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Titlebook: Advances on Testing and Experimentation in Civil Engineering; Geotechnics, Transpo Carlos Chastre,José Neves,Paulina Faria Book 2023 The Ed

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Advances in Wave Run-Up Measurement Techniqueswave run-up measures include the prediction of flood events during storms, the design of coastal structures and the assessment of vulnerability in coastal management plans. This chapter gives a general overview of the techniques adopted to measure wave run-up. Traditional techniques, such as resista
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Recent Advances in Instrumentation and Monitoring Techniques Applied to Dam Breach Experimentsflows. Instrumentation and monitoring techniques in laboratory environment must be able to capture this complexity and scale amplitude and should be, preferentially, non-intrusive, particularly if the failure event is related with earth dams, where erosion patterns may be affected by instrument intr
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Bridging the Water Gap Between Neighboring Countries Through Hydrometeorological Data Monitoring andin France establishing the first experimental relation between these two physical quantities. Today highly sophisticated models mimicking the atmosphere-soil-vegetation interactions are used to simulate the flows but its proper calibration depends on good hydrometeorological data. New measuring tech
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In Situ Geotechnical Investigationsuse of indirect (geophysical techniques) and direct methods (boreholes and excavation techniques), as well as in situ tests in soils and rock masses. Although most of these methods have been created at the beginning of the twentieth century, they have evolved dramatically in the last decades to comp
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Laboratory and Field Testing of Rock Masses for Civil Engineering Infrastructures small size specimens could not be representative of the behaviour of the rock mass led to the emergence and development of specific in situ tests, where comparatively large rock mass volumes are tested in order to estimate engineering properties suitable for design. This chapter presents laboratory
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Testing and Monitoring of Earth Structureshnical structures. This new need justifies the investment on developing sensors able to be used for in situ monitoring of water in the soils, such as those presented here. Testing and monitoring becomes even more important nowadays when, for sustainability purposes, traditional construction material
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Offshore Wind Foundation Monitoring and Inspectiontroleum Institute (API) and Det Norske Veritas (DNV), designers increasingly resort to advanced design methodologies to improve the accuracy of their models and reduce conservativism in the industry. Improvements on both the axial and lateral geotechnical models of the foundation structures are bein
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