An optical investigation of dual fuel and RCCI pilot ignition in a medium speed engine

Menno Merts , Saeed Derafshzan , Jari Hyvönen , Mattias Richter , Marcus Lundgren , Sebastian Verhelst
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引用次数: 6

Abstract

Driven by the Paris agreement and tightening IMO regulations, the marine sector is focusing on lowering engine emissions and moving to low-carbon fossil or renewable fuel such as methane. The dual-fuel concept allows the usage of methane as main energy-source in diesel engines. A small pilot diesel injection acts as an ignition source for the premixed methane. It was investigated how NOx formation, mainly taking place during combustion of the pilot fuel, could be minimized.

To better understand the process of ignition of a pilot injection in dual-fuel engines, optical research has been performed on a medium speed dual fuel marine engine. A unique Bowditch 200 mm single cylinder setup enabled high speed recordings of natural luminescence. Both Reactivity Controlled Compression Ignition (RCCI) and Conventional Dual Fuel (CDF) combustion was investigated. The RCCI combustion was created by an early pilot injection, allowing a long mixing time. The CDF cases had a late injection timing.

In RCCI operation the higher degree of premixing was recognized by combustion luminescence starting further away from the injector, at a varying location. The diluted pilot combustion generated a limited brightness. The heat release profile was Gaussian/bell-shaped, without the typical diesel premixed peak. In CDF operation the recorded images show that combustion follows the shape of the diesel injector jet. The heat release profile was showing a strong initial peak, resembling the premixed peak known from conventional diesel combustion. This heat release peak in CDF combustion, correlated to NOx emissions, is absent in RCCI mode.

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中速发动机双燃料和RCCI引燃的光学研究
在《巴黎协定》的推动下,海事部门正致力于降低发动机排放,并转向低碳化石燃料或甲烷等可再生燃料。双燃料概念允许使用甲烷作为柴油发动机的主要能源。一个小型先导柴油喷射器作为预混甲烷的点火源。研究了如何最大限度地减少主要发生在先导燃料燃烧过程中的氮氧化物形成。为了更好地了解双燃料发动机先导喷射点火过程,在中速双燃料船用发动机上进行了光学研究。独特的鲍迪奇200毫米单缸装置使自然发光的高速记录。对反应性控制压缩点火(RCCI)和常规双燃料(CDF)燃烧进行了研究。RCCI燃烧是由早期的先导喷射产生的,允许较长的混合时间。CDF病例的注射时间较晚。在RCCI操作中,从远离喷油器的不同位置开始的燃烧发光可以识别出预混程度较高。稀释的先导燃烧产生了有限的亮度。热释放曲线为高斯/钟形,没有典型的柴油预混峰。在CDF操作中,记录的图像显示燃烧遵循柴油喷油器喷射的形状。热释放曲线显示出一个强烈的初始峰值,类似于传统柴油燃烧的预混合峰值。这种与NOx排放相关的CDF燃烧的热释放峰值在RCCI模式下是不存在的。
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