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	<title>IB4 | Reallabor Offshore</title>
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	<description>Reallabor 70 GW Offshore Windenergie Forschung Niedersachsen</description>
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	<title>IB4 | Reallabor Offshore</title>
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		<title>Regulation of offshore wind farm clusters</title>
		<link>https://reallabor.offshore.uol.de/en/project/regulation-of-offshore-wind-farm-clusters/</link>
		
		<dc:creator><![CDATA[Reallabor Offshore]]></dc:creator>
		<pubDate>Thu, 24 Oct 2024 11:43:58 +0000</pubDate>
				<guid isPermaLink="false">https://reallabor.offshore.uol.de/project/regulation-of-offshore-wind-farm-clusters/</guid>

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				<div class="et_pb_text_inner"><h3>TP IV.5 Design and control of offshore wind farm clusters<o:p></o:p><o:p></o:p><o:p></o:p><o:p></o:p></h3></div>
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				<div class="et_pb_text_inner"><h4>A sub-project in Innovation Area IV &#8211; System-oriented integration and aerodynamics of offshore wind turbines and wind farms</h4>
<p>In order to integrate the offshore wind farms connected via high-voltage direct current (HVDC) transmission into the electricity grid, they will have to take over the provision of system services for the onshore transmission grid in future.</p>
<p>Furthermore, it is expected that grid-forming converters will also be used in OWPs in the future, which will fundamentally change the feed-in behavior determined by the control system and thus also the provision of system services by the wind farms, or in some cases make this possible in the first place.</p>
<p>Controls are therefore being developed for the provision of active power, in particular for frequency control with grid-supporting or grid-forming converters to ensure grid stability by adjusting the mechanical output and simultaneously reducing the mechanical load on the individual wind turbines to improve maintenance and extend their service life. HVDC must enable these services for the onshore transmission grid. </p></div>
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				<div class="et_pb_text_inner"><h5>Scientists responsible</h5>
<ul>
<li>Dr. sc. Vlaho Petrović, University of Oldenburg, ForWind </li>
<li>Prof. Dr.-Ing. habil. Lutz Hofmann, University of Hanover, ForWind</li>
<li>Dr.-Ing. Thomas Leveringhaus, University of Hanover, ForWind</li>
</ul></div>
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				<div class="et_pb_promo_description"><h2 class="et_pb_module_header">More information</h2></div>
				<div class="et_pb_button_wrapper"><a class="et_pb_button et_pb_promo_button" href="https://forwind.de/" target="_blank">To the website</a></div>
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		<title>Coherent flow structures</title>
		<link>https://reallabor.offshore.uol.de/en/project/coherent-flow-structures/</link>
		
		<dc:creator><![CDATA[Reallabor Offshore]]></dc:creator>
		<pubDate>Thu, 24 Oct 2024 11:40:29 +0000</pubDate>
				<guid isPermaLink="false">https://reallabor.offshore.uol.de/project/coherent-flow-structures/</guid>

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				<div class="et_pb_text_inner"><h3>TP IV.4 Coherent flow structures in wind farms<o:p></o:p><o:p></o:p><o:p></o:p><o:p></o:p></h3></div>
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				<div class="et_pb_text_inner"><h4>A sub-project in Innovation Area IV &#8211; System-oriented integration and aerodynamics of offshore wind turbines and wind farms</h4>
<p>The flow conditions, loads and power output of a wind farm are influenced, among other things, by coherent structures in the inflow.</p>
<p>A better understanding of how these structures interact with the turbines is necessary in order to make future wind farms more efficient and durable.</p>
<p>The aim of this sub-project is to investigate how coherent flow structures move through a wind farm.</p></div>
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				<div class="et_pb_text_inner"><h5>Scientists responsible</h5>
<ul>
<li>Dr. Michael Hölling, University of Oldenburg, ForWind</li>
</ul></div>
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				<div class="et_pb_promo_description"><h2 class="et_pb_module_header">More information</h2></div>
				<div class="et_pb_button_wrapper"><a class="et_pb_button et_pb_promo_button" href="https://forwind.de/" target="_blank">To the website</a></div>
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		<title>Flow conditions</title>
		<link>https://reallabor.offshore.uol.de/en/project/flow-conditions/</link>
		
		<dc:creator><![CDATA[Reallabor Offshore]]></dc:creator>
		<pubDate>Thu, 24 Oct 2024 11:37:30 +0000</pubDate>
				<guid isPermaLink="false">https://reallabor.offshore.uol.de/project/flow-conditions/</guid>

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				<div class="et_pb_text_inner"><h3>TP IV.3 Flow conditions of future wind turbines<o:p></o:p><o:p></o:p><o:p></o:p><o:p></o:p></h3></div>
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				<div class="et_pb_text_inner"><h4>A sub-project in Innovation Area IV &#8211; System-oriented integration and aerodynamics of offshore wind turbines and wind farms</h4>
<p>Offshore wind turbines are getting higher and higher and will soon reach completely different atmospheric wind conditions.</p>
<p>How these laminar-turbulent winds instead of the known turbulent winds affect turbine performance and loads as well as the wake is virtually unknown.</p>
<p>The aim is to record the complex flow dynamics, create initial forecasts for power, loads and, in particular, overruns, and finally check them.</p></div>
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				<div class="et_pb_text_inner"><h5>Scientists responsible</h5>
<ul>
<li>Prof. Dr. Kerstin Avila, University of Oldenburg, ForWind</li>
</ul></div>
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				<div class="et_pb_promo_description"><h2 class="et_pb_module_header">More information</h2></div>
				<div class="et_pb_button_wrapper"><a class="et_pb_button et_pb_promo_button" href="https://forwind.de/" target="_blank">To the website</a></div>
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		<title>Dynamics of offshore wind farm clusters</title>
		<link>https://reallabor.offshore.uol.de/en/project/dynamics-of-offshore-wind-farm-clusters/</link>
		
		<dc:creator><![CDATA[Reallabor Offshore]]></dc:creator>
		<pubDate>Thu, 24 Oct 2024 10:39:59 +0000</pubDate>
				<guid isPermaLink="false">https://reallabor.offshore.uol.de/project/dynamics-of-offshore-wind-farm-clusters/</guid>

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				<div class="et_pb_text_inner"><h3>TP IV.2 Reconstruction of the dynamics of offshore wind farm clusters<o:p></o:p><o:p></o:p><o:p></o:p><o:p></o:p></h3></div>
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				<div class="et_pb_text_inner"><h4>A sub-project in Innovation Area IV &#8211; System-oriented integration and aerodynamics of offshore wind turbines and wind farms</h4>
<p>Fluctuations in the wind flow, especially wind ramps, hinder the system-friendly operation of wind farms and electricity trading. Observer-based forecasts in the minute range can support their prediction. </p>
<p>High-resolution lidar wind measurements enable research into the prediction of local wind dynamics on shorter, high-frequency time scales. In this way, lag-induced yield losses and loads could be reduced and system services provided more precisely.  </p></div>
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				<div class="et_pb_text_inner"><h5>Scientists responsible</h5>
<ul>
<li>Dr. Andreas Rott, University of Oldenburg, ForWind</li>
<li>Dr. Martin Dörenkämper, Fraunhofer IWES</li>
</ul></div>
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				<div class="et_pb_promo_description"><h2 class="et_pb_module_header">More information</h2></div>
				<div class="et_pb_button_wrapper"><a class="et_pb_button et_pb_promo_button" href="https://forwind.de/" target="_blank">To the website</a></div>
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		<title>Offshore measurement campaigns</title>
		<link>https://reallabor.offshore.uol.de/en/project/offshore-measurement-campaigns/</link>
		
		<dc:creator><![CDATA[Reallabor Offshore]]></dc:creator>
		<pubDate>Thu, 24 Oct 2024 10:34:56 +0000</pubDate>
				<guid isPermaLink="false">https://reallabor.offshore.uol.de/project/offshore-measurement-campaigns/</guid>

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				<div class="et_pb_text_inner"><h3>TP IV.1 Offshore measurement campaigns in wind farm clusters<o:p></o:p><o:p></o:p><o:p></o:p><o:p></o:p></h3></div>
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				<div class="et_pb_text_inner"><h4>A sub-project in Innovation Area IV &#8211; System-oriented integration and aerodynamics of offshore wind turbines and wind farms</h4>
<p>Two meteorological measurement campaigns and the high-resolution wind farm operating data (SCADA) form the basis for the other sub-projects as well as support for structural health monitoring in IB III and oceanographic measurements in IB V.</p>
<p>The measurements are carried out on the basis of the measurement specification drawn up with the stakeholders.</p></div>
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				<div class="et_pb_text_inner"><h5>Scientists responsible</h5>
<ul>
<li>Prof. Dr. Martin Kühn University of Oldenburg, ForWind</li>
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