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Quantitative and qualitative analysis of thermodynamic process of a bi-fuel compressed natural gas spark ignition engine

机译:双燃料压缩天然气火花点火发动机热力学过程的定量与定性分析

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A comparative energy and exergy analysis was experimentally performed using a bi-fuel compressed natural gas (CNG) spark ignition engine. The experiments were conducted for gasoline and CNG fuel at 1700 rpm and different operating loads from 5 to 30 Nm. The experiments were performed under stoichiometric air-fuel ratio and maximum brake torque ignition timing. Quantitative and qualitative analysis were conducted using the first and second law of thermodynamics, respectively. The effect of engine operating load on various energy and exergy parameters was compared for both the fuels. Output energy with respect to engine load was found higher for CNG compared to gasoline. Engine wall heat transfer was also higher in the CNG engine case due to its high combustion chamber temperature and lower burning velocity. The difference in heat transfer energy fraction between gasoline and CNG gradually increased with engine load. The exhaust energy was found maximum in the case of CNG under low operating load and reduced to a minimum at higher engine operating load. The unaccounted energy fraction was found lower for the CNG engine and reduced with respect to engine load. CNG exhibits the highest exergy efficiency (26.80%) compared to gasoline (25.50%) at 30 Nm load. On average, a 2% higher exergy efficiency was observed with the CNG engine at all operating load conditions. This indicates CNG has a higher potential to convert chemical energy present in the fuel into useful work output. CNG shows lower exergy destruction at all operating loads compared to gasoline, and it reduces significantly at higher engine loads. In all operating loads, exergy transfer due to exhaust gas and heat transfer to the wall was higher in the case of CNG.
机译:使用双燃料压缩天然气(CNG)火花点火发动机实验进行比较能和漏洞分析。在1700rpm和5至30nm的汽油和CNG燃料中对汽油和CNG燃料进行实验。在化学计量空燃比和最大制动扭矩点火正时进行实验。使用第一和第二热力学定律进行定量和定性分析。对燃料进行比较了发动机运行负荷对各种能量和漏洞参数的影响。与汽油相比,CNG对发动机负荷的输出能量较高。由于其高燃烧室温度和较低的燃烧速度,CNG发动机壳体的发动机壁传热也较高。用发动机负荷逐渐增加汽油和CNG之间的传热能量级分的差异。在低操作负荷下CNG的情况下最大地发现了排气能量,并且在更高发动机运行负荷下减少到最小值。对于CNG发动机而言,未计算的能量级分并相对于发动机负荷减小。与汽油(25.50%)相比,CNG表现出最高的高效效率(26.80%),在30nm负载下。平均而言,在所有操作负荷条件下,CNG发动机观察到2%的高度效率。这表明CNG具有更高的潜力,可以将燃料中的化学能量转换为有用的工作输出。与汽油相比,CNG在所有工作载荷上显示出较低的漏斗破坏,并且在更高的发动机负荷下显着减少。在所有操作负荷中,在CNG的情况下,由于废气和热传递到墙壁的热传递较高。

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