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An Experimental Study of Turbocharged Hydrogen Fuelled Internal Combustion Engine

机译:涡轮增压型氢气燃料内燃机的实验研究

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Hydrogen is considered as one of the potential alternate fuel and when compared to other alternate fuels like CNG, LPG, Ethanol etc., it has unique properties due to absence of carbon. In the current work, Hydrogen engine of 2.5 L, four cylinder, spark ignited Turbocharged-Intercooled engine is developed for Mini Bus application. Multi-point fuel injection system is used for injecting the hydrogen in the intake manifold. Initially, boost simulation is performed to select the optimum compression ratio and turbocharger. The literature review has shown that in-order to get the minimum NO_x emissions Hydrogen engines must be operated between equivalence ratios ranging from 0.5 to 0.6. In the present study, full throttle performance is conducted mainly with the above equivalence ratio range with minimum advance for Maximum Brake Torque (MBT) ignition timing. At each operating point, the performance, emissions and combustion parameters are recorded and analyzed in detail. It has been observed that a power of 66.7 kW @3200 rpm and a torque of 180 Nm @2000 rpm are achieved by using neat Hydrogen on Turbo charged engine. The base performance data is compared with CNG naturally aspirated engine (running using stoichiometric operation) and it has been observed that Hydrogen engine is having similar performance above 2000 rpm, however there is torque drop due to operation on Hydrogen which has limitation of the turbocharger to boost at lower engine speeds (running using equivalence ratio ranging from 0.5 to 0.6). Such lean operation also helps to avoid backfire which the hydrogen engine is quite vulnerable. It has also been observed that the combustion stability of the Hydrogen engine is very good at all Indicated Mean Effective Pressure (IMEP) values irrespective of the engine speed with a Coefficient of Variance (COV) around 1-2%.
机译:氢被认为是潜在的备用燃料的一个,并且与像CNG,LPG,乙醇等其它替代燃料时,具有由于不存在碳的独特的性质。在目前的工作中,2.5升,四缸发动机的氢,火花点火式涡轮增压中冷发动机的小型巴士的应用开发。多点燃料喷射系统被用于在进气歧管喷射氢。最初,执行升压模拟来选择最佳压缩比和涡轮增压器。文献综述表明,在-为了得到最小NO_x的排放氢气发动机必须的当量比为0.5至0.6之间被操作。在本研究中,全油门性能主要进行与上述当量比范围与最大制动转矩最小提前(MBT)点火正时。在每一个操作点处,性能,排放和燃烧参数记录和详细分析。已经观察到的是66.7千瓦@ 3200 rpm的功率和180nm的的@ 2000rpm下的转矩通过使用纯的氢气对涡轮增压的发动机来实现。基座性能数据与CNG自然吸气发动机(使用化学计量运行模式下运行)进行比较,并且已经观察到,氢发动机具有高于2000转相似的性能,但是存在对氢扭矩下降由于操作其具有涡轮增压器的限制提高在较低的发动机转速(用当量比为0.5至0.6运行)。这种精益化运营也有助于避免引火烧身其中氢发动机是相当脆弱的。也有人指出,氢发动机的燃烧稳定性在所有指示平均有效压力(IMEP)非常好,不论值发动机转速与方差(COV)的1-2%左右的系数。

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