Mgrre_Thinsections_Mgrre-01_7,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-09_3,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-01_9,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-01_20,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-03_9,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-05_5,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-05_9,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-05_18,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-07_4,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-01_25,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-03_5,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-03_13,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-05_8,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-05_14,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-09_8,
2022
Western Michigan University
Mgrre_Thinsections_Mgrre-05_13,
2022
Western Michigan University
Wagin Townsite Borefield: Review Of Aquifer Performance,
2022
Department of Primary Industries and Regional Development, Western Australia
Wagin Townsite Borefield: Review Of Aquifer Performance, Rockwater
Natural resources commissioned reports
The Wagin Borefield was established by the Department of Agriculture and Food, Western Australia in 2000-2007 to control groundwater levels in the town that had risen to critical levels as a result of increased recharge and runoff following the clearing of native vegetation for urban development and agriculture. Similar investigations were conducted as part of the Rural Towns Program and Rural Towns-Liquid Assets projects in 41 other wheatbelt towns, but none, except perhaps from Merredin, have been as comprehensively implemented, operated and monitored as Wagin.
The Wagin Borefield comprises 8 production bores, of which only 3 have been operated. To …
Mgrre_Thinsections_05_A_68,
2022
Western Michigan University
Filling Critical Gaps In The Space-Time Record Of High Lava Plains And Co-Columbia River Basalt Group Rhyolite Volcanism,
2022
Portland State University
Filling Critical Gaps In The Space-Time Record Of High Lava Plains And Co-Columbia River Basalt Group Rhyolite Volcanism, Vanessa Marie Swenton, Martin J. Streck, Daniel P. Miggins, William C. Mcintosh
Geology Faculty Publications and Presentations
Miocene rhyolitic volcanism of eastern Oregon, USA, can be divided into two main episodes. Mantle plume upwelling is thought to have generated Columbia River Basalt Group (CRBG) lavas and coeval >16.5−15 Ma silicic volcanism trending north−south from northeast Oregon to northern Nevada. Rhyolite volcanism of the 12−0 Ma High Lava Plains province has been ascribed to either buoyancy-driven westward plume spreading or to slab rollback and mantle convection spanning from southeast Oregon to Newberry Volcano to the west. The apparent ca. 15−12 Ma eruptive hiatus suggests that rhyolites of these provinces were a product of separate processes, yet this gap …
Geology-Based Shear-Wave Velocity Model Of Reference Site Conditions In South Carolina For Seismic Site Response Analysis,
2022
Clemson University
Geology-Based Shear-Wave Velocity Model Of Reference Site Conditions In South Carolina For Seismic Site Response Analysis, Camilius Amevorku
All Dissertations
Assessing earthquake hazard in the State of South Carolina is important because it is one of the most seismically active regions of the eastern United States and has experienced earthquakes of damaging levels in the historical past. Examples of these damaging seismic events are the 1886 Charleston earthquake (M 6.7 to 7.5) and the 1913 Union County earthquake (M 4.5 to 5.5).
Small-strain shear-wave velocity (VS) is an important parameter in performing site response analysis. The deep nature of the top of reference firm rock (i.e., VS ≥ 760 m/s or B-C boundary) due to …
