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Simulation and prediction of geologic hazards and the impacts on homestay buildings in scenery spots through BIM
by
Zou, Linfeng
, Gui, Weimin
in
Building construction
/ Building information modeling
/ Building management systems
/ Buildings
/ Burning
/ Computer Simulation
/ Construction
/ Construction Industry - methods
/ Construction methods
/ Design and construction
/ Disaster Planning - methods
/ Disasters
/ Disasters - prevention & control
/ Earth Sciences
/ Earthquake damage
/ Earthquakes
/ Ecology and Environmental Sciences
/ Emergency communications systems
/ Engineering and Technology
/ Environmental risk
/ Geological hazards
/ Geological Phenomena
/ Geology
/ Hazardous geographic environments
/ Housing
/ Humans
/ Landslides
/ Landslides & mudslides
/ Lodgings
/ Methods
/ Monitoring
/ Monitoring systems
/ Physical Sciences
/ Prediction models
/ Proportional Hazards Models
/ Research and Analysis Methods
/ Risk Assessment - methods
/ Safety
/ Safety and security measures
/ Safety engineering
/ Seismic activity
/ Seismic engineering
/ Shaking
/ Simulation
/ Technology
/ Three dimensional models
/ Tourists
/ Warning systems
2020
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Simulation and prediction of geologic hazards and the impacts on homestay buildings in scenery spots through BIM
by
Zou, Linfeng
, Gui, Weimin
in
Building construction
/ Building information modeling
/ Building management systems
/ Buildings
/ Burning
/ Computer Simulation
/ Construction
/ Construction Industry - methods
/ Construction methods
/ Design and construction
/ Disaster Planning - methods
/ Disasters
/ Disasters - prevention & control
/ Earth Sciences
/ Earthquake damage
/ Earthquakes
/ Ecology and Environmental Sciences
/ Emergency communications systems
/ Engineering and Technology
/ Environmental risk
/ Geological hazards
/ Geological Phenomena
/ Geology
/ Hazardous geographic environments
/ Housing
/ Humans
/ Landslides
/ Landslides & mudslides
/ Lodgings
/ Methods
/ Monitoring
/ Monitoring systems
/ Physical Sciences
/ Prediction models
/ Proportional Hazards Models
/ Research and Analysis Methods
/ Risk Assessment - methods
/ Safety
/ Safety and security measures
/ Safety engineering
/ Seismic activity
/ Seismic engineering
/ Shaking
/ Simulation
/ Technology
/ Three dimensional models
/ Tourists
/ Warning systems
2020
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Do you wish to request the book?
Simulation and prediction of geologic hazards and the impacts on homestay buildings in scenery spots through BIM
by
Zou, Linfeng
, Gui, Weimin
in
Building construction
/ Building information modeling
/ Building management systems
/ Buildings
/ Burning
/ Computer Simulation
/ Construction
/ Construction Industry - methods
/ Construction methods
/ Design and construction
/ Disaster Planning - methods
/ Disasters
/ Disasters - prevention & control
/ Earth Sciences
/ Earthquake damage
/ Earthquakes
/ Ecology and Environmental Sciences
/ Emergency communications systems
/ Engineering and Technology
/ Environmental risk
/ Geological hazards
/ Geological Phenomena
/ Geology
/ Hazardous geographic environments
/ Housing
/ Humans
/ Landslides
/ Landslides & mudslides
/ Lodgings
/ Methods
/ Monitoring
/ Monitoring systems
/ Physical Sciences
/ Prediction models
/ Proportional Hazards Models
/ Research and Analysis Methods
/ Risk Assessment - methods
/ Safety
/ Safety and security measures
/ Safety engineering
/ Seismic activity
/ Seismic engineering
/ Shaking
/ Simulation
/ Technology
/ Three dimensional models
/ Tourists
/ Warning systems
2020
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Simulation and prediction of geologic hazards and the impacts on homestay buildings in scenery spots through BIM
Journal Article
Simulation and prediction of geologic hazards and the impacts on homestay buildings in scenery spots through BIM
2020
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Overview
The objectives are exploring the impacts of geologic hazards on the construction of homestays, improving the safety of homestay buildings, guaranteeing the safety of tourists, and enhancing the disaster-resistance of homestays in scenery spots. The computer simulation system and Building Information Modeling (BIM) technology are employed to construct a geologic hazard prediction model for homestays. The model utilizes a time history method to establish a complete early-warning and monitoring system by learning the geologic disaster data. The detection of various geologic hazards has verified the effectiveness of the proposed model. The results show that the model can reduce the losses in the case of water accumulation and landslides during storms, and the BIM technology-based homestay buildings will suffer fewer losses. In the case of earthquakes, BIM technology-based homestay buildings have no noticeable shaking and displacement. Compared to traditional construction methods, the displacement is reduced by 49.15%. In the case of a spontaneous fire, the burning area of the BIM technology-based homestay building is only 270m2. The most severe factors affecting the construction of homestay buildings are earthquakes and landslide risks. The BIM technology generates 3D building planning; therefore, planners can fully understand the problems in the building. In the meantime, the multi-source monitoring data of multiple geologic hazards can be monitored and fed back, thereby improving the timeliness of early-warning of geologic hazards. The results are of considerable significance to the prevention of losses caused by geologic hazards, which can significantly improve the understanding of geologic hazards.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Building information modeling
/ Burning
/ Construction Industry - methods
/ Disasters - prevention & control
/ Ecology and Environmental Sciences
/ Emergency communications systems
/ Geology
/ Hazardous geographic environments
/ Housing
/ Humans
/ Lodgings
/ Methods
/ Research and Analysis Methods
/ Safety
/ Safety and security measures
/ Shaking
/ Tourists
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