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21.
The HP3 instrument on the InSight lander mission will measure subsurface temperatures and thermal conductivities from which heat flow in the upper few meters of the regolith at the landing site will be calculated. The parameter to be determined is steady-state conductive heat flow, but temperatures may have transient perturbations resulting from surface temperature changes and there could be a component of thermal convection associated with heat transport by vertical flow of atmospheric gases over the depth interval of measurement. The experiment is designed so that it should penetrate to a depth below which surface temperature perturbations are smaller than the required measurement precision by the time the measurements are made. However, if the measurements are delayed after landing, and/or the probe does not penetrate to the desired depth, corrections may be necessary for the transient perturbations. Thermal convection is calculated to be negligible, but these calculations are based on unknown physical properties of the Mars regolith. The effects of thermal convection should be apparent at shallow depths where transient thermal perturbations would be observed to deviate from conductive theory. These calculations were required during proposal review and their probability of predicting a successful measurement a prerequisite for mission approval. However, their uncertainties lies in unmeasured physical parameters of the Mars regolith.  相似文献   
22.
杨宇晓  汪德鑫  黄琪 《宇航学报》2020,41(10):1341-1349
为提高飞行器通信系统的抗截获性能,提出了一种基于四维超混沌系统的射频隐身跳频通信设计方法。该方法构建了四维超混沌系统,扩展了系统解空间,有效增加了系统复杂度,并通过引入周期性扰动措施,解决了有限精度带来的短周期现象。在四维超混沌系统的基础上,利用超混沌系统生成的双通道超混沌序列,实现了跳频通信系统的频率序列和周期序列联合不确定设计方法。仿真结果表明:四维超混沌系统与传统混沌系统相比,其复杂度最优,在相同有限精度条件下,超混沌系统的周期性明显减弱。另外,基于四维超混沌设计的跳频系统,其截获概率优于常规跳频系统,具有较好的射频隐身性能。  相似文献   
23.
Global Navigation Satellite Systems (GNSS), in particular the Global Positioning System (GPS), have been widely used for high accuracy geodetic positioning. The Least Squares functional models related to the GNSS observables have been more extensively studied than the corresponding stochastic models, given that the development of the latter is significantly more complex. As a result, a simplified stochastic model is often used in GNSS positioning, which assumes that all the GNSS observables are statistically independent and of the same quality, i.e. a similar variance is assigned indiscriminately to all of the measurements. However, the definition of the stochastic model may be approached from a more detailed perspective, considering specific effects affecting each observable individually, as for example the effects of ionospheric scintillation. These effects relate to phase and amplitude fluctuations in the satellites signals that occur due to diffraction on electron density irregularities in the ionosphere and are particularly relevant at equatorial and high latitude regions, especially during periods of high solar activity. As a consequence, degraded measurement quality and poorer positioning accuracy may result.  相似文献   
24.
超音速发动机尾喷流的红外抑制是超音速飞行器隐身性能的重要组成部分。本文提出两种超音速尾喷流的红外抑制方案二次旋流方案与组合波瓣方案 ,并对两种方案共 7组试验件在不同的结构和二次流速度情况下进行了大量重复试验。在旋流方案试验中 ,对二次流加旋诱发大尺度流向涡进行了系统的研究 ,得到旋流角度、二次流速度等对掺混效果的影响规律 ,试验结果表明 :对于本结构方案 ,当二次流速度为 49m/s,旋流角在 3 0°左右 ,掺混效果最好 ,且随二次流流速的增加而加强。在组合波瓣方案的试验中 ,对组合波瓣用于超音尾喷流红外抑制进行了研究 ,试验结果表明可对超音尾喷流的红外起到有效的抑制作用。  相似文献   
25.
应用于小发柔性转子的高速动平衡技术   总被引:5,自引:1,他引:5  
从某新型涡轴发动机动力涡轮转子的结构特点出发 ,简要说明了对该转子进行实际高速动平衡操作存在的困难及采取的对策。在试验过程中 ,创造性地应用影响系数法和自行设计加工的精密平衡卡箍 ,高质量地完成了细长柔性转子的高速动平衡试验。研究表明 :高速动平衡技术可大大减小细长柔性转子的动挠度和支承动反力 ,从而达到减小发动机振动的目的  相似文献   
26.
细观力学有限元法预测复合材料宏观有效弹性模量   总被引:14,自引:0,他引:14  
基于能量等效原理提出了复合材料有效弹性模量的定义,并指出了该定义的基础及前提条件。为从理论上计算复合材料宏观有效弹性模量,建立了通过细观力学有限元法计算复合材料有效弹性模量的方法。复合材料宏观弹性模量,是通过对复合材料细观结构代表性体积元的力学响应的计算来得到,在该计算方法中,给出了施加简便的边界载荷以及恰当的边界变形约束条件的方法。数值计算结果与部分试验结果具有较好的一致性,表明所提出的方法能够较好地计算复合材料的宏观有效弹性模量。  相似文献   
27.
赵寿根  程伟  管德 《航空学报》2006,27(4):624-629
对4类典型铺层的1-3型压电纤维复合材料主动板的变形模式进行了理论分析。在此基础上对具有扭转变形模式的主动叠层板进行了振动特性分析,得到了该类型主动叠层板在外界电场激励下的稳态解。最后对该类主动叠层板的扭转振动特性进行了深入的研究,包括作用电场强度的大小、频率对扭转特性的影响、压电纤维铺层角和压电纤维体积比对主动叠层板扭转特性的影响等。算例表明本文计算模型和有限元得到的结果符合良好,同时算例结果表明含1-3型压电纤维复合材料主动叠层板具有良好的主动扭转特性。  相似文献   
28.
Both heliophysics and planetary physics seek to understand the complex nature of the solar wind’s interaction with solar system obstacles like Earth’s magnetosphere, the ionospheres of Venus and Mars, and comets. Studies with this objective are frequently conducted with the help of single or multipoint in situ electromagnetic field and particle observations, guided by the predictions of both local and global numerical simulations, and placed in context by observations from far and extreme ultraviolet (FUV, EUV), hard X-ray, and energetic neutral atom imagers (ENA). Each proposed interaction mechanism (e.g., steady or transient magnetic reconnection, local or global magnetic reconnection, ion pick-up, or the Kelvin-Helmholtz instability) generates diagnostic plasma density structures. The significance of each mechanism to the overall interaction (as measured in terms of atmospheric/ionospheric loss at comets, Venus, and Mars or global magnetospheric/ionospheric convection at Earth) remains to be determined but can be evaluated on the basis of how often the density signatures that it generates are observed as a function of solar wind conditions. This paper reviews efforts to image the diagnostic plasma density structures in the soft (low energy, 0.1–2.0 keV) X-rays produced when high charge state solar wind ions exchange electrons with the exospheric neutrals surrounding solar system obstacles.The introduction notes that theory, local, and global simulations predict the characteristics of plasma boundaries such the bow shock and magnetopause (including location, density gradient, and motion) and regions such as the magnetosheath (including density and width) as a function of location, solar wind conditions, and the particular mechanism operating. In situ measurements confirm the existence of time- and spatial-dependent plasma density structures like the bow shock, magnetosheath, and magnetopause/ionopause at Venus, Mars, comets, and the Earth. However, in situ measurements rarely suffice to determine the global extent of these density structures or their global variation as a function of solar wind conditions, except in the form of empirical studies based on observations from many different times and solar wind conditions. Remote sensing observations provide global information about auroral ovals (FUV and hard X-ray), the terrestrial plasmasphere (EUV), and the terrestrial ring current (ENA). ENA instruments with low energy thresholds (\(\sim1~\mbox{keV}\)) have recently been used to obtain important information concerning the magnetosheaths of Venus, Mars, and the Earth. Recent technological developments make these magnetosheaths valuable potential targets for high-cadence wide-field-of-view soft X-ray imagers.Section 2 describes proposed dayside interaction mechanisms, including reconnection, the Kelvin-Helmholtz instability, and other processes in greater detail with an emphasis on the plasma density structures that they generate. It focuses upon the questions that remain as yet unanswered, such as the significance of each proposed interaction mode, which can be determined from its occurrence pattern as a function of location and solar wind conditions. Section 3 outlines the physics underlying the charge exchange generation of soft X-rays. Section 4 lists the background sources (helium focusing cone, planetary, and cosmic) of soft X-rays from which the charge exchange emissions generated by solar wind exchange must be distinguished. With the help of simulations employing state-of-the-art magnetohydrodynamic models for the solar wind-magnetosphere interaction, models for Earth’s exosphere, and knowledge concerning these background emissions, Sect. 5 demonstrates that boundaries and regions such as the bow shock, magnetosheath, magnetopause, and cusps can readily be identified in images of charge exchange emissions. Section 6 reviews observations by (generally narrow) field of view (FOV) astrophysical telescopes that confirm the presence of these emissions at the intensities predicted by the simulations. Section 7 describes the design of a notional wide FOV “lobster-eye” telescope capable of imaging the global interactions and shows how it might be used to extract information concerning the global interaction of the solar wind with solar system obstacles. The conclusion outlines prospects for missions employing such wide FOV imagers.  相似文献   
29.
重根特征向量导数计算的特殊迭代法   总被引:1,自引:0,他引:1  
在重根特征向量导数计算方法的发展中,为了从无限个特解中确定出唯一的通解,提出过不同定解条件,但正确定解条件是唯一的。员后公认的定解条件为Z^TMZ Z^TMZ=-Z^TMZ,这里认为Z^TMZ≠Z^TMZ,由此便引出物理短阵(刚度阵和质量阵)的二阶导数。为了避免物理阵二阶导数的计算,本文在满足前述定解条件的前提下,利用一种特殊的迭代格式回避了物理阵二阶导数的引入。同时该迭代过程可直接获得通解,不同于目前流行的做法:先由一个不定支配方程求其特解,然后才由定解条件确定通解。另外,数值表明,动柔度迭代式的精度可与直接迭代式相匹敌,可是动柔度迭代式用于许多特征向量导数计算时,却省时得多。  相似文献   
30.
介绍在JF-10氢氧爆轰驱动高焓激波风洞中开展再人流场红外辐射测量的实验技术。风洞试验状态的驻室总压为19.6MPa,驻室总温为7920K。实验以球头钝锥体为试验模型,测量其近尾流红外辐射能量通量的横向分布。测量采用插入式锑化铟多元红外成像系统,波段范围为2.27-6.0μm。试验数据呈现明显的规律性。试验结果表明:利用这一测量技术能够提供高焓条件下有较高空间分辨率的、较为准确的红外实验数据。  相似文献   
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