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	<title><![CDATA[Scipedia: Collection of documents for the dissemination of the experiment "HPC-enabled system for enhanced seakeeping and station-keeping design (HPC-SHEAKS)"]]></title>
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	<pubDate>Tue, 03 Mar 2020 07:17:02 +0100</pubDate>
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	<title><![CDATA[Trends and clinico-epidemiological features of human rabies cases in Bangladesh 2006–2018]]></title>
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	<dc:creator>Sumon Ghosh</dc:creator>
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	<pubDate>Mon, 04 Feb 2019 16:33:09 +0100</pubDate>
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	<title><![CDATA[Presentation of HPC-SHEAKS in the Digital Innovation Hub Annual Event (Warsaw)]]></title>
	<description><![CDATA[<p style="margin-bottom: 10px; color: rgb(102, 102, 102); font-size: 14px; font-style: normal; font-weight: 400; text-align: justify;">Presentation made during the DIH2018 Annual Event that took place in Warsaw, from November 27 to 28, 2018. During the DIH2018 Annual Event, Compass IS has been honored the I4MS Disruptors Award 2018, by the European Commissioner Mariya Gabriel and Jadwiga Emilewicz, Minister of Entrepreneurship and Technology of Poland.</p><p style="margin-bottom: 10px; color: rgb(102, 102, 102); font-size: 14px; font-style: normal; font-weight: 400; text-align: justify;">During the event, Compass had the opportunity to show a stand to present its technological capabilities and the solution of the experiment.</p>]]></description>
	<dc:creator>Clara García</dc:creator>
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	<pubDate>Mon, 04 Feb 2019 16:33:11 +0100</pubDate>
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	<title><![CDATA[HPC-SHEAKS brief description]]></title>
	<description><![CDATA[<p>Compass IS is a consulting services company specialized in engineering design, as well as in development of software for engineering analysis and information management in technology. Civil and industrialengineering, naval architecture and ICT areas are the main focus of Compass IS activities.</p><p>The HPC-Sheaks experiment aimed to increase the efficiency of the design, engineering and building processes of a marine structure, by offering to the market added-value tools that, thanks to high performance computing, can be used further down from the final design phase, and allowing its integration in the design cycle to develop more competitive designs.</p>]]></description>
	<dc:creator>Clara García</dc:creator>
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	<pubDate>Mon, 04 Feb 2019 16:33:04 +0100</pubDate>
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	<title><![CDATA[SeaFEM features and system requirements]]></title>
	<description><![CDATA[<p>SeaFEM is a suite of tools for the computational analysis of the effect of waves, wind and currents on naval and offshore structures, as well as for maneuvering studies. SeaFEM applications include ships, spar platforms, FPSO systems, semi- submersibles, TLPs, marine wind turbines and ocean energy harnessing devices.</p><p>SeaFEM offers a state of the art solver developed for the most realistic seakeeping simulations of 3D multi-body radiation and diffraction problems, by solving potential flow equations in the time domain, using the finite element method on unstructured meshes. SeaFEM features the latest technology for solving first and second order diffraction-radiation equations with real sea spectra.</p><p>SeaFEM has been developed in collaboration with the International Center for Numerical Methods in Engineering, and is completely integrated in the comprehensive simulation environment, Tdyn, developed by Compass.</p>]]></description>
	<dc:creator>Clara García</dc:creator>
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	<pubDate>Mon, 04 Feb 2019 16:33:02 +0100</pubDate>
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	<title><![CDATA[HPC-SHEAKS Success Story]]></title>
	<description><![CDATA[<p><span style="color: rgb(102, 102, 102); font-size: 14px; font-style: normal; font-weight: 400; text-align: justify;">The ultimate goal of the &quot;HPC-enabled system for enhanced seakeeping and station-keeping design&quot; (HPC-SHEAKS) experiment was the efficient and easy-to-use integration of available HPC infrastructures with the most advanced seakeeping software. As a result of the experiment, an effective interface between the end-user and the HPC resources was implemented. The relevant seakeeping software packages were ported to the HPC infrastructure and integrated into an overall simulation package. This solution enables the simulations to be run from a familiar desktop system whilst using the full capabilities of the HPC system.</span></p>]]></description>
	<dc:creator>Clara García</dc:creator>
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	<pubDate>Mon, 04 Feb 2019 16:33:08 +0100</pubDate>
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	<title><![CDATA[HPC-SHEAKS in the Fortissimo Success Story Booklet (4th edition)]]></title>
	<description><![CDATA[<p>Seakeeping is the study of a ship or marine structure that is subject to the action of waves. WAVEC is a private non-profit association active in applied research and consulting. VICUSDT operates in the shipbuilding and shipping industries, providing hydrodynamic engineering services. It also provides hydrodynamic analysis capabilities to the offshore and marine energy sector, carrying out advanced simulations of structures for the oil and gas industry. COMPASSIS is an SME ISV which&nbsp;provides simulation software for a variety of different engineering fields including multiphysics simulations and structural and seakeeping analysis. In this experiment COMPASSIS will enable and evaluate simulations that require intense computational and data storage resources.&nbsp;</p>]]></description>
	<dc:creator>Clara García</dc:creator>
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	<pubDate>Mon, 04 Feb 2019 16:33:06 +0100</pubDate>
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	<title><![CDATA[Presentation of HPC-SHEAKS Experiment in the kick-off meeting]]></title>
	<description><![CDATA[<p>Presentation of the &quot;HPC-SHEAKS&quot; experiment during the kick-off meeting which took place on July 2015, in the frame of the Fortissimo Forum in Amsterdam. The Forum was a platform for Independent Software Vendors (ISVs), Service Providers, Small &amp; Medium Enterprises (SMEs) and technical experts around the theme of HPC applications in the cloud.</p><p>The HPC-Sheaks experiment aimed to increase the efficiency of the design, engineering and building processes of a marine structure, by offering to the market added-value tools that, thanks to high performance computing, can be used further down from the final design phase, and allowing its integration in the design cycle to develop more competitive designs.</p>]]></description>
	<dc:creator>Clara García</dc:creator>
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