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首页> 外文期刊>Advances and Applications in Fluid Mechanics >PREDICTION ON DIFFUSION VELOCITY INSIDE LP-INJECTOR BASED ON NGV PLUNGER DESIGNING
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PREDICTION ON DIFFUSION VELOCITY INSIDE LP-INJECTOR BASED ON NGV PLUNGER DESIGNING

机译:基于NGV柱塞设计的LP注射器漫射速度预测

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摘要

We analyze the velocity characteristics regarding plunger area inside NG injector, which is changed by stroke from electronic pulse signal, at variable condition from 0.1mm to 0.2mm with CH_4 gas. An actual mode was designed by sleeve, spring and forth hole and, the plunger was manufactured by material of stainless steel 401, which was designed to divide into top and bottom areas, from plunger assay. The models for analysis were divided into 5 types, which were designed by assumed structures which were modified by 0, 2, 4, 6 and 8 of plunger wing shapes. The velocity characteristics of stroke 0.1mm were verified to quickly increase the contoured distributions at model (b) which has 2 plunger wings inside injector. And the fast velocity at internal plunger exposed to change performance in order of model (b)>(c)>(d)>(e)>(a) at plunger areas. Consequently, the cause for such observation is attributed to further activation of velocity, since flow of velocities inside the injector was stabilized as opening of stroke positioned, at the bottom part of plunger which was changed from 0.1 mm to 0.2mm.
机译:我们分析了关于NG喷射器内的柱塞区域的速度特性,其通过从电子脉冲信号的行程改变,在可变条件下,用CH_4气体从0.1mm到0.2mm。通过套筒,弹簧和箭孔设计了实际模式,并且通过不锈钢401的材料制造了柱塞,该材料被设计成从柱塞测定中分成顶部和底部区域。分析模型分为5种类型,其由假定的结构设计,该结构由柱塞翼形状的0,2,4,6和8修改。验证行程0.1mm的速度特性,以快速增加在喷射器内具有2个柱塞翼的模型(B)的轮廓分布。并且内部柱塞的快速速度暴露于柱塞区域的模型(b)>(c)>(d)>(e)>(a)的顺序变化性能。因此,这种观察结果的原因归因于进一步激活速度,因为当喷射器内的速度被稳定为位于柱塞的开口,因此在柱塞的底部改变为0.1mm至0.2mm。

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