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81.
地心非旋转坐标系中的TWSTT计算模型   总被引:1,自引:0,他引:1  
根据卫星双向时间传递(TWSTT)的基本原理,详细推导了地心非旋转坐标系中TWSTT的计算模型.并与地固系中的计算模型进行了分析比较,证明了两种计算模型在0.1ns亚纳秒量级上的等价性。  相似文献   
82.
柏睿  李韧  吴通华  杜宜臻 《冰川冻土》2019,41(6):1441-1447
水汽是形成云和降水的物质基础,与全球水分循环和能量平衡密切相关,对天气和气候具有重要影响。基于NCEP/NCAR月值再分析资料,综合分析我国东北地区上空不同高度层位比湿的气候学特征和长期趋势变化,同时分析了整层积分水汽通量的季节变化。结果表明:东北地区空中水汽集中分布于500 hPa以下,1979年至20世纪末低层比湿呈增加趋势,2000年后转为缓慢下降,但2012年以来波动回升。此外,东北地区比湿及水汽通量季节差异明显,夏季水汽含量最多,冬季最少,秋季多于春季;东北地区水汽含量最大值出现于7月,最低值出现在每年12月至次年1月。水汽来源受东亚季风系统影响明显,夏季水汽源地主要为南海,渤海和黄海对东北地区夏季水汽也有一定贡献;其他季节水汽主要来源于西风带输送。  相似文献   
83.
西南印度洋中脊是典型的慢速扩张洋中脊之一。对采自西南印度洋中脊50°E附近的7件玄武岩和蛇纹石化橄榄岩样品所作的分析表明,基性玄武岩类SiO2含量为43.72%~48.40%,TiO2含量较少,为1.14%~1.52%;MgO含量为5.96%~10.98%;TFe2O3含量为4.55%~5.2%;Mg#值为0.53~0.64,里特曼指数σ为2.34~20.10。微量元素Zr/Nb和Y/Nb比值为显示N-MORB的性质,但是其他微量元素的比值(Ba/Nb,Ba/Th,La/Nb,Nb/U,Nb/Pb)均不显示正常洋中脊玄武岩的特征,微量元素原始地幔标准化蛛网图显示强烈富集K和Pb,亏损Nb,稀土元素显示较为平缓的分配模式。超基性蛇纹石化橄榄岩的主量元素特征为SiO2为38.91~45.49;TiO2含量为0.02~0.28;MgO含量很高,为36.87~40.61,TFe2O3含量为2.82~3.91,Mg#值为0.92~0.94。微量元素中Ni,Cr的含量很高,原始地幔标准化蛛网图显示橄榄岩强烈富集K和Pb,Ba,Th,La,Ce,Ti中等程度富集,而亏损Nb,Sr。稀土元素总量较低,标准化曲线显示轻稀土元素富集模式。结合地球化学特征及前人研究资料分析认为,西南印度洋中脊的基性岩和超基性岩属同源性质,其原始地幔物质可能为部分正常洋中脊亏损地幔混染了陆壳或远洋沉积物的结果。  相似文献   
84.
分析比对了GPS单点测速技术与其他已有测波手段的不同,讨论了基于多普勒频移的GPS测速方法,并分析了各类误差对测速精度的影响。分别利用原始多普勒值和导出多普勒值进行了静态测速试验和动态测速试验,将导出多普勒测速结果与RTK(RealTimeKinematic,实时动态测量系统)位置差分测速进行了比测。结果表明,使用静态数据采用高频导出多普勒值测速的精度可以达到亚厘米级每秒,而采用原始多普勒观测值进行测速因接收机型号的不同,结果差异较大;动态测速试验中,采用导出多普勒测速的方法与RTK位置差分测速的符合精度可达cm/s。  相似文献   
85.
本文针对鲜有报道的含霞石翡翠,选择了若干具有代表性的样品进行了详细的岩相学、矿物化学、拉曼光谱和X射线粉晶衍射等方面的研究,并对其成因进行了深入探讨。本研究中的样品属于翡翠中的“飘蓝花”品种,为柱粒状结构,主要由硬玉、霞石、角闪石和少量的钡铝硅酸盐等组成。硬玉可分为两个世代,早期硬玉呈自形,发育规则的环带结构,反映了成岩流体的反复补给过程。早期自形的硬玉颗粒部分被后期细粒化的硬玉±角闪石取代,反映了后期流体事件的改造作用。根据产出和成分特征可将霞石分为两种:贫钾霞石和富钾霞石,其中贫钾霞石多沿自形的硬玉颗粒边界分布,而富钾霞石充填在自形的硬玉颗粒之间。根据结构特征可以推测,含霞石翡翠主要是从成岩流体中直接结晶形成的。矿物组成及其成分特征表明该成岩流体主要富集Na、Al、Si、K、Ba以及少量的Ca、Fe、Mg等元素,微量元素则相对富集LREE、HFSE和Sr等元素。结合样品中的矿物相关系和前人的研究结果,含霞石翡翠中硬玉的结晶压力和温度范围分别被限制在0.6~1.4GPa和300~450℃之间,其中霞石代表着母岩减压后流体活动的产物。  相似文献   
86.
王永力  宋锐  黄志斌  薛峰  左如斌 《地震》2001,21(4):118-121
国家数字地震台网47个数字化地震观测台站的地动实时观测数据,通过卫星信道传送到国家数字地震台网中心,再经信号分配器传至7台实时处理机。47个台的信号分成3个区域以3组计算机互为实时热备份的方式接收和处理地动波形数据。  相似文献   
87.
一个两时间层分裂显格式海洋环流模式(MASNUM)及其检验   总被引:1,自引:0,他引:1  
A two-time-level, three-dimensional numerical ocean circulation model(named MASNUM) was established with a two-level, single-step Eulerian forward-backward time-differencing scheme. A mathematical model of large-scale oceanic motions was based on the terrain-following coordinated, Boussinesq, Reynolds-averaged primitive equations of ocean dynamics. A simple but very practical Eulerian forward-backward method was adopted to replace the most preferred leapfrog scheme as the time-differencing method for both barotropic and baroclinic modes. The forward-backward method is of second-order of accuracy, computationally efficient by requiring only one function evaluation per time step, and free of the computational mode inherent in the three-level schemes. This method is superior to the leapfrog scheme in that the maximum time step of stability is twice as large as that of the leapfrog scheme in staggered meshes thus the computational efficiency could be doubled. A spatial smoothing method was introduced to control the nonlinear instability in the numerical integration. An ideal numerical experiment simulating the propagation of the equatorial Rossby soliton was performed to test the amplitude and phase error of this new model. The performance of this circulation model was further verified with a regional(northwest Pacific) and a quasi-global(global ocean simulation with the Arctic Ocean excluded) simulation experiments. These two numerical experiments show fairly good agreement with the observations. The maximum time step of stability in these two experiments were also investigated and compared between this model and that model which adopts the leapfrog scheme.  相似文献   
88.
实验室培养端足类日本大螯蜚对镉的毒理敏感性研究   总被引:2,自引:0,他引:2  
沉积物毒性生物检测是沉积物环境质量评价重要内容之一[1].在沉积物毒性生物检测实验中,常用的受试生物有端足类(Amphipoda)、多毛类(Polychaeta)、软体动物(Mollusca)、棘皮动物(E-chinodermata)和枝角类(Cladocera)等中的部分种类[2-3].端足类是目前开展海洋沉积物毒性检测的优选受试生物,对其研究工作进行的最多,经验积累也最丰富,用其进行的有关沉积物毒性检测的方法也比较成熟[3].目前国外已有20多种海洋端足类用于沉积物毒性生物检测中.野生受试生物受季节、数量的限制不能满足检测工作的需要.  相似文献   
89.
In consideration of the rapid degradation of coral reef ecosystems, the establishment of models is helpful to comprehend the degradation mechanism of coral reef ecosystems and predict the development process of coral reef communities. According to the characteristics of complex ecosystem of tropical coral reefs in China, the coral reef functional group is the core level variable; combined with the multiple feedback effects of coral reef functional groups and environmental changes, the study presents a coral reef ecosystem dynamics model with hermatypic corals as the core. Based on the simulation of the assumed initial value and the internal feedback of the system, the results show that in the basic simulation(relative health conditions), the coverage area of live corals and coral reefs generally decreased first and then increased, and increased by 4.67% and 6.38% between2010 and 2050, respectively. Based on the calibration model and the current situation of the studied area, the multi-factor disturbance effects of coral reef communities were simulated and explored by setting up three scenarios involving fishing policy, terrestrial deposition, and inorganic nitrogen emissions. Among them, in the single factor disturbance, the fishing policy exerts the most direct impact on the community decline; and the succession phenomenon is obvious; the terrestrial sedimentation has a faster and more integrated effect on the community decline; the effect of inorganic nitrogen emission on the community decline is relatively slow. In the double/multi-factor disturbance, the superimposed disturbance will aggravate the multi-source feedback effect of the coral reef communities development, accelerate the community decay rate, and make its development trajectory more complicated and diverse. This method provides a scientific and feasible method for simulating the damage of long-term coral reef community and exploring the development law and adaptive management of coral reef ecosystems. In the future, it can be further studied in the ecological restoration process and decisionmaking direction of coral reefs.  相似文献   
90.
Research on photosynthetic cnidarians has been mainly focused on the symbiosis established between the cnidarian host and its dinoflagellates endosymbionts from genus Symbiodinium. Despite the potential of imaging techniques for assessing the spatial distribution of key parameters of cnidarian photobiology, such as photochemical activity, chlorophyll a content or green fluorescent proteins (GFPs), to our best knowledge, no study has ever attempted to simultaneous map these three features. In this study, we developed a modified imaging pulse amplitude fluorometer by applying excitation light of different wavelengths and selectively detecting short spectral bands through bandpass filters. The imaging system was used to sequentially excite and quantify chlorophyll variable fluorescence (maximum quantum yield of photosystem II, Fv/Fm), Chl a content (normalized difference vegetation index) and relative content of GFPs. The spatial distribution of these photophysiological parameters was mapped both horizontally, across the surface of the soft corals Sarcophyton cf. glaucum and Sinularia flexibilis and the zoanthid Protopalythoa sp., and vertically, throughout a vertical section of S. cf. glaucum. Results showed bleached areas within each individual coral colony and registered photophysiological changes with S. cf. glaucum tissue depth. Analysis of Protopalythoa sp. polyps’ expansion revealed differential surface patterns of NDVI and GFP concentration, and a negative relation between these latter parameters within each polyp. This novel non‐invasive approach allowed a high‐resolution characterization of the spatial relationship between these key parameters through the analysis of image information on a pixel‐by‐pixel basis, which has great potential for investigating the physiological state of symbiotic associations.  相似文献   
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