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81.
Whedon GD Lutwak L Reid J Rambaut P Whittle M Smith M Leach C 《Acta Astronautica》1975,2(3-4):297-309
Prediction that the various stresses of flight, particularly weightlessness, would bring about significant derangements in the metabolism of the musculoskeletal system has been based on various observations of long-term immobilized or inactive bed rest. The only attempt at controlled measurement of metabolic changes in space prior to Skylab, a study during the 14-day Gemini VII flight, revealed rather modest losses of important elements. The three astronauts of Skylab II consumed a planned day-by-day, quite constant, dietary intake of major metabolic elements in mixed foods and beverages and provided virtually complete collections of excreta for 31 days preflight, during the 28 days inflight, and for 17 days postflight. Analyses showed that, in varying degree among the crewmen, urinary calcium increased gradually during flight in a pattern similar to that observed in bed-rest studies: the mean plateau peak of urinary calcium excretion in the latter part of flight was double preflight levels. Fecal calcium excretion did not change significantly, but calcium balance, owing to the urinary calcium rise, became either negative or less positive than in preflight measurement. Increased excretion and negative balance of nitrogen and phosphorus indicated appreciable loss of muscle tissue in all three crewmen. Significant losses also occurred inflight in potassium, sodium, and magnesium. Based on the similarity in pattern and degree between these observations and those in bed rest of the losses in calcium, phosphorus, and nitrogen, musculoskeletal integrity would not be threatened in space flights of up to at least 3 months. However, if similar changes occur, indicative of continuing losses of these elements, in the planned Skylab flights for considerably more than 28 days, concern for capable musculoskeletal function should be serious for flights of very many months' duration, and greater research attention will need to be given to development of protective counter-measures. 相似文献
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84.
CBERS-1卫星CCD相机零级图像处理研究 总被引:7,自引:0,他引:7
CCD相机是CBERS - 1卫星上的主要有效载荷之一。利用其接收的可见光和近红外谱段的图像 ,可以在国民经济的各个生产部门 ,诸如国土资源调查、农业、林业、地矿、水利、环境、生态等方面得到广泛应用。但是由于探元和光学系统成像的物理机制和各种干扰等因素影响 ,地面接收到的数据必须经过处理才能应用。文章介绍的内容就是将这种图像数据经图像预处理 ,得到零级图像 ;经过相应的辐射校正 ,得到一级图像 ;经过几何校正 ,得到二级图像产品 ,提供给其它部门加以应用 相似文献
85.
椭球形贮箱内液体晃动特性试验研究 总被引:1,自引:0,他引:1
本文研究用于运载火箭的椭球形贮箱内液体晃动动力特性。利用常重力条件下缩比相似模型试验得到液体晃动的等效力学模型。应用参数识别技术确定第一阶等效模型的参数,并与近似计算方法得到的结果进行了比较。叙述了晃动试验中观测到的非线性效应。 相似文献
86.
为解决传统单天线GPS接收机在载体旋转情况下不能连续跟踪卫星连续定位和速度偏差较大的问题,提出一种GPS空间分集接收机设计方案。该接收机采用空间分集算法和消旋解算方法,能稳定连续地跟踪GPS卫星信号,并准确地求解出载体的平动速度。 相似文献
87.
基于遗传算法和空间推进方法的高超声速进气道优化设计研究 总被引:5,自引:2,他引:5
将遗传算法(单目标遗传算法GA和多目标遗传算法NSGA-Ⅱ、NCGA)与高效、高精度的卒间推进方法——SSPNS(Single-sweep Parabolized Navier-Stokes Algorithm)流场计算方法相结合,对二维高超声速进气道进行了气动优化设计研究。在单目标优化设计中以巡航点(Ma=7.0)的总压恢复最大为设计目标,多目标设计中则在巡航点分别考察了总压恢复最大-压升最大两目标模型、总压恢复最大-压升最大-阻力系数最小三目标模型。优化设计结果表明,单目标设计使得总压恢复有明显提高;多目标优化设计所得的Pareto最优前沿为设计者提供了可靠的设计依据。为了兼顾巡航点和加速爬升段的综合忭能,采用多目标优化方法对进气道进行了多点优化设计,并开展了基于等动压弹道的设计点选择问题初步研究。计算结果表明,若将设计点选在Ma=6.5左右,则进气道的综合性能较好。 相似文献
88.
筒状大长度固体药柱在内压载荷下的响应 总被引:6,自引:0,他引:6
本文研究不可压缩的粘弹性圆筒,在轴对称的平面应变条件下承受内压的问题,粘弹性材料采用分数阶导数模型。并用分数阶导数模型拟合固体推进剂松弛模量曲线,用Laplace变换和其反变换计算了固体火箭发动机筒段在点火内压建立过程中的位移和应力,得到它们随位置和时间变化的曲线。 相似文献
89.
为拓宽仿真系统、仿真计算机、仿真软件和与人工智能相结合等方面的应用范围,本文全面阐述了运载火箭控制系统仿真的发展方向,可供预先研究做选题参考。 相似文献
90.
Gabrion J Herbute S Oliver J Maurel D Davet J Clavel B Gharib C Fareh J Fagette S Nguyen B 《Acta Astronautica》1995,36(8-12):439-448
Fluid and electrolyte shifts occuring during human spaceflight have been reported and investigated at the level of blood, cardio-vascular and renal responses. Very few data were available concerning the cerebral fluid and electrolyte adaptation to microgravity, even in animal models. It is the reason why we developed several studies focused on the effects of spaceflight (SLS-1 and SLS-2 programs, carried on NASA STS 40 and 56 missions, which were 9- and 14-day flights, respectively), on structural and functional features of choroid plexuses, organs which secrete 70–90 % of cerebrospinal fluid (CSF) and which are involved in brain homeostasis. Rats flown aboard space shuttles were sacrificed either in space (SLS-2 experiment, on flight day 13) or 4–8 hours after landing (SLS-1 and SLS-2 experiments). Quantitative autoradiography performed by microdensitometry and image analysis, showed that lateral and third ventricle choroid plexuses from rats flown for SLS-1 experiment demonstrated an increased number (about x 2) of binding sites to natriuretic peptides (which are known to be involved in mechanisms regulating CSF production). Using electron microscopy and immunocytochemistry, we studied the cellular response of choroid plexuses, which produce cerebrospinal fluid (CSF) in brain lateral, third and fourth ventricles. We demonstrated that spaceflight (SLS-2 experiment, inflight samples) induces changes in the choroidal cell structure (apical microvilli, kinocilia organization, vesicle accumulation) and protein distribution or expression (carbonic anhydrase II, water channels,…). These observations suggested a loss of choroidal cell polarity and a decrease in CSF secretion. Hindlimb-suspended rats displayed similar choroidal changes. All together, these results support the hypothesis of a modified CSF production in rats during long-term (9, 13 or 14 days) adaptations to microgravity. 相似文献