Item talk:Q59363: Difference between revisions
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{ | |||
Most of Newberry Volcano's youngest lava flows are found within the Newberry National Volcanic Monument in central Oregon. Established November 5, 1990, the monument is managed by the U.S. Forest Service as part of the Deschutes National Forest. Since 2011, a series of aerial surveys over the monument collected elevation data using lidar (light detection and ranging) technology, which uses lasers to directly measure the ground surface. These data record previously unseen detail in the | "USGS Publications Warehouse": { | ||
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"name": "Newberry Volcano's youngest lava flows", | |||
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"url": "https://pubs.usgs.gov/publication/sim3329" | |||
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"value": "10.3133/sim3329", | |||
"url": "https://doi.org/10.3133/sim3329" | |||
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"datePublished": "2015", | |||
"dateModified": "2015-05-29", | |||
"abstract": "Most of Newberry Volcano's youngest lava flows are found within the Newberry National Volcanic Monument in central Oregon. Established November 5, 1990, the monument is managed by the U.S. Forest Service as part of the Deschutes National Forest. Since 2011, a series of aerial surveys over the monument collected elevation data using lidar (light detection and ranging) technology, which uses lasers to directly measure the ground surface. These data record previously unseen detail in the volcano\u2019s numerous lava flows and vents. On average, a laser return was collected from the ground\u2019s surface every 2.17 feet (ft) with \u00b11.3 inches vertical precision.\nThe central caldera is visible in the lower right corner of the center map, outlined by the black dashed line. The caldera collapsed about 75,000 years ago when massive explosions sent volcanic ash as far as the San Francisco Bay area and created a 3,000-ft-deep hole in the center of the volcano. The caldera is now partly refilled by Paulina and East Lakes, and the byproducts from younger eruptions, including Newberry Volcano\u2019s youngest rhyolitic lavas, shown in red and orange. The majority of Newberry Volcano\u2019s many lava flows and cinder cones are blanketed by as much as 5 feet of volcanic ash from the catastrophic eruption of Mount Mazama that created Crater Lake caldera approximately 7,700 years ago. This ash supports abundant tree growth and obscures the youthful appearance of Newberry Volcano. Only the youngest volcanic vents and lava flows are well exposed and unmantled by volcanic ash. More than one hundred of these young volcanic vents and lava flows erupted 7,000 years ago during Newberry Volcano\u2019s northwest rift zone eruption.", | |||
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Latest revision as of 00:01, 15 August 2024
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Established November 5, 1990, the monument is managed by the U.S. Forest Service as part of the Deschutes National Forest. Since 2011, a series of aerial surveys over the monument collected elevation data using lidar (light detection and ranging) technology, which uses lasers to directly measure the ground surface. These data record previously unseen detail in the volcano\u2019s numerous lava flows and vents. On average, a laser return was collected from the ground\u2019s surface every 2.17 feet (ft) with \u00b11.3 inches vertical precision.\nThe central caldera is visible in the lower right corner of the center map, outlined by the black dashed line. The caldera collapsed about 75,000 years ago when massive explosions sent volcanic ash as far as the San Francisco Bay area and created a 3,000-ft-deep hole in the center of the volcano. The caldera is now partly refilled by Paulina and East Lakes, and the byproducts from younger eruptions, including Newberry Volcano\u2019s youngest rhyolitic lavas, shown in red and orange. The majority of Newberry Volcano\u2019s many lava flows and cinder cones are blanketed by as much as 5 feet of volcanic ash from the catastrophic eruption of Mount Mazama that created Crater Lake caldera approximately 7,700 years ago. This ash supports abundant tree growth and obscures the youthful appearance of Newberry Volcano. Only the youngest volcanic vents and lava flows are well exposed and unmantled by volcanic ash. 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