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Performance, combustion and exhaust emissions analysis of HCNG fuelled single cylinder diesel engine at different injection opening pressures

机译:HCNG燃料单缸柴油机在不同喷射开启压力下的性能,燃烧和废气排放分析

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Purpose - Over past decades, the fossil fuel reserves in the world have been decreasing at an alarming rate and a lack of crude oil is expected in the early decades of this century. Also, the eco-neutral pollutants such as carbon monoxide (CO), oxides of nitrigen (NOx) and unburnt hydrocarbons (UHC) are also increasing. This calls for innovative research in non-conventional fuels to replace fossil fuels. Hydrogen is one such fuel which has an exceptional combustion property and appears to be proving itself as the best transportation fuel of the future. On the other hand, compressed natural gas(CNG) has already been credited as a remarkable fuel for its better emission characteristics and has been implemented as a transportation fuel in metros. Therefore, the use of hydrogen blended with natural gas seems to be a viable alternative to pure fossil fuels because of the expected reduction of the total pollutants and increase of efficiency. This paper aims to investigate this issue. Design/methodology/approach - In the present experimental investigation, 10 and 20 per cent of hydrogen-CNG mixture(HCNG) by mass of fuel is inducted into the combustion chamber in conjunction with air in HCNG-diesel dual fuel mode. The variation in injection opening pressure is assessed to optimize the performance and emission characteristics. Findings - Experiments were conducted at three different injection opening pressures, i.e. 200, 220 and 240 bar, at full-load condition and the performance characteristics were calculated. The effect of injection operating pressure(IOP) on emissions were measured and compared with pure diesel mode. Originality/value - Brake thermal efficiency (BTE) was increased by 1.2 per cent at 220 bar. Minimum BSFC of 0.2302 kg/kWh, 0.2114 kg/kWh was noticed for 220 bar with a changing ratio of 20 per cent of HCNG. It was noticed that CO and UHC decreased with variation in IOP and HCNG content in the blend. However, there was an increase in NOx emissions.
机译:目的-在过去的几十年中,世界上化石燃料的储藏量一直在以惊人的速度减少,并且在本世纪初的几十年中预计将缺乏原油。同样,诸如一氧化碳(CO),氮氧化物(NOx)和未燃碳氢化合物(UHC)等生态中性污染物也在增加。这要求在非常规燃料上进行创新研究以替代化石燃料。氢气是一种这样的燃料,具有出色的燃烧性能,并且似乎证明自己是未来最好的运输燃料。另一方面,压缩天然气(CNG)因其更好的排放特性而被认为是一种了不起的燃料,并已被用作地铁中的运输燃料。因此,将氢与天然气混合使用似乎是纯化石燃料的可行替代方案,因为预期总污染物的减少和效率的提高。本文旨在调查此问题。设计/方法/方法-在目前的实验研究中,以HCNG-柴油双燃料模式将10%和20%的氢-CNG混合物(HCNG)按质量计与空气一起引入燃烧室。评估喷油嘴压力的变化以优化性能和排放特性。发现-在满载条件下,在三种不同的喷射开启压力(即200、220和240 bar)下进行了实验,并计算了性能特征。测量了喷射操作压力(IOP)对排放的影响,并与纯柴油模式进行了比较。原创性/价值-制动热效率(BTE)在220 bar下提高了1.2%。注意到220 bar的最低BSFC为0.2302 kg / kWh,0.2114 kg / kWh,变化率为HCNG的20%。注意到随着共混物中IOP和HCNG含量的变化,CO和UHC降低。但是,NOx排放量有所增加。

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