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進(jìn)氣道燃料噴射氫內(nèi)燃機(jī)回火機(jī)理與控制研究
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國家高技術(shù)研究發(fā)展計劃(863計劃)資助項目(2006AA11A1B6);國家自然科學(xué)基金資助項目(51276019)


Backfire Mechanism and Control of PFI Hydrogen Internal Combustion Engine
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    摘要:

    建立了包含進(jìn)氣道和氣缸的氫內(nèi)燃機(jī)三維仿真模型,研究了進(jìn)氣道燃料噴射氫內(nèi)燃機(jī)不同轉(zhuǎn)速和負(fù)荷條件下的回火機(jī)理。提出了通過優(yōu)化噴氫相位,使低濃度混合氣在進(jìn)氣門打開時首先進(jìn)入氣缸,降低缸內(nèi)廢氣和熱點溫度,從而抑制回火的方法。仿真分析了不同轉(zhuǎn)速和負(fù)荷條件下噴氫相位對進(jìn)氣門處混合氣濃度和溫度的影響,得到了最優(yōu)的噴氫相位。經(jīng)試驗驗證,優(yōu)化的噴氫相位使氫內(nèi)燃機(jī)能夠在全工況內(nèi)達(dá)到或超過混合氣化學(xué)當(dāng)量燃空比無回火工作。

    Abstract:

    A 3-D simulation model including the inlet and the cylinder was built to study the backfire mechanism of PFI hydrogen internal combustion engines. A method controlling the backfire was put forward through optimizing the hydrogen injection angle. The low concentrated mixture gas was flow into the cylinder first after the intake valve opening, which can then lower the temperature of the exhaust gas and hot point inside the chamber. Based on the simulation model, the hydrogen injection angle influenced on the concentration and temperature of the mixture gas with the engine at different working speeds and conditions was investigated. The optimized hydrogen injection angle causing no backfire in all working conditions were found. It was proved by the experiment that the hydrogen internal combustion engine with the optimized hydrogen injection angle worked normally without backfire when the equivalent fuel air ratio of mixture gas reaching or even exceeding the stoichiometric fuel-air ratio within the speed range.

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段俊法,劉福水,孫柏剛.進(jìn)氣道燃料噴射氫內(nèi)燃機(jī)回火機(jī)理與控制研究[J].農(nóng)業(yè)機(jī)械學(xué)報,2013,44(3):1-5,37. Duan Junfa, Liu Fushui, Sun Baigang. Backfire Mechanism and Control of PFI Hydrogen Internal Combustion Engine[J]. Transactions of the Chinese Society for Agricultural Machinery,2013,44(3):1-5,37.

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  • 在線發(fā)布日期: 2013-02-25
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