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海洋测深中的波浪效应改正技术 总被引:3,自引:5,他引:3
以GPS海洋测量手段为代表的现代海洋测量技术已经形成,海洋测量的测深、定位两大主题已得到较好的解决。但是,海洋水深测量数据的改正和归算理论与方法还需要进一步改进。本文对海洋测深中的波浪效应问题进行探讨,提出了波浪效应改正技术,为提高精密海底信息场测量与表征的精度,建立了海洋水深测量数据的改正和归算问题中由波浪效应引起的相关测深改正的数学模型。 相似文献
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在海洋测深中,由于波浪和潮汐的影响,调查船或无人船所测量的瞬时水深不能直接作为海图水深。本文提出了一种新型的无人船海洋水深测量技术,以评估搭载RTK和单波束测深仪的无人船用于海洋水深测量的潜能。首先,使用无人船所搭载RTK的厘米级精度高程数据,通过低通滤波剔除波浪信息,而获得海平面高程。然后,基于潮汐表和无人船海平面高程,构建了一种参考椭球面和海图的两个基准面之差的获取方法;在常规的海洋调查中,该基准面差通常需要由长期的验潮获得。最后,利用海图基准和无人船测量的瞬时水深的转换关系,计算出海图水深。在海南省蜈支洲岛周边海域,利用自研发的无人船“USBV”开展了相关海上实验,以验证所提出的技术方法。实验结果验证了该无人船海洋水深测量技术。 相似文献
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H/HCZ-02型水深测量自动化系统集测量定位、数据采集、实时控制和处理于一体,其工作模式适合新时期海道测量的需要。立足发掘现有设备的潜力,介绍了该型设备的主要特点及在海洋重力、磁力等海洋综合测量中的应用。 相似文献
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姿态传感器在水深测量中的应用 总被引:10,自引:5,他引:5
姿态传感器作为高精度动态海洋测量仪器,已被广泛地与船载海洋测量设备配套使用。姿态传感器能够改正或消除船载仪器由于船体的垂荡、横摇和纵摇引起的测量误差,大大提高测量精度。举例介绍了姿态传感器在单波束和多波束水深测量中的应用,并对姿态传感器的动态补偿特性进行了探讨和分析。 相似文献
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温度、盐度和压力是海洋重要的基本物理特性参数。温盐深测量仪(Conductivity Temperature Depth,CTD)是海水温盐剖面观测的关键仪器,在海洋经济开发、海洋观测、海洋国防建设方面有着极为重要的意义。本文介绍了几种典型的温盐深测量设备及移动观测平台,重点论述了CTD在Argo浮标、水下滑翔机等海洋移动观测平台上的应用现状,分析了水下滑翔机搭载的CTD在热滞效应、湍流等因素影响下产生的测量误差。最后探讨了以水下滑翔机为代表的海洋移动观测平台搭载CTD测量技术的发展趋势及应用前景。 相似文献
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目前,无人水面舰船代表了海洋测量装备自动化、智能化的发展趋势,是海洋测量技术研究的热点。针对浅水区域水下地形复杂、暗礁众多、涌浪较大的特点,对无人水面测量艇水深测量技术进行研究,涉及的关键技术包括船型及推进方式设计、测量设备加装测试、无线数据传输功能、测量艇吊放回收技术等,本文主要围绕船型及推进方式展开研究,提出三体喷水推进无人水面测量艇设计方案,基于该方案实现的测量模式具有很强的机动性和高效性,必将极大地提高测量部门在浅水区域水深数据的快速获取能力。 相似文献
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台湾浅滩海底沙波精细特征、分类与分布规律 总被引:2,自引:2,他引:0
迄今由于缺乏高精度的实测水深数据,对台湾浅滩沙波的精细结构缺乏详细的阐述。本文基于多波束实测资料研究台湾浅滩沙波形态的精细特征及其分布规律。多波束探测结果显示:研究区沙波的平均波高达到13.5m,沙波波峰处水深为20.42m,沙波平均波高约为水深的2/3,沙波的波长大多数处于500~700m之间。研究区内主要发育3种类型的沙波,即摆线型沙波、余弦型沙波和双峰型沙波。研究区西部主要发育双峰型沙波,中部则主要发育余弦型和摆线型沙波,而东部主要发育摆线型沙波,整个区域以摆线型沙波为主。海平面波动、台湾海峡复杂的水动力条件以及台湾岛丰富的山溪河流携带的大量沉积物进入海峡,对浅滩区的沙波具有强烈的改造作用。 相似文献
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本文对动态测量中偏心改正的原理、方法及其精度进行了探讨.在大比例尺工程水深测量定位中,若测深仪换能器与定位系统接收天线不处于同一铅垂线上,并且偏心过大,超过定位精度要求时,必须进行偏心改正.经过偏心改正后的定位精度才能保证大比例尺测图定位要求. 相似文献
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A new method for weakening the combined effect of residual errors on multibeam bathymetric data 总被引:2,自引:0,他引:2
Jianhu Zhao Jun Yan Hongmei Zhang Yuqing Zhang Aixue Wang 《Marine Geophysical Researches》2014,35(4):379-394
Multibeam bathymetric system (MBS) has been widely applied in the marine surveying for providing high-resolution seabed topography. However, some factors degrade the precision of bathymetry, including the sound velocity, the vessel attitude, the misalignment angle of the transducer and so on. Although these factors have been corrected strictly in bathymetric data processing, the final bathymetric result is still affected by their residual errors. In deep water, the result usually cannot meet the requirements of high-precision seabed topography. The combined effect of these residual errors is systematic, and it’s difficult to separate and weaken the effect using traditional single-error correction methods. Therefore, the paper puts forward a new method for weakening the effect of residual errors based on the frequency-spectrum characteristics of seabed topography and multibeam bathymetric data. Four steps, namely the separation of the low-frequency and the high-frequency part of bathymetric data, the reconstruction of the trend of actual seabed topography, the merging of the actual trend and the extracted microtopography, and the accuracy evaluation, are involved in the method. Experiment results prove that the proposed method could weaken the combined effect of residual errors on multibeam bathymetric data and efficiently improve the accuracy of the final post-processing results. We suggest that the method should be widely applied to MBS data processing in deep water. 相似文献
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Nathaniel G. Plant Kacey L. Edwards James M. Kaihatu Jayaram Veeramony Larry Hsu K. Todd Holland 《Coastal Engineering》2009
Nearshore wave and flow model results are shown to exhibit a strong sensitivity to the resolution of the input bathymetry. In this analysis, bathymetric resolution was varied by applying smoothing filters to high-resolution survey data to produce a number of bathymetric grid surfaces. We demonstrate that the sensitivity of model-predicted wave height and flow to variations in bathymetric resolution had different characteristics. Wave height predictions were most sensitive to resolution of cross-shore variability associated with the structure of nearshore sandbars. Flow predictions were most sensitive to the resolution of intermediate scale alongshore variability associated with the prominent sandbar rhythmicity. Flow sensitivity increased in cases where a sandbar was closer to shore and shallower. Perhaps the most surprising implication of these results is that the interpolation and smoothing of bathymetric data could be optimized differently for the wave and flow models. We show that errors between observed and modeled flow and wave heights are well predicted by comparing model simulation results using progressively filtered bathymetry to results from the highest resolution simulation. The damage done by over smoothing or inadequate sampling can therefore be estimated using model simulations. We conclude that the ability to quantify prediction errors will be useful for supporting future data assimilation efforts that require this information. 相似文献
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受声线弯曲的影响,多波束测深的边缘波束的数据质量较低,而单波束测深受声线弯曲的影响比较小。结合多波束覆盖面大和声速剖面误差对单波束影响相对较小的特点,研究了多波束和单波束的测深数据融合方法,利用同一位置单波束和多波束测深数据的差值,拟合一个与坐标位置相关的误差模型,并利用该误差曲面对多波束测深数据进行综合改正,从而提高多波束测深的数据质量。 相似文献