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Extended, and variable, stroke-reciprocating internal combustion engines

机译:延伸和变量,行程往复式的内燃机

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A description is given, with a supporting thermodynamic analysis, of a four-stroke diesel engine concept with the expansion and exhaust strokes exceeding the induction and compression strokes due to the use of a novel linkage connecting the piston to the crankshaft. The advantage of such an arrangement, after allowing for engine internal friction losses, is a reduction of about 8% in specific fuel consumption relative to an otherwise similar conventional diesel engine. There is also a corresponding reduction of emissions. An extension of the concept, incorporating a slightly more complex linkage, is applicable to spark-ignition engines. In this case the arrangement can be operated more flexibly since the expansion ratio can be adjusted with the engine running. This capability also allows a constant compression ratio to be maintained independently of the selected expansion ratio. Reducing, for spark-ignition engines, the induction and compression strokes while extending the expansion and exhaust strokes correspondingly allows the brake specific fuel consumption to be reduced by about 20% at 30 % of full load. This conclusion was also supported by detailed thermodynamic studies with due allowance being made for engine friction losses.
机译:通过支撑热力学分析给出了一种描述的四冲程柴油发动机概念,其具有超出诱导和压缩冲程的膨胀和排气冲程,因为使用将活塞连接到曲轴的新颖连杆而导致的感应和压缩冲程。在允许发动机内部摩擦损失之后这种布置的优点是相对于其他类似的传统柴油发动机的特定燃料消耗的减少约8%。还有相应的排放减少。概念的延伸,包括稍微更复杂的连杆,适用于火花点火发动机。在这种情况下,由于可以通过发动机运行调节膨胀比,因此可以更灵活地操作布置。该能力还允许与所选择的膨胀比无关保持恒定的压缩比。减少火花点火发动机,诱导和压缩冲程,同时延长膨胀和排气冲程,相应地使制动器特定的燃料消耗降低约20%以满载的30%。对于发动机摩擦损失的适当津贴,还支持该结论也得到了详细的热力学研究。

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