizing analysis plan which can improve the flow rate, velocity and mass flow rate as a function of the size of the welding section in the injector as a key for the determination of the injection amount and time of the fuel (CH4) system for natural gas. As the setting conditions for the analysis, a minimum pressure of 2 bar and a maximum pressure of 8 bar were set to be the total pressure values in the case of the inlet, while 0 bar was set for opening drain to represent the state in the atmosphere in the case of the outlet. As a result, the characteristics with an increase in velocity could be affirmed as strong flow separation and eddy current were produced according to the model with a large size of welding section. An excellent performance with an improvement in the performance of velocity flow rate by about 40% could be affirmed in the model where the size of the welding section was designed to be 6 EA.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Radiation

Reference12 articles.

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2. A.M. Pourkhesalian, A.H. Shamekhi, F. Salimi, Alternative fuel and gasoline in an si engine: a comparative study of performance and emissions characteristics, Fuel, 89 (5) (2010), p.1056–1063.

3. Kwonse Kim, Dooseuk Choi, Optimized Pressure Determined in Accordance with Variable Plunger Stroke of Internal Injector NGV, Defect and Diffusion Forum, 307(2016), pp.41-51.

4. M. Kalam, H. Masjuki, An experimental investigation of high performance natural gas engine with direct injection, Energy, 36 (5) (2011), p.3563–3571.

5. Kwonse Kim, Dooseuk Choi, Study on distributing pressure and velocity on Exhaust Variable Valve Face of Back Pressure, Journal of the Korea Academia-Industrial cooperation Society (KAIS), 15 (4) (2014), pp.1-6.

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