首页> 外文会议>ASME Internal Combustion Engine Division technical conference >EFFECTS OF AMORPHOUS TI-AL-B NANOPOWDER ADDITIVES ON COMBUSTION IN A SINGLE-CYLINDER DIESEL ENGINE
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EFFECTS OF AMORPHOUS TI-AL-B NANOPOWDER ADDITIVES ON COMBUSTION IN A SINGLE-CYLINDER DIESEL ENGINE

机译:无定形Ti-Al-B纳米粉末添加剂对单缸柴油发动机燃烧的影响

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Energetic nanoparticles have shown promise as additives to liquid hydrocarbon fuels due to their high specific surface area, high energy content, and catalytic capability. Novel amorphous reactive mixed-metal nanopowders (RMNPs) containing Ti, Al, and B, synthesized via a sonochemical reaction, have been developed at the Naval Research Laboratory. These materials have higher energy content than commercial nano-aluminum (nano-Al), making them potentially useful as energy-boosting fuel components rather than simply catalytic additives. This work examines the combustion behavior of these RMNPs in a small, single-cylinder, 4-stroke diesel engine (Yanmar L48V). Fuel formulations included varying fractions of RMNPs, up to 4 wt. %, suspended in jet fuel JP-5. Comparative experiments also were conducted with equivalent suspensions of nano-Al in JP-5. For each fuel formulation, with the engine operating at constant speed of 3000 RPM, load was varied across its full range. At each load, cylinder pressure data were recorded for 30 seconds (750 cycles) to enable determination of important combustion characteristics. Although differences were small, both nano-Al and RMNPs resulted in shorter ignition delays, retarded peak pressure locations, decreased maximum rates of heat release, and increased burn durations. In addition, a similar but larger engine (Yanmar L100V) was used to examine fuel consumption and emissions for a suspension of 8 wt. % RMNPs in JP-5 (and 8 wt. % nano-Al for comparison). The engine was connected to a genset operating at a constant speed of 3600 RPM and constant load with nominal gIMEP (gross indicated mean effective pressure) of 6.5 bar. Fuel consumption rate was determined from time required to consume 175 mL of each fuel formulation, while emissions levels were recorded once per minute during that time. Unfortunately, combustion data and visual inspection of the injector indicated that RMNPs led to significant deposits on the injector tip and in and around the orifices, which had a negative impact on both fuel consumption rate and emissions. The engine stalled after four minutes of operation with the nano-Al-Iaden fuel, apparently due to clogging at the bottom of the fuel reservoir. It was concluded that particle settling in the fuel reservoir and particle clogging in the fuel system and injector were significant problems for these composite liquid/powder fuels. Nevertheless, fuel consumption rate was found to be 17% lower for the nano-Al suspension compared to baseline JP-5 for the period of time that the engine was able to operate, which is a significant achievement towards demonstrating the potential value of reactive metal powder additives in boosting the volumetric energy density of hydrocarbon fuels.
机译:由于其高比表面积,高能量含量和催化能力,能量纳米颗粒已经显示为液态烃燃料的添加剂。在海军研究实验室开发了含有经过多种子化学反应的Ti,Al和B的新型非晶反应混合金属纳米粉(RMNP)。这些材料具有比商业纳米铝(Nano-Al)更高的能量含量,使得它们可能可用作能量促进燃料组分而不是简单的催化添加剂。这项工作检查了这些RMNP在小型单缸4行程柴油发动机(Yanmar L48V)中的燃烧行为。燃料制剂包括改变的RMNP分层,最高可达4重量%。 %,悬浮在喷射燃料JP-5中。比较实验还通过JP-5中的纳米Al的等效悬浮液进行。对于每个燃料配方,发动机以3000rpm的恒定速度运行,载荷在其全部范围内变化。在每个负载下,滚筒压力数据记录30秒(750个循环),以实现重要的燃烧特性。虽然差异很小,但纳米Al和RMNP都导致了较短的点火延迟,延迟峰值压力位置,降低了最大释放速率,并且增加了烧伤持续时间。此外,类似但更大的发动机(Yanmar L100V)用于检查8重量%的悬浮液的燃料消耗和排放。 JP-5中的%RMNP(和8重量%Nano-Al进行比较)。该发动机以3600rpm的恒定速度连接到发动机,并且具有6.5巴的标称gimep(总指示的平均有效压力)的恒定载荷。燃料消耗率取决于消耗175毫升每种燃料制剂所需的时间,而在此期间每分钟记录一次排放水平。遗憾的是,喷射器的燃烧数据和目视检查表明,RMNP导致喷射器尖端的显着沉积物和孔口内部和周围地区,这对燃料消耗率和排放产生负面影响。在与纳米Al-Iaden燃料进行四分钟的操作后,发动机停滞,显然是由于燃料储存器底部堵塞。得出结论,燃料系统和喷射器中燃料贮存器中的颗粒沉降和颗粒堵塞是这些复合液/粉末燃料的显着问题。然而,与发动机能够运行的时间相比,纳米Al悬浮液相比,纳米Al悬浮液的燃料消耗率为17%,这是表明反应性金属潜在值的重要成果粉末添加剂促进烃燃料的体积能密度。

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