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Experimental Investigations on DI Diesel Enginewith Different Combustion Chambers Insulation

机译:带有不同燃烧室绝缘的直喷式柴油机的实验研究

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Aim: The four-stroke single cylinder diesel engine’s performance with various low heat rejection (LHR) combustion chambers was determined Critical comparison was made for various configurations of the combustion chambers with neat diesel operation.Design Parameters: Direct injection diesel engine with various configurations of the combustion chambers–Combustion chamber with air gap insulation and ceramic coating (LHR–3); air gap insulation (LHR–2); and ceramic coated combustion chamber (LHR–1) Injection pressure and timing. Materials and Methods: Exhaust emissions and performance parameters and were evaluated at different values of brake mean effective pressure (BMEP) of the engine. Combustion parameters were evaluated at its peak load operation. Particulate emissions were determined by smoke opacity meter (AVL 437), while nitrogen oxide levels were noted by NOx Analyzer (Netel Chromatograph NOx Analyzer (VM 4000). Combustion characteristics of the engine were determined at peak load operation of the engine using TDC (top dead centre) encoder, miniature Piezo electric pressure transducer, and special p (pressure)–θ(crank angle) software package. Brief Results: Deteriorated performance was shown by the engine with air gap insulated and ceramic coated (LHR–3) combustion chamber, when compared with engine with other configurations of the combustion chamber at recommended injection timing of 27° bTDC.(before top dead centre) Conclusions: Engine with LHR–1, LHR–2 and LHR–3 combustion chambers with mineral diesel operation showed deteriorated performance at 27° bTDC and improved at optimum injection timings and with increased injection pressure.
机译:目的:确定具有低排热(LHR)燃烧室的四冲程单缸柴油机的性能对采用纯柴油运行的燃烧室的各种配置进行关键比较。设计参数:各种配置的直喷柴油机燃烧室–带有气隙隔离和陶瓷涂层的燃烧室(LHR-3);气隙绝缘(LHR-2);以及带有陶瓷涂层的燃烧室(LHR-1)的喷射压力和正时。材料和方法:废气排放和性能参数,并在发动机的制动平均有效压力(BMEP)的不同值下进行了评估。在峰值负荷运行时评估燃烧参数。颗粒物的排放由烟雾不透明度计(AVL 437)确定,而氮氧化物的水平由NOx分析仪(Netel色谱法NOx分析仪(VM 4000)记录。发动机的燃烧特性是在使用TDC的发动机峰值负荷运行条件下确定的(顶部死点)编码器,微型压电压力传感器和特殊的p(压力)-θ(曲柄角)软件包简要结果:带有气隙绝缘和陶瓷涂层(LHR-3)燃烧室的发动机显示出性能下降,与在建议的喷射定时为27°bTDC时具有燃烧室其他配置的发动机相比(在上止点之前)结论:具有矿物柴油运行的LHR-1,LHR-2和LHR-3燃烧室的发动机性能下降在27°bTDC时具有最佳性能,并在最佳进样时间和提高进样压力的情况下得到改善。

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