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Influence of the addition of LPG-reformate and H2 on an engine dually fuelled with LPG–diesel, –RME and –GTL Fuels

机译:LPG重整油和H2的添加对使用LPG柴油,-RME和-GTL燃料双重燃料的发动机的影响

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摘要

Dual fuel compression ignition engine has been proposed as one approach to reduce diesel engine regulated emissions (NOX and Soot) and to also allow the utilisation of other non-traditional fuels in transportation, in order to improve fuel security and CO2 emissions. In an attempt to improve the combustion characteristics of the LPG–diesel dual fuelled engine the influence of the (a) hydrogen and reformate (H2 and CO) additions and (b) properties of the in-cylinder injected diesel fuel, in this case diesel, biodiesel and synthetic diesel fuel were investigated.Improvements on engine thermal efficiency and HC (including particular HC species) emissions with the reformate and further improvements on CO, soot and particulate matter with hydrogen with respect to LPG–diesel dual fuel combustion were obtained. However, an increase in NOX was obtained due to the high in-cylinder temperature as a result of the shorter advanced premixed combustion. Moreover, the RME’s oxygen content, different injection (i.e. different high bulk modulus) and combustion characteristics as a result of its properties modified the combustion process and hence produced even lower HC, CO, soot and PM emissions. On the other hand, the lower density of GTL has changed the diesel fuel injection and combustion characteristics in dual fuelling mode which resulted in the increased regulated (HC and CO) and unregulated emissions. However, LPG–GTL dual fuelling with reformate and H2 addition showed better smoke-NOX trade-off compared to that of ULSD and RME.
机译:已经提出双燃料压缩点火发动机作为减少柴油发动机调节的排放物(NOX和烟灰)并且还允许在运输中利用其他非传统燃料的一种方法,以改善燃料安全性和CO 2排放。为了改善LPG柴油双燃料发动机的燃烧特性,以下因素的影响:(a)氢气和重整产品(H2和CO)的添加以及(b)缸内喷射柴油的性能,在这种情况下为柴油用重整产品改进了发动机的热效率和HC(包括特定的HC物种)排放,并在LPG-柴油双燃料燃烧方面进一步改善了含氢的CO,烟灰和颗粒物。但是,由于缸内温度升高,这是由于较短的预混燃烧时间缩短而导致NOX的增加。而且,RME的氧含量,不同的注入(即不同的高体积模量)和燃烧特性(由于其特性)改变了燃烧过程,因此产生的HC,CO,烟尘和PM排放更低。另一方面,较低的GTL密度改变了双燃料模式下的柴油喷射和燃烧特性,从而导致管制(HC和CO)和管制排放增加。但是,与ULSD和RME相比,加重整油和添加H2的LPG–GTL双燃料显示出更好的烟气NOX折衷。

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