Modeling Injection And Ignition In Direct Injection Natural Gas Engines

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Modeling Injection and Ignition in Direct Injection Natural Gas Engines

Modeling Injection and Ignition in Direct Injection Natural Gas Engines
Author :
Publisher :
Total Pages : 494
Release :
ISBN-10 : 0494578548
ISBN-13 : 9780494578544
Rating : 4/5 (544 Downloads)

Book Synopsis Modeling Injection and Ignition in Direct Injection Natural Gas Engines by : Xu (Stewart). Cheng

Download or read book Modeling Injection and Ignition in Direct Injection Natural Gas Engines written by Xu (Stewart). Cheng and published by . This book was released on 2008 with total page 494 pages. Available in PDF, EPUB and Kindle. Book excerpt: With increasing concerns about the harmful effects of conventional liquid fossil fuel emissions, natural gas has become a very attractive alternative fuel to power prime movers and stationary energy conversion devices. This research studies the injection and ignition numerically for natural gas (mainly methane) as a fuel applied to diesel engine.Natural gas injector and glow plug ignition enhancement are two of the most technical difficulties for direct injection natural gas engine design. This thesis models the natural gas injector, and studies the characteristics of the internal flow in the injector and natural gas jet in the combustion chamber during the injection process. The poppet valve model and pintle valve model are the first reported models to simulate the natural gas injector to improve the traditional velocity and pressure boundary conditions.This thesis also successfully models the glow plug assisted natural gas ignition and combustion processes by developing a glow plug discretized model and a novel virtual gas sub-layer model. Glow plug discretized model can describe the transient heat transfer, and adequately represents the thin layers of heat penetration and the local temperature difference due to the cold gas jet impingement. The virtual gas sub-layer model considers complicated physical processes, such as chemical reaction, heat conduction, and mass diffusion within the virtual sub-layers without significantly increasing computational time and load.KIVA-3V CFD code was chosen to simulate the fluid flow. Since the KIVA-3V is designed specifically for engine research application with conventional liquid fuels, many modifications have been implemented to facilitate this research.


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