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Effect of Fueling Control Parameters on Combustion and Emissions Characteristics of Diesel-Ignited Methane Dual-Fuel Combustion

机译:燃料控制参数对柴油点火甲烷双燃料燃烧燃烧和排放特性的影响

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Diesel-ignited dual-fuel (DIDF) combustion of natural gas (NG) is a promising strategy to progress the application of NG as a commercially viable compression ignition engine fuel. Port injection of gaseous NG applied in tandem with direct injection of liquid diesel fuel as an ignition source permits a high level of control over cylinder charge preparation, and therefore combustion. Across the broad spectrum of possible combustion conditions in DIDF operation, different fundamental mechanisms are expected to dominate the fuel conversion process. Previous investigations have advanced the understanding of which combustion mechanisms are likely present under certain sets of conditions, permitting the successful modeling of DIDF combustion for particular operating modes. A broader understanding of the transitions between different combustion modes across the spectrum of DIDF warrants further effort. In this investigation, a 2-litre single-cylinder research engine was operated in a variety of DIDF modes achieved through broad sweeps of fueling parameters. Through variations in the relative NG and diesel quantities, characterized using the global equivalence ratio (Φglobal) and pilot fuel ratio (Rpilot), a DIDF operating space was mapped for one engine speed. At each operating mode, defined by Φglobal and Rpilot, the timing and pressure of the diesel direct injection were varied. Through the identification of distinct and common features in apparent heat release rate (AHRR) profiles and engine-out emissions trends, regimes of the explored DIDF operation modes having common combustion mechanisms were identified and mapped in the Rpilot- Φglobal operating space.
机译:天然气(NG)的柴油点燃双燃料(DIDF)燃烧是一种有希望的策略,以进展NG作为商业上可行的压缩点火发动机燃料的应用。端口注入气态NG的串联施用,直接注入液体柴油燃料作为点火源,允许高水平的控制器对气缸电荷制备,因此燃烧。在DIDF运行中的广泛的可能燃烧条件下,预计不同的基本机制将主导燃料转换过程。以前的调查已经提出了对某些条件下可能存在的燃烧机制可能存在的理解,允许成功建模DIDF燃烧以进行特定的操作模式。对DIDF频谱的不同燃烧模式之间的过渡更广泛地了解进一步的努力。在这次调查中,通过广泛的加油参数实现了2升的单缸研究发动机,在各种DIDF模式下运行。通过相对NG和柴油量的变化,用全局等效比(φGlobal)和导燃燃料比(Rpilot)的特征,DIDF操作空间被映射到一个发动机速度。在每个操作模式下,由φGlobal和Rpilot定义,柴油直接注射的时序和压力变化。通过识别表观热释放速率(AHRR)型材的不同和共同特征和发动机排放趋势,鉴定了具有共同燃烧机制的探索DIDF操作模式的制度,并在RPILOT-φGlobal操作空间中映射。

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