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An Externally-Heated Diamond Anvil Cell for Synthesis and Single-Crystal Elasticity Determination of Ice-VII at High Pressure-Temperature Conditions
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Experimental data from ice basin tests with vertically sided cylindrical structures.

Hayo Hendrikse1, Tim C Hammer1, Marnix van den Berg1

  • 1Faculty of Civil Engineering and Geosciences, Department of Hydraulic Engineering, Delft University of Technology, Delft 2628 CN, the Netherlands.

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Summary
This summary is machine-generated.

This study presents a comprehensive dataset on ice-structure interaction using a hybrid test setup. The data, featuring various structures and ice conditions, is valuable for validating dynamic ice-structure interaction models.

Keywords:
CrushingForced vibration testFrequency lock-inIce-induced vibrationIce-structure interactionIntermittent crushingOffshore wind turbineReal-time hybrid testing

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Area of Science:

  • Ocean Engineering
  • Materials Science
  • Civil Engineering

Background:

  • Understanding ice-structure interaction is critical for offshore infrastructure safety.
  • Existing models require validation with diverse, high-fidelity experimental data.
  • Simulating full-scale ice conditions presents significant challenges.

Purpose of the Study:

  • To generate a comprehensive dataset on ice-structure interaction using a real-time hybrid test setup.
  • To provide data for validating numerical models of dynamic ice-structure interaction.
  • To investigate ice loads on various offshore structures, including wind turbines and lighthouses.

Main Methods:

  • Utilized a real-time hybrid test setup combining physical and numerical components at Aalto Ice Tank.
  • Conducted 259 tests with model ice mimicking full-scale saline ice behavior (brittle to ductile transition).
  • Measured ice loads and structural responses using accelerometers, load cells, strain gauges, and filmed interactions.

Main Results:

  • Collected extensive time-series data on ice loads and structural responses for multiple offshore structures.
  • Generated data on ice-structure interaction for vertically sided cylindrical piles.
  • Included data from tests on offshore wind turbines, oscillators, Norströmsgrund lighthouse, and Molikpaq caisson.

Conclusions:

  • The dataset provides a valuable resource for validating dynamic ice-structure interaction models.
  • Offshore wind turbine data can elucidate the combined effects of wind and ice loading.
  • Forced oscillation and reference structure data enable detailed analysis of ice loading characteristics.