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861.
正一、前言在传统的监测应用中,测量机器人和GNSS是两种常见的设备,两者可单独工作,也可以协同作业:测量机器人适合密集棱镜集群监测,GNSS适合高频或静态高精度监测。通过将两者结合在一起,徕卡提供了大坝、桥梁、地铁、滑坡、高层建筑等各个行业的解决方案。随着监测工作的日渐深入,对被监测物体超密集快速监测的功能成为客户的新需要。扫描技术成为最新的监测应用,徕卡MS50全站扫描仪一经推出,就全方位地满足了各个行业客  相似文献   
862.
3S技术因具有快速、准确、实时的导航定位、对地实测和强大的空间信息加工、处理和分析能力,在国防、气象、灾害监测与环境保护、能源、交通、土地资源勘察等领域得以广泛应用。辽宁省海岛地名普查首次采用了3S技术,实现了海岛地名信息和海岛地理基础数据调查与管理的一体化,达到了海岛地理实体、数据信息、外业调查照片的一致性,建立了海岛地名信息系统。详细介绍了辽宁省海岛地名调查中,3S技术在数字化、导航定位和信息识别、提取、勘测、分析、处理以及数据集成等环节中的应用。  相似文献   
863.
Using numerical simulation data of the forward differential propagation shift (ΦDP) of polarimetric radar,the principle and performing steps of noise reduction by wavelet analysis are introduced in detail.Profiting from the multiscale analysis,various types of noises can be identified according to their characteristics in different scales,and suppressed in different resolutions by a penalty threshold strategy through which a fixed threshold value is applied,a default threshold strategy through which the threshold value is determined by the noise intensity,or a ΦDP penalty threshold strategy through which a special value is designed for ΦDP de-noising.Then,a hard-or soft-threshold function,depending on the de-noising purpose,is selected to reconstruct the signal.Combining the three noise suppression strategies and the two signal reconstruction functions,and without loss of generality,two schemes are presented to verify the de-noising effect by dbN wavelets:(1) the penalty threshold strategy with the soft threshold function scheme (PSS); (2) the ΦDP penalty threshold strategy with the soft threshold function scheme (PPSS).Furthermore,the wavelet de-noising is compared with the mean,median,Kalman,and finite impulse response (FIR) methods with simulation data and two actual cases.The results suggest that both of the two schemes perform well,especially when ΦDP data are simultaneously polluted by various scales and types of noises.A slight difference is that the PSS method can retain more detail,and the PPSS can smooth the signal more successfully.  相似文献   
864.
This paper reviews recent progress in the development of the Beijing Climate Center Climate System Model(BCC-CSM) and its four component models(atmosphere,land surface,ocean,and sea ice).Two recent versions are described:BCC-CSM1.1 with coarse resolution(approximately 2.8125°×2.8125°) and BCC-CSM1.1(m) with moderate resolution(approximately 1.125°×1.125°).Both versions are fully coupled climate-carbon cycle models that simulate the global terrestrial and oceanic carbon cycles and include dynamic vegetation.Both models well simulate the concentration and temporal evolution of atmospheric CO_2 during the 20th century with anthropogenic CO2 emissions prescribed.Simulations using these two versions of the BCC-CSM model have been contributed to the Coupled Model Intercomparison Project phase five(CMIP5) in support of the Intergovernmental Panel on Climate Change(IPCC) Fifth Assessment Report(AR5).These simulations are available for use by both national and international communities for investigating global climate change and for future climate projections.Simulations of the 20th century climate using BCC-CSMl.l and BCC-CSMl.l(m) are presented and validated,with particular focus on the spatial pattern and seasonal evolution of precipitation and surface air temperature on global and continental scales.Simulations of climate during the last millennium and projections of climate change during the next century are also presented and discussed.Both BCC-CSMl.l and BCC-CSMl.l(m) perform well when compared with other CMIP5 models.Preliminary analyses indicate that the higher resolution in BCC-CSM1.1(m) improves the simulation of mean climate relative to BCC-CSMl.l,particularly on regional scales.  相似文献   
865.
The Hong Kong Observatory (HKO) has been developing a suite of nowcasting systems to support op- erations of the forecasting center and to provide a variety of nowcasting services for the general public and specialized users. The core system is named the Short-range Warnings of Intense Rainstorm of Localized Systems (SWIRLS), which is a radar-based nowcasting system mainly for the automatic tracking of the movement of radar echoes and the short-range Quantitative Precipitation Forecast (QPF). The differential, integral (or variational), and object-oriented tracking algorithms were developed and integrated into the nowcasting suite. In order to predict severe weather associated with intense thunderstorms, such as high gust, hail, and lightning, SWIRLS was enhanced to SWIRLS-II by introduction of a number of physical models, especially the icing physics as well as the thermodynamics of the atmosphere. SWIRLS-Ⅱ was further enhanced with non-hydrostatic, high resolution numerical models for extending the forecast range up to 6h ahead. Meanwhile, SWIRLS was also modified for providing nowcasting services for aviation community and specialized users. To take into account the rapid development of lightning events, ensemble nowcasting techniques such as time-lagged and weighted average ensemble approaches were also adopted in the nowcasting system. Apart from operational uses in Hong Kong, SWIRLS/SWIRLS-Ⅱ was also exported to other places to participate in several international events such as the WMO/WWRP Forecast Demon- stration Project (FDP) during the Beijing 2008 Olympics Games and the Shanghai Expo 2010. Meanwhile, SWIRLS has also been transferred to various regional meteorological organizations for establishing their nowcasting infrastructure. This paper summarizes the history and the technologies of SWIRLS/SWIRLS-Ⅱ and its variants and the associated nowcasting applications and services provided by the HKO since the mid 1990s.  相似文献   
866.
王凯  刘鹏飞 《测绘通报》2022,(11):132-134
随着测绘地理信息技术和BIM技术在城市发展中的深入应用,城市级地下管网BIM建设成为智慧城市建设三维实景中国建设中的必要一环。本文结合新型基础测绘在地下空间测绘中的应用,提出利用地下管网测绘数据与BIM深度融合技术快速构建城市级地下管网BIM的技术流程和体系,构建了城市级别(GIS)场景下的精细化BIM模型,实现了测绘数据与设计数据的无缝融合,打通了多专业协同中与测绘数据融合的通道,为看不见的地下城市建设提供准确的三维空间数据底座。基于本文研究成果,以某城市为应用案例,在城市排水管网改造工程、智慧水务云平台建设、智慧管廊施工管理等领域进行了应用,验证了本文研究的可行性、有效性和应用价值。  相似文献   
867.
868.
姚宜斌  赵庆志 《测绘学报》2022,51(6):935-952
对流层是近地空间环境中与人类活动联系最为密切的大气层,而水汽是低层大气圈中最重要的组成部分之一。尽管水汽在对流层中所占比例较小,但在一系列天气和多种气候变化中都扮演着重要角色。随着全球导航卫星系统(GNSS)的快速发展,GNSS对流层水汽监测成为重要的研究和应用方向。本文系统介绍了GNSS多维水汽监测及其在相关方面应用的研究现状和进展。GNSS水汽监测研究方面,当前主要集中在二维大气可降水量监测和三维湿折射率/水汽密度廓线反演两部分;GNSS水汽应用研究方面,当前主要包括定位、短临降雨及旱涝监测、数值同化预报等。  相似文献   
869.
张辉 《地下水》2014,(6):164-165
通过水文气象数据,建立系统模型对某一水体、某一地区或某一水文站在未来一定时间内的水文情况做出科学准确可靠的高精度预测,T提高对防洪、抗旱、水资源合理利用和国防事业中的应用。总结分析中长期水文预报模型的现状及传统模型存在的问题,讨论灰色水文预报模型详细构建步骤及模型精度检验方法,并通过实例数据分析验证构建的灰色水文预报模型的可行性与可靠性。  相似文献   
870.
高文信 《云南地质》2014,(2):264-267
通过对某龙江电站坝址左岸一滑坡进行分析、评价,经综合比较,确定抗滑桩治理方案,并对抗滑桩进行优化设计,保证了工程质量,节省了投资.  相似文献   
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