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1.
Tlatov(2007)研究表明太阳自转具有准22年振荡周期,并认为是太阳系自引力造成的.根据刘复刚和王建(2013)创建的行星会合指数KP(令KP=K是为了和其他指数的表现形式相统一)和获得的修正系数发现:太阳轨道运动具有平均准22.1826年运动周期,认为太阳轨道角动量和太阳自转角动量的周期性叠加致使太阳自转角速度具有准22.20年周期性变化.基于行星会合指数KP同时标定了太阳质心S相对于一个无法观测到的太阳系质心C位置关系的变化规律,进而通过太阳轨道运动指数KS、速率指数Kv、加速度指数Kα对太阳轨道运动特征进行了系统描述,这使得从行星系统之视角分析、揭示太阳运动和太阳活动成为可能,并对太阳自转运动的准11年和22年周期振荡受控于太阳轨道运动的调控进行了分析,这从探索途径和思想方法上是一种突破.依K_P表达式给出的太阳轨道运动轨迹与Jose(1965)、杨志根等(1988)、Scafetta(2014)、Mc Cracken等(2014)给出的图像不但形态特征相同而且图像的相位也完全一致.行星会合指数KP更重要的作用是标定了行星系统质心距离太阳位置关系的变化.本文从行星系统质心出发,根据行星系统质心P与太阳质心S绕太阳系质心C同步运动这一基本原理来进一步揭示太阳轨道运动规律.由于研究问题的出发点和视角不同,按这一途径可根据8大行星公开的天文数据分析太阳轨道运动规律.这种方法不但把纷繁复杂的行星系统统一起来,呈现出行星系统固有的整体运动规律,而且在整个太阳系中建立了与太阳处于相同子系统地位的行星系统质心.在此基础上,通过行星系统质心P与太阳S间位置关系变化,系统分析了太阳S和太阳系质心C的统一与分野规律.其重要意义是通过行星系质心运动规律发现它与太阳轨道运动特征间的本质联系,这使得从行星系统质心的运动特征对太阳运动与太阳活动关系的探寻成为可能.  相似文献   

2.
Tlatov(2007)研究认为,太阳活动和太阳磁场变化的22年周期,可能与太阳自转速度的变化有关.可是关于太阳自转速度为什么呈现出22年的变化周期,尚未见到有说服力的解释.本文通过对行星会合指数、行星系质心绕太阳系质心的运动、太阳绕太阳系质心运动以及太阳自转角动量变化的分析,发现行星系统的会合与相互背离,导致了太阳系质心与太阳质心的背离和靠近,从而引发太阳绕太阳系质心旋转角动量与太阳自转角动量的分离与叠加.由此认为,这两种角动量间的转换是太阳自转角速度呈现22年周期性变化的原因.太阳自转速度极小值对应于行星会合指数极大值;而太阳自转速度极大值对应行星会合指数极小值.其中平均11年左右为太阳自转加速期,另外11年则为太阳自转减速期.这一发现,可能为太阳活动与太阳磁场变化22年周期的成因机制的解释提供一个新的线索.  相似文献   

3.
地球自转角速度的季节性和年变化的成因已达成基本共识,但更长时间尺度的周期性变化成因尚无定论,它们或归因于太阳活动、日月引潮力、地壳反弹、大气圈波动或行星摄动的影响等.直至目前,地球自转变化的规律和机制还没有完全弄清楚.研究发现:根据行星会合指数(K)标定太阳轨道运动特征的方法是可行的.通过对行星会合指数(K)的FFT检测发现太阳轨道运动周期与前人研究的地球自转日长(LOD)变化周期具有极强的相关性.太阳轨道运动在受到行星系统力矩作用的同时,致使近日行星轨道运动受到太阳引力作用的波动影响而产生扰动.受太阳巨大引力作用的牵制,导致地球轨道角动量和太阳轨道角动量的变化具有正相关关系.根据地球轨道角动量和自转角动量之和守恒,进而推断地球自转角速度的变化对太阳轨道运动特征的响应,这在思想方法上是一种突破.  相似文献   

4.
基于创建的行星会合指数(K)运动学方程,得到太阳绕太阳系质心绕转的真正周期为准22.1826年.在整个太阳系角动量守恒前提下,根据K指数所指代的太阳绕太阳系质心运动轨迹推出:太阳绕转和太阳自转各自角动量虽不守恒,但二者角动量之和守恒.当行星系统处于最大相背离状态,太阳自转角动量增加,太阳自转受到逆时针方向旋转切向力的作用;当行星系统处于最大会合状态,太阳自转角动量减小,太阳自转受到顺时针方向旋转切向力的作用.行星系统远日4颗大质量行星和近日4颗小质量行星对太阳引力的合力沿太阳绕转轨道半径垂直方向的分力,具有准22年周期变化,而且该力的方向就是沿太阳旋转运动轨迹的切向方向.该分力11年与太阳自转方向同向,另11年与太阳自转方向反向,且分别对应太阳自转角动量11年增大和11年减小的变化.这为研究太阳22年磁周期动力学机制探寻到一种新的思想方法.  相似文献   

5.
基于创建的行星会合指数运动学方程,获得了太阳绕太阳系质心的运动周期为准22年.太阳轨道运动周期和北半球高空大气温度场准22年变化周期二者具有极大的相关性.在整个太阳系角动量守恒的前提下,得到太阳轨道角动量和太阳自转角动量之和守恒.理论上,通过太阳绕转和自转角动量间的转换,建立了行星会合指数与全球高层大气温度场变化的对应关系,进而在大气温度场变化与太阳活动之间建立了联系,并对全球气候变化的成因机制进行了新的探索.  相似文献   

6.
刘复刚  王建 《地球物理学报》2014,57(11):3834-3840
对于太阳活动22年周期的成因机制长期存在着争论.本文借助于行星会合指数以及开普勒第三定律,对太阳绕太阳系质心运动周期进行了分析计算.结果发现,太阳绕太阳系质心运动存在22.1826年显著周期,这与太阳磁场变化的22.20年周期相吻合.并从太阳系角动量守恒的角度解释了两者之间的成因联系:在太阳绕太阳系质心运动的准22年周期中,太阳系质心与太阳质心逐步接近而后逐步分离.当两个质心之间的距离接近零的时候,太阳轨道角动量与自转角动量叠加,会导致太阳自转角速度的加快;当两个质心之间的距离逐渐远离的时候,则导致太阳自转角速度的减慢.这可能是引发太阳活动和太阳磁场变化的原因.这一新认识为太阳活动准22年周期成因机制的解释提供了新的线索和依据.  相似文献   

7.
基于之前创建的行星会合指数运动学方程,发现太阳质心具有平均准22年向太阳系质心靠近(有时近似重合)的轨道运动周期.在整个太阳系角动量守恒的前提下,推出太阳自转角动量和太阳绕转角动量之和守恒.二者角动量转换造成太阳自转角动量变化和太阳绕转角动量变化具有互为反向的准22年变化规律.太阳自转角速度变化(dω/dt)图像与太阳黑子磁性指数图像具有一致对应关系,这种对应关系可以从物理机制上对太阳活动周相位变化和太阳活动强弱变化进行解释,这为预测太阳活动提供了一种有效方法.本研究为太阳活动替代性指标指代的双世纪周期和2403年哈尔斯塔(Hallstatt)周期规律找到了理论根据.  相似文献   

8.
运用刘复刚和王建(2013a)创建的行星会合指数K指代太阳绕太阳系质心运动时,一般情况,行星系质心是和木星位于太阳一侧.当其它3颗大质量行星(或其它7颗行星)和木星分居在太阳两侧,并且这4颗大质量行星(或8颗行星)与太阳近似排成直列的状态时,行星系质心则处在木星相反一侧,这时造成了太阳绕太阳系质心顺时针旋转的假象.本文对这一认识进行了澄清,并通过图示的方法定性地解释了太阳在一个行星系统平均轨道会合周期内角速度的变化特征.相当太阳系质心(C)从太阳本体旋出直到C再次旋进太阳本体这一时段,太阳轨道运动是处在减速期;而当C旋进直到旋出太阳本体这一时段,太阳轨道运动处在加速期.并将其运动特征与太阳轨道角动量的变率进行了对比,这将为揭示太阳活动规律的动力学机制提供了一种可能途径和新的思想方法.  相似文献   

9.
基于行星会合指数和行星系日心经度分别获得行星系质心到太阳的距离和日心经度的变化特征,发现杨学祥等(1999)指出的在1990—1994年太阳轨道运动并没有绕过太阳系质心这一特征具有准179年周期.根据对会合指数K极小值的分析表明,当会合指数向量K_(sp)0时,行星系质心和木星在太阳一侧,保持与太阳同步绕太阳系质心运动;当K_(sp)0时,则出现行星系质心和木星分别处在太阳质心的两侧,此时行星系质心没有绕过太阳质心,致使太阳质心没能绕过太阳系质心.行星会合指数与行星系质心日心经度两个时间序列的功率谱检测出不同的周期,表明二者指代的物理特征不同.分别对行星会合指数和行星系质心日心经度最强功率谱所标定的19.86年和11.86年周期的物理意义进行澄清,前者是行星会合指数K在极大值附近具有相等K值的频率所表现出的周期,它不是方向周期;后者主要指相对于太阳质心,行星系质心轨迹的封闭曲线旋进和旋出所对应的相同日心经度的频率明显增大所表现出来的周期,它不是理论上K指数相等条件下的周期.这为探索太阳轨道运动与太阳活动的关系研究具有参考价值.  相似文献   

10.
日心说是一种思想革命,它将太阳系坐标原点从地心移到日心.但这种革命并不彻底,因为日心又在绕太阳系质心运动.其实,太阳系的其他天体都是绕太阳系质心运动.类比行星轨道运动特征,本文将太阳轨道运动概括为三个基本定律:第1定律,太阳和行星系质心相对太阳系质心同步运动,其运行轨迹近似为绕太阳系质心旋进和旋出的连续变化的叶形曲线.第2定律,太阳轨道运动具有平均准22.13年方向周期.第3定律,太阳绕太阳系质心运动,当其边缘到达太阳系质心时,太阳轨道运动角速度处于减速状态;当太阳后部边缘即将离开太阳系质心时,太阳轨道运动角速度处于加速状态.  相似文献   

11.
12.
The determination of the coefficient of viscosity of eruptive products gives useful elements to the knowledge of possible variations of composition and physical conditions of the magmas.  相似文献   

13.
14.
Geomagnetism and Aeronomy - The magnetic evolution of the active region of the Sun at the level of the photosphere has been studied. Magnetic synoptic maps of the 2007 Kitt Peak Observatory were...  相似文献   

15.
Until recently, the existing data prevented the geophysicists from accurately dating the Bysy-Yuryakh stratum, which outcrops in the middle reach of the Kotuy River, constraining the time of its formation to a wide interval from the end of the Late Cambrian to the beginning of the Silurian. The obtained paleomagnetic data unambiguously correlate the Bysy-Yuryakh stratum to the Nyaian regional stage and constrain its formation, at least a considerable part of it, by the Tremadocian. This result perfectly agrees with the data on the Bysy-Yuryakh conodonts studied in this work and yields a spectacular example of the successful application of paleomagnetic studies in solving important tasks of stratigraphy and, correspondingly, petroleum geology. Within the Bysy-Yuryakh stratum, we revealed a large normal-polarity interval corresponding to the long (>1 Ma) period when the geomagnetic reversals were absent. This result, in combination with the data for the Tremadocian and Middle–Upper Cambrian sequences of the other regions, indicates that (1) the rate of occurrence of the geomagnetic reversals on the eve of the Ordovician Moyero superchron of reversed polarity was at most one reversal per Ma; (2) the superchron does not switch on instantaneously but is preceded by a certain gradual change in the operation conditions of the dynamo mechanism which, inter alia, manifests itself by the reduction of the frequency of geomagnetic reversals with the approach of the superchron. This finding supports the views according to which a process preparing the establishment of the superchrons takes place at the core–mantle boundary.  相似文献   

16.
Summary A simple model is proposed suitable for studying the effect of the ground layer of the atmosphere, polluted by aerosol, on the albedo. This model is founded on solving the equation of transfer of radiative energy. The numerical results are discussed, particular attention being paid to the analysis of errors due to neglecting the multiple reflection of solar radiation on the aerosol particles. A method which would also include the multiple reflection is proposed, and the conditions under which the presence of the aerosol is responsible for an increase or decrease of the solar radiation balance on the Earth's surface, are analysed.  相似文献   

17.
Резюме Дается вывод формул для вычислений длины хорды, длины и азимутов нормаляных сечений и длины геодезической линии эллипсоида. Применяются тригонометрические функции данных величин и постоянные принятого ргфгргнц-эллипсоида, что является целесообразным при использовании вычислителQjных машин, особенно автоматов. Рабочие формулы рекомендуются в форме (8–11).

Dedicated to Professor František Fiala on His 85th Birthday

Address: Veveři 95, Brno.  相似文献   

18.
Summary The maintenance of the axisymmetric component of the flow in the atmosphere is investigated by means of a steady-state, quasi-geostrophic formulation of the meteorological equations. It is shown that the meridional variations in the time-averaged axisymmetric variables can be expressed as the sum of three contributions, one being due to the eddy heat transport, another to the eddy momentum transport, and a third to the convective-radiative equilibrium temperature which enters the problem through the specification of a Newtonian form of diabatic heating. The contributions by the large scale eddies are evaluated through the use of observed values for the eddy heat and momentum transports.The contributions from each of the three forcing mechanisms to the temperature and zonal wind fields are invstigated individually and found to be of about equal importance. The sum of the three contributions are also presented for the temperature, the zonal wind, the stream function associated with the mean meridional circulation and the corresponding vertical motion. Although the results fail to reproduce the main observed features of the lower stratosphere, they are found to be in good agreement with observations in the middle latitude troposphere. At any pressure level, for example, the computed mean zonal wind has a jet-like profile and the axis of the jet is found to slope to the south with height, as observed in the atmosphere.Based in part on a thesis submitted by the first author as partial fulfillment of the requirements for the Ph.D. degree at the University of Michigan. — Publication No. 194 from the Department of Meteorology and Oceanography, The University of Michigan.  相似文献   

19.
Summary The results of two different methods of the determination of the non-linearity of the gravimeter scale are compared; the economy is discussed as well.  相似文献   

20.
Atmospheric temperature and humidity fields as well as information on other meteorological parameters are nowadays retrieved from radiance measurements recorded by operational meteorological satellites. Up to now, the inversion procedures used only take into account crude information on the topography of the Earth’s surface. However, the applied radiative transfer codes have to consider the Earth’s surface as the lower boundary of the atmospheric model and, therefore, need a more precise mean elevation and a classification of the roughness of the Earth’s surface. The influence of the topography of the Earth surface on retrieved temperature profiles is studied by using a physico-statistical inversion method. An objective analysis is made of the more precise mean elevation and derivation of roughness parameters using a new high-resolution digital elevation model (DEM) with a resolution of 500 m×500 m. By means of a geomorphological process and a newly developed topography rejection test, areas with a high surface roughness are localized and singled out. The influence of topography on the retrieved temperature profiles is illustrated by case studies. Changes are found predominantly in areas with a high variation of topography. Using the new high-resolution DEM and the topography rejection test, the geographical position of the calculated temperature profiles tends to be shifted towards areas with a small vertical variation of topography. The mean elevation determined by the new elevation model better characterizes the area observed. Hence, the temperature profiles can be calculated down to lower atmospheric levels. Furthermore, a guess profile better describing the atmospheric situation is selected by the more precise elevation. In addition, the temperature profiles obtained near the coast are improved considerably by the more precise determination of the surface property ‘sea’ and ‘land,’ respectively. Integration of an independent physical information such as topography leads, on average, to a slight improvement of the results of the physico-statistical inversion procedure. In some cases, however, significant improvements have been achieved regarding the desired accuracy of temperature profiles of the order of 1 K. In future, the spatial resolution of new high-resolution sounding instrumentation on the next generation of operational meteorological satellites will be increased. To exploit the resolving power of this new instrumentation, the different variation of the topography of the Earth surface, especially in regions with a high variation of topography, can be taken into account more precisely by using a high-resolution DEM.  相似文献   

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