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    <pubDate>Wed, 31 Dec 2008 14:35:10 GMT</pubDate>
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      <title>ADVANCED DTM GENERATION USING AIRBORNE LIDAR TECHNIQUE</title>
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        <![CDATA[<img src="http://cdn.slidesharecdn.com/LIDARCJ-123074115138-phpapp02-thumbnail-2?1230734245" alt ="" style="border:1px solid #C3E6D8;float:right;" /><br> Simulations of the hydrological risks and thus the decisions of assessment strategies are crucial in the context of extreme meteorological events due to the consequences of the fast changes in the climate. The remote sensing methods, such as LIDAR backscatter technique are allowing the elaboration of a high precision (5cm vertical and 3 points/m2 horizontal resolutions) Digital Terrain Model (DTM) as basis of the hydrological modeling. In this paper is presented the airborne LIDAR technique, methodology of obtaining the DTM, the usefulness of the DTM outputs for hydrologic applications and the potential application for the Romanian Danube Flood Plain assessment strategy.]]>
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        <![CDATA[<img src="http://cdn.slidesharecdn.com/LIDARCJ-123074115138-phpapp02-thumbnail-2?1230734245" alt ="" style="border:1px solid #C3E6D8;float:right;" /><br> Simulations of the hydrological risks and thus the decisions of assessment strategies are crucial in the context of extreme meteorological events due to the consequences of the fast changes in the climate. The remote sensing methods, such as LIDAR backscatter technique are allowing the elaboration of a high precision (5cm vertical and 3 points/m2 horizontal resolutions) Digital Terrain Model (DTM) as basis of the hydrological modeling. In this paper is presented the airborne LIDAR technique, methodology of obtaining the DTM, the usefulness of the DTM outputs for hydrologic applications and the potential application for the Romanian Danube Flood Plain assessment strategy.]]>
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      <pubDate>Wed, 31 Dec 2008 14:35:10 GMT</pubDate>
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        <media:title>ADVANCED DTM GENERATION USING AIRBORNE LIDAR TECHNIQUE</media:title>
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        <media:description type="plain">Simulations of the hydrological risks and thus the decisions of assessment strategies are crucial in the context of extreme meteorological events due to the consequences of the fast changes in the climate. The remote sensing methods, such as LIDAR backscatter technique are allowing the elaboration of a high precision (5cm vertical and 3 points/m2 horizontal resolutions) Digital Terrain Model (DTM) as basis of the hydrological modeling. In this paper is presented the airborne LIDAR technique, methodology of obtaining the DTM, the usefulness of the DTM outputs for hydrologic applications and the potential application for the Romanian Danube Flood Plain assessment strategy.</media:description>
        <media:text type="html">&lt;img src=&quot;http://cdn.slidesharecdn.com/LIDARCJ-123074115138-phpapp02-thumbnail-2?1230734245&quot; alt =&quot;&quot; style=&quot;border:1px solid #C3E6D8;float:right;&quot; /&gt;&lt;br&gt; Simulations of the hydrological risks and thus the decisions of assessment strategies are crucial in the context of extreme meteorological events due to the consequences of the fast changes in the climate. The remote sensing methods, such as LIDAR backscatter technique are allowing the elaboration of a high precision (5cm vertical and 3 points/m2 horizontal resolutions) Digital Terrain Model (DTM) as basis of the hydrological modeling. In this paper is presented the airborne LIDAR technique, methodology of obtaining the DTM, the usefulness of the DTM outputs for hydrologic applications and the potential application for the Romanian Danube Flood Plain assessment strategy.</media:text>
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