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MODELING THE EFFECT OF INJECTOR NOZZLE-HOLE LAYOUT ON DIESEL ENGINE FUEL CONSUMPTION AND EMISSIONS

机译:模拟喷射器喷嘴孔布局对柴油机燃料消耗和排放的影响

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Numerical simulations were used to study the effect of reduced nozzle hole size and nozzle tip hole configuration on the combustion characteristics of a high speed direct injection diesel engine. The KIVA code coupled with the Chemkin chemistry solver was used for the calculations. The calculations were performed over wide ranges of equivalence ratio, injection timing and injection pressure. Three nozzle hole layouts were considered; the baseline conventional nozzle, and multi- and group-hole configurations. In the multi-hole case, the number of holes was doubled and the hole size was reduced, while keeping the same hole area as for the baseline nozzle. The group-hole configuration used the same hole number and hole size as the multi-hole case, but pairs of holes were grouped with a close (0.2mm) spacing between the holes. The results of the mixture distributions showed that the group hole configuration provides similar penetration and lower inhomogeneity to those of the baseline large hole nozzle with the same nozzle flow area. Consequently, the fuel consumption and pollutant emissions, such as CO and soot, are improved by using the group-hole nozzle instead of the conventional hole nozzle over wide operating ranges. On the other hand, the multi-hole nozzle has advantages in its fuel consumption and CO emissions over the conventional hole layout at intermediate equivalence ratios (equivalence ratios from 0.46-0.84) and conventional injection timings (SOI: 15° BTDC).
机译:用数值模拟用于研究减少喷嘴孔尺寸和喷嘴尖端孔配置对高速直喷柴油机燃烧特性的影响。与Chemkin Chemisty Solver耦合的Kiva码用于计算。在宽范围的等效率,注射正时和注射压力范围内进行计算。考虑了三个喷嘴孔布局;基线传统喷嘴和多个和组孔配置。在多孔壳中,孔的数量加倍,并且孔尺寸减小,同时保持与基线喷嘴相同的孔面积。组孔配置使用与多孔壳体相同的孔数和孔尺寸,但是孔对孔的孔与孔之间的紧密间距进行分组。混合分布的结果表明,基团孔配置提供了与具有相同喷嘴流动区域的基线大孔喷嘴的相似渗透性和更低的不均匀性。因此,通过在宽操作范围内使用组孔喷嘴,通过使用组孔喷嘴来改善燃料消耗和污染物排放,例如CO和烟灰。另一方面,多孔喷嘴在中间当量比(0.46-0.84的等效比率)和常规喷射定时(SOI:15°BTDC)上的燃料消耗中具有优于传统孔布局的燃料消耗和CO排放。

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