排序方式: 共有47条查询结果,搜索用时 0 毫秒
1.
低轨道带可变翼的平板型极高真空分子屏 总被引:3,自引:1,他引:3
本文计算了在低轨道自由飞行的平板型分子屏(WakeShieldFacility)加了可变翼后,分子屏后实验区的压力分布。计算中考虑了分子屏和翼材料出气对实验区压力的影响。本文并对加可变翼和不加可变翼、考虑出气和不考虑出气几种情形进行了计算和比较。我们的结果表明:给轨道分子屏加上可变翼后,其实验区的压力可比不加可变翼降低一个数量级以上,压力达10-13Pa。本文的研究表明,这种给轨道分子屏加可变翼的模型对更好的利用分子屏环境是非常有利的。 相似文献
2.
低轨航天器致空间等离子体尾流 总被引:1,自引:0,他引:1
建立起一个低轨道航天器引起的等离子体尾的二维计算机模式,结果表明:(1)尾流的宽度随表面负电位值的增加而变窄。(2)随离子马赫数增加尾流位垒变宽;(3)对正电位表面情况尾流近区有电子聚集,并且离子的放空更远。 相似文献
3.
潜艇桨盘面伴流的不均匀性是影响螺旋桨在工作时产生振动和噪声的关键因素,潜艇指挥台围壳和尾舵产生的马蹄涡是导致桨盘面伴流不均匀性的重要原因。为了抑制尾舵处形成的马蹄涡,设计了一种局部等厚度的共翼型舵,通过数值模拟研究了其对尾流场不均匀性的改善效果。结果表明,局部等厚舵可以使尾流场相比非共翼型舵不均匀度下降40%以上,并且在相同舵角下舵力显著增大;安装局部等厚舵的同时在围壳处安装消涡片可以使不均匀度下降60%以上;减小局部等厚舵的最大厚度和增大首部曲率都可以进一步改善尾流场,且舵力不受损失。局部等厚舵形式简单,对尾流场和舵力改善效果显著。 相似文献
4.
5.
6.
7.
8.
9.
10.
A simulation-based method was developed to investigate the severity of Wake Vortex Encounters (WVEs). This paper describes an important part of this method: the determination of worst-case WVE conditions, which is referred to as Worst-Case Search (WCS). The WCS results permit to reduce time and costs of WVE severity related piloted simulator tests and allow the comparison of the hazard that vortices of different generator aircraft exert on a follower aircraft.The WCS is based on a high fidelity, offline simulation of the follower aircraft that includes the interacting wake vortex, a hazard criterion that rates the severity of each WVE, and a pilot model. It can be formulated as an optimisation problem that is solved with the optimisation tool MOPS (Multi Objective Parameter Synthesis). MOPS varies the encounter geometry until the simulation yields maximum values of the WVE hazard criterion.Worst-case encounter conditions for different parameters were investigated and sensitivity studies performed. The influence of the height above ground, the core radius, and the models for the wake vortex velocity profiles on the severity of a WVE was examined. To show the capability of the method, a comparison of the severity of a WVE behind two different heavy transport aircraft for a 20 t aircraft was made. The WCS method demonstrated its applicability and delivered the worst-case encounter geometry.