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The elastic deformations of a flat rectangular plate generated during the water entry at high horizontal velocity are investigated both experimentally and theoretically by using a simplified model to derive the out-of-plane displacement as well as the strain everywhere on the plate. Tests were performed on an aluminum plate thick enough to ensure that the deformation was always within the elastic regime. Measurements are provided in terms of pressures, strains and total hydrodynamic loads. The simplified model is a combination of a fluid-loading model, providing the pressure distribution at any time, and a structural model, similar to that proposed in Szilard (2004) and used also in Faltinsen (1999). The model is validated and tuned in one test condition before applying it to the analysis of other test cases. It is found that, although rather simple, it provides very accurate estimates of the strains, aside from some limits occurring at the sides due to the difficulty in correctly representing the boundary conditions.
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\r\n", "page": "SARAH (Increased Safety and robust certification for ditching of aircrafts and helicopters) is a Horizon 2020 collaborative project, aiming at establishing novel holistic, simulation-based approaches to the analysis of aircraft ditching. The project is coordinated by IBK-Innovation and its consortium is built up from a consortium of experts from OEM industries, experienced suppliers of simulation technologies, established research institutions and representatives of the certification authorities. Results of SARAH are expected to support a performance-based regulation and certification for next generation aircraft and helicopter and to enhance the safe air transport as well as to foster the trustworthiness of aviation services.
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\nZenodo’s general policies and Terms of Use apply to all content.
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", "description": "Open repository for EU-funded research outputs from Horizon Europe, Euratom and earlier Framework Programmes.", "organizations": [ { "id": "00k4n6c32" } ], "page": "The EU Open Research Repository is a Zenodo-community dedicated to fostering open science and enhancing the visibility and accessibility of research outputs funded by the European Union. The community is managed by CERN on behalf of the European Commission.
\nThe mission of the repository is to support the implementation of the EU's open science policy, providing a trusted and comprehensive space for researchers to share their research outputs such as data, software, reports, presentations, posters and more. The EU Open Research Repository simplifies the process of complying with open science requirements, ensuring that research outputs from Horizon Europe, Euratom, and earlier Framework Programmes are freely accessible, thereby accelerating scientific discovery and innovation.
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