中型柴油机在Thumba生物柴油和混合柴油上的性能评价

A. Karnwal, Naveen Kumar, M. M. Hasan, A. N. Siddiquee, Z. Khan
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引用次数: 5

摘要

在过去的两个世纪里,世界经历了工业革命,也面临着能源滥用的严重问题。这导致了严重的环境退化和对化石燃料的高度依赖。世界各地的研究人员正在试验各种可再生燃料,以满足未来的能源需求,生物柴油正迅速成为一种潜在的替代燃料,用于农业和运输部门。世界范围内用于生物柴油生产的原料品种很多;然而,迫切需要从当地可获得的各种资源中探索生物柴油的潜力。Thumba是在印度拉贾斯坦邦发现的一种这样的物种,本文重点介绍了在中等容量、单缸、直接喷射、水冷柴油发动机中评估从Thumba油及其与矿物柴油(B10、B20、B40、B60、B80、B100)的混合物中提取生物柴油的潜力的调查结果。在不同负载下进行了性能测试,并对制动比油耗(BSFC)和制动热效率(BTE)进行了评估。废气温度和废气排放量(CO、CO、HC、nox和烟浊度)也被记录下来。B10达到了最高的BTE。随着生物柴油-柴油混合物中生物柴油浓度的增加,观察到BTE的降低。B10的废气温度最低,B100的废气温度最高。与纯柴油相比,生物柴油基燃料的CO、HC和烟雾透明度较低。以生物柴油为基础的燃料,二氧化碳和一氧化氮的排放量更高。结果表明,Thumba生物柴油可以作为柴油燃料的扩展剂,从而获得更好的性能和改善的排放特性。
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Performance Evaluation of a Medium Capacity Diesel Engine on Thumba Biodiesel and Diesel Blends
The world has witnessed industrial revolution in the past two centuries and faced serious problem of indiscriminate utilization of the energy resources. This has resulted in severe environmental degradation and very high dependence on fossil fuels. Researchers all over the world are experimenting on variety of renewable fuels for meeting future energy demands and biodiesel is fast becoming a potential alternative fuel for use in agriculture and transport sector. There are many varieties of feedstock which are used for biodiesel production worldwide; however, there is an urgent need to explore the potential of biodiesel from variety of locally available sources. Thumba is one such species found in Rajasthan State of India and this paper highlights the results of investigations carried out on assessing potential of biodiesel derived from Thumba oil and its blends with mineral diesel (B10, B20, B40, B60, B80, B100) in a medium capacity, single cylinder, direct injection, water-cooled diesel engine. The performance test was carried out at different loads and brake specific fuel consumption (BSFC) and brake thermal efficiency (BTE) were evaluated. The exhaust gas temperature and exhaust emissions (CO, CO , HC, NO x , and Smoke Opacity) were also recorded. The highest BTE was achieved in case of B10. As the concentration of biodiesel was increased in biodiesel-diesel blends, a reduction in BTE was observed. The exhaust gas temperature was found minimum in case of B10 and maximum for B100. The CO, HC and Smoke opacity were found lower for biodiesel based fuels than neat diesel. The CO 2 and NO x emissions were found higher in case of biodiesel based fuels. The results suggest that Thumba biodiesel can be used as an extender to diesel fuel, which would results in better performance and improved emission characteristics.
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