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Monitoring
 
 
 Man-Made Structures
 
 
  Yesterday’s Negligence Becomes Today’s Problem
 
 
  Structural Monitoring of Michigan’s Highway Bridges
 
 
  Real Time Bridge Deck Guidance Using GNSS Systems, Spain
 
 
  GNSS Guide System for Pile Embedding Port of Cádiz, Spain
 
 
  Railway Bridge Monitoring Kirchtobel, Switzerland
 
 
  Monitoring a dam wall in a Polish Copper Ore Enrichment Facility, Poland
 
 
  Monitoring of Excavation Slopes in an Open Pit Mine
 
 
  Monitoring Along the Construction Site of the Warsaw Metro Line 2
 
 
  Monitoring Bridge Structures Under Static Loads
 
 
  Monitoring System for Hong Kong Airport Express Line
 
 
  Monitoring Rail Tracks during Construction of Noise Barriers, Hong Kong
 
 
  Monitoring System at Tsuen Wan West Station, MTR West Rail Line
 
 
  Monitoring of the Central-Wanchai Bypass During Construction
 
 
  Slope Monitoring at Adaro Tutupan Coal Mine, Indonesia
 
 
  Concrete Dam Monitoring in Montereale Valcellina, Italy
 
 
  Chemical Plant Monitoring
 
 
  Rail Tunnel Monitoring in Sochi, Russia
 
 
  Heavy Loads on Weak Foundations
 
 
  Controlling The Bow
 
 
  Monitoring Europe’s Tallest Building
 
 
  Swiss Bridge, Visible World-wide
 
 
  Monitoring Toronto’s Union Station
 
 
  Accurate GNSS Everywhere with SmartNet
 
 
  A New Network for a Town Torn in Two
 
 
  Automated Deformation Monitoring Apollo Bridge, Bratislava, Slovakia
 
 
  Slope Stability Monitoring Brown Coal Excavation, Czech Republic
 
 
  Gateway to Korea
 
 
  Tunneldrive Scanning with Leica HDS6000
 
 
  57 km long and in the right Place
 
 
  A City on the Move
 
 
  Volume computation, Bonfol special waste
 
 
  Track Monitoring Traunstein, Germany
 
 
  Real Time GNSS Bridge Monitoring
 
 
  Monitoring of Rail Tracks and Construction Site
 
 
  Monitoring of Dikes with 3D Laser Scanning
 
 
  First Monitoring Project in Slovenia
 
 
  Owen Street Level Crossing, Tipton
 
 
  Urban Excavation
 
 
  Rail bridge reconstruction
 
 
  Burj Dubai
 
 
  Al Hamra Tower
 
 
  Hong Kong Airport Express Line
 
 
  Jiangyin Bridge, China
 
 
  Slope Stability Monitoring, Navachab, Namibia
 
 
  Slope Stability Monitoring, Orapa Mine, Botswana
 
 
  Excavation Monitoring Ennetbaden, Switzerland
 
 
  High Speed Railway Construction, Bologna, Italy
 
 
  Slope Stability Monitoring, Jwaneng, Botswana
 
 
  Motorway Surface Monitoring, Northamptonshire, UK
 
 
  Ski Lift Monitoring, Zermatt, Switzerland
 
 
  Rail Monitoring, East London, UK
 
 
  Bridge Jacking East London
 
 
  Railway Monitoring Sheung Shui Station, Hong Kong
 
 
  Control of convergences in M-111 tunnels, Spain
 
 
  Dam Monitoring in Carbonia, Italy
 
 
  Rock Stability Monitoring, Interlaken, Switzerland
 
 
  Monitoring Land Forms in the Swiss Alps
 
 
  Northern Italian Reservoir
 
 
  GPS along the Danube
 
 
  Sydney Opera House
 
 
  Tsing Ma bridge - Hong Kong
 
 
  Yang-Pu bridge - Shanghai
 
 
  Akashi Strait suspension
 
 
  Vereina Tunnel - Switzerland
 
 
  Hornberg Reservoir
 
 
  Deformation monitoring
 
 
 Natural Phenomenons
 
 
Other
 

Jiangyin Bridge, China

Bridge Monitoring with Leica GPS RTK technology
The Jiangyin Yangtze River Highway Bridge is the first super-large steel box-girder suspension bridge that spans more than one kilometer in China. It is the longest steel boxgirder suspension bridge in China, the fourth longest in the whole World. It services a superhighway which is the national key trunk
route crossing the Yangtze River. The Jiangyin Yangtze River Highway Bridge is the second suspension bridge that was constructed over the Yangtze River. It lies between Jiangyin and Jingjiang of Jiangsu Province, at the lower reaches of Yangtze River.
The upgrade and modification of the superstructure health monitoring system of Jiangyin Yangtze River Highway Bridge was completed using the Leica Geosystems' GPS monitoring system that focused on the monitoring of the girder geometric form and the displacement of the bridge towers. The challenge was to provide a cost effective and innovative solution for delivering 3D positioning information at 20 Hz from several GPS Monitoring stations to an advanced analysis application software developed by the engineering company in charge of the whole structural monitoring project.

 
 

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