水位观测
- water level observation
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GPS的RTK工作方式用于水下地形测量,可使岸上控制点的布设与水上测量同步进行,并使水位观测和水下地形点高程的测量变得可靠、简便易行。
The GPS - RTK method useds for the underwater topography diagraph , can make the control point to survey with underwater topography measure at the same time , It make water level observation become easy .
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通过实例探讨在水深测量中采用RTK-GPS测高代替水位观测,并简单介绍利用PTK-GPS测高模拟波浪改正的问题。
Adopting RTK-GPS to survey height instead of water level observation in bathymetric survey is discussed through a practical example , and some questions concerning wave correction simulation using RTK-GPS is approached .
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利用Kalman滤波资料同化技术将海洋站水位观测资料融入二维线性风暴潮模式中,研制具有资料同化能力的风暴潮预报模式,改进风暴潮模式计算结果。
Kalman filter data assimilation technique is incorporated into a standard two dimensional linear storm surge model .
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以中国科学院栾城农业生态试验站的地下水位观测资料以及气象资料为基础,综合运用降水、蒸发、土壤水、地下水动态观测资料,利用EARTH模型计算了河北平原地下水垂向入渗补给量。
Observed data of rainfall , evaporation , soil moisture and groundwater are applied synthetically in the transient lumped parameter model ( EARTH ) to calculate vertical recharge of groundwater in Luancheng , Hebei Plain .
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用MISO法进行井水位观测资料中的气压改正问题
The problem of air pressure correction in underground water level data by miso method
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本文将潮汐分析的多道输入单道输出方法(简称MISO法)应用于地下水位观测资料的分析。
In this paper , MISO method is theoretically studied and firstly used to analyses underground water level data .
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气压对水井水位观测的影响
Effects of atmospheric pressure on observations of well water level variations
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湖大井动水位观测及其分析
The measurement and Analysis on moving level of Huda well
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三种验潮方法水位观测性能比较与统计分析
Comparison of Water-level Observation Performance Among Three Tidal Methods and Statistical Analysis
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体膨胀固体潮对水井水位观测的影响
Cubical dilatation effects of earth tide on water level observation in wells
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地下流体水位观测地震前兆机理研究
Research on the earthquake precursor mechanism based on the underground fluid observation
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济南地区地下水位观测井固体潮对比研究
Constrast Study on Solid-tide of Underground Water Level Loggings in Jinan Area
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煤矿井水位观测资料中微弱孕震信息的提取
Extracting the Feebly Seismogenic Signal from Well Water Level Data of Coal Mine
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反漏斗法在含气体地下水位观测井中的利用鲁23井动水位观测的分析
Analysis of dynamic water level observation in No. 23 well , Shandong Province
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气体对地下水位观测质量的影响是比较严重。
The influence of atmosphere on the groundwater level surveying quality is great .
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福州华林井数字化水位观测数据的对比分析
The contrastive analysis of digital water level observation data of Hualin well in Fuzhou
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水位观测仪器的选择与应用
Choice Selection and application of water level measurement
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文中还述及改进动水位观测系统的可能性。
The paper also discussed the possibility of improving the observational system of dynamic water-level .
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潜水含水层水位观测孔水位伪变化的观测与分析
Analysis and Observation of Water Level Pseudo-change of The Observation Hole for The Phreatic Water
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水井含水层系统与水位观测系统对固体潮与地震波的响应
Response of well-aquifer system and water level observation system to earth tides and seismic waves
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动水位观测原理
Observational principle of dynamic water - level
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数字地震深井水温水位观测系统的研发与应用
The development and application of digital earthquake deep well water temperature and water level observation system
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分析了该井水位观测资料潮汐效应,同时指出了影响该井水位观测质量的干扰因素,加深了对怀4井水位资料的认识,有助于今后分析预报水平的提高。
The tidal effect of the data is analyzed , and the interference factors are presented .
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苏丹大坝勘察中地下水水位观测孔的设计及安装工艺
Design and Installation Technique of Water Observation Well in Geotechnical Investigations for Hydropower Projects in Sudan
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认为水井含水层系统与水位观测系统对固体潮与地震波的响应,主要取决于这两个系统的固有周期。
It is considered that the above-mentioned response mainly depends on the intrinsic periods of these two systems .
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本文介绍了鲁23井动水位观测情况。
This paper introduced the " dynamic water level " observation condition in No. 23 well , Shandong Province .
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该计算结果为体应变观测和深井水位观测提供了分析的基础。
Result from the study provides basis for the observation of the volumetric strain and water level in deep wells .
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孔位离散游移式单纯形地下水位观测网优化设计方法
Method of optimal design of groundwater level observation network by means of discrete movement of well location and simplex technique
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本文用这种方法处理了地下水位观测资料,消去固体潮汐的影响。
The author has processed the observed data of groundwater level and eliminated the effect of solid tide using this method .
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闽赣部分地下水位观测井对1986年11月15日台湾地震的异常反映
Anomalous reflection of part of wells of groundwater observation network in min-gan region on the Taiwan earthquake on Nov. 15 , 1986