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221.
222.
在分类的定义下,根据概念外延的包含关系,给出了质量特征概括的数学模型。在定义数量的基础上,推导出级距概念,并根据两个不同级距的偏序集中大级距子集包含多个小级距子集的关系,给出了数量特征概括的数学模型。本文给出的地物质量特征和数量特征概括的数学模型,可对地图编制过程中诸如随地图比例尺缩小而缩减分类,扩大级差等经验事实,作出定量的描述和理论阐释。 相似文献
223.
基于等高线的DEM生成算法研究和实现 总被引:5,自引:0,他引:5
数字高程模型是近年来发展起来的为地理信息系统提供空间分析和辅助决策的数据基础。随着科学技术特别是计算机技术的迅速发展,DEM在数据获取方法、数据存储和数据处理速度等方面已经取得突破性进展。通过系统介绍生成DTM过程中等高线的离散化方法,DELAUNAY三角网的特性和基于等高线数据的TIN的建立,以及对产生的问题的一些解决方法。 相似文献
224.
等角投影比其它性质投影之研究更为深刻,应用也最为广泛。本文对等角投影的历史发展作了简单回顾,重点对等角投影的数学基础、等角投影的一般公式、等角投影变形量度[8]、具有极值特性的等角投影和探求等角投影的方法等进行了综述。最后提出需要继续研究的若干问题作为等角投影研究展望。 相似文献
225.
Average velocity in streams is a key variable for the analysis and modelling of hydrological and hydraulic processes underpinning water resources science and practice. The present study evaluates the impact of the sampling duration on the quality of average velocity measurements acquired with contemporary instruments such as Acoustic Doppler Velocimeters (ADV) an Acoustic Doppler Current Profilers (ADCP). The evaluation combines considerations on turbulent flows and principles and configurations of acoustic instruments with practical experience in conducting customized analysis for uncertainty analysis purposes. The study sheds new insights on the spatial and temporal variability of the uncertainty in the measurement of average velocities due to variable sampling durations acting in isolation from other sources of uncertainties. Sampling durations of 90 and 150 s are found sufficient for ADV and ADCP, respectively, to obtain reliable average velocities in a flow affected only by natural turbulence and instrument noise. Larger sampling durations are needed for measurements in most of the natural streams exposed to additional sources of data variability. 相似文献
226.
南黄海北部千里岩断裂活动性初探 总被引:2,自引:1,他引:2
在南黄海北部海域首次针对千里岩断裂进行了声波探测。根据声波反射剖面所显示的晚第四纪断裂活动性差异,大致以朝连岛断裂为界,可把千里岩断裂分为2段,南段晚更新世以来不活动,在日照东南海域跨断裂的声波剖面上晚更新世地层没有受到断层错断的影响;北段在晚更新世晚期活动,从千里岩岛西侧至石岛湾以东海域,在声波剖面上可见多处上更新统中上部地层错断现象。虽然自建立测震台网以来沿千里岩断裂及附近海域内尚未发生5级及以上地震,也未见小震丛集现象,但是,千里岩断裂的晚更新世活动段长度>100km,具有发生6·5级左右地震的可能性,在地震预报和地震危险性分析中值得进一步研究 相似文献
227.
Kuster-Toksöz and Biot-Gassmann models for estimating velocities of longitudinal and shear waves on the basis of well-logging data were analysed. P-wave and S-wave velocity models are crucial for interpretation of seismic data. Discussed models enable determination with quite good accuracy, in some cases higher than the acoustic full wavetrains interpretation. Because velocity strongly depends on lithology and saturation of pore space, the selection of parameters of rock matrix, hydrocarbons and formation waters has a strong effect on the quality of velocities estimation. 相似文献
228.
T. Tsuda Y. Masuda H. Inuki K. Takahashi T. Takami T. Sato S. Fukao S. Kato 《Pure and Applied Geophysics》1989,130(2-3):497-507
We have observed the time-height variation of the temperature field in the upper troposphere using a Radio Acoustic Sounding System (RASS) which consists of the MU radar and a high-power acoustic transmitter. The fast beam steerability of the MU radar has made it possible to measure temperature profiles in a fairly wide height range in the upper troposphere (5–11 km), even under intense wind conditions. Observations were continued for about 32 hr on 24–26 December, 1986 with a time-height resolution of 30 min and 150 m. During the observation period, the tropospheric jet was so intense that the acoustic wavefronts were severely distorted. Using wind velocity profiles observed by the MU radar we have numerically estimated the propagation of acoustic wavefronts, and further determined favorable pointing directions for the MU radar to receive significant backscattering from refractive index fluctuations produced by the acoustic waves. Conventional radiosonde soundings were carried out every 6 hr, which showed a temperature decrease of 4 K/day in the upper troposphere during the observation period. Temperature profiles taken by RASS agree well with the radiosonde results. 相似文献
229.
小波分析在声发射资料处理中的初步应用 总被引:1,自引:0,他引:1
针对声发射数据分析的一些难点,把最近20年发展起来的小波技术引入声发射资料处理中,分析证明结果可靠。它在本中的应用有:(1)提取有效信息。小波强大分解(细化0能力可用来从高口音中找出有效记录,分解合成时可以去掉不理想的通道,使声发射数据更加“规则化”,有望实现到时自动判读。(2)对相互叠加的事件进行有效分离。结合全波记录,可使事件尽可能少丢失,提高声发射数量统计及b值计算等的精度。(3)使成份复杂的声发射波形数据分离成具有单一特征的波,但分解后的波究竟属于P波还是S波,甚至面波,尚难确定。 相似文献
230.
Gabriel D. Gwanmesia Baosheng Li Robert C. Liebermann 《Pure and Applied Geophysics》1993,141(2-4):467-484
In the 1960s, E. Schreiber and his colleagues pioneered the use of hot-pressed polycrystalline aggregates for studies of the pressure and temperature dependence of the elastic wave velocities in minerals. We have extended this work to the high-pressure polymorphs of mantle minerals by developing techniques to fabricate large polycrystalline specimens in a 2000-ton uniaxial split-sphere apparatus. A new cell assembly has been developed to extend this capability to pressures of 20 GPa and temperatures of 1700°C. Key elements in the new experimental design include: a telescopic LaCrO3 forT>1200°C; Toshiba Tungaloy grade F tungsten carbide anvils; and the use of homogeneous glasses or seeded powder mixtures as starting material to enhance reactivity and maximize densities. Cell temperatures are linearly related to electrical power to 1700°C and uniform throughout the 3 mm specimens. Pressure calibrations at 25°C and 1700°C are identical to 15 GPa. Cylindrical specimens of the beta and spinel phases of Mg2SiO4, stishovite (SiO2-rutile), and majorite-pyrope garnets have been synthesized within their stability fields in runs of 1–4 hr duration and recovered at ambient conditions by simultaneously decompressing and cooling along a computer-controlledP-T path designed to preserve the high-pressure phase and to relax intergranualar stress in the polycrystalline aggregate. These specimens are single-phased, fine-grained (<5 micron), free of microcracks and preferred orientation, and have bulk densities greater than 99% of X-ray density. The successful fabrication of these high-quality polycrystalline specimens has made possible experiments to determine the pressure dependence of acoustic velocities in the ultrasonics laboratory of S. M. Rigden and I. Jackson at the Australian National University.CHiPR: NSF Science and Technology Center for High Pressure Research. 相似文献