- Research Article
9
- 10.1016/j.geothermics.2023.102865
Geothermal play fairway analysis, part 1: Example from the Snake River Plain, Idaho
- Nov 17, 2023
- Geothermics
- John W Shervais + 11 more +11
Publications from 2021 to 2026
Showing 6 of 6 papers
Geothermal play fairway analysis, part 1: Example from the Snake River Plain, Idaho
Drilling-induced and logging-related features illustrated from IODP–ICDP Expedition 364 downhole logs and borehole imaging tools
Abstract. Expedition 364 was a joint IODP and ICDP mission-specific platform (MSP) expedition to explore the Chicxulub impact crater buried below the surface of the Yucatán continental shelf seafloor. In April and May 2016, this expedition drilled a single borehole at Site M0077 into the crater's peak ring. Excellent quality cores were recovered from ∼505 to ∼1335 m below seafloor (m b.s.f.), and high-resolution open hole logs were acquired between the surface and total drill depth. Downhole logs are used to image the borehole wall, measure the physical properties of rocks that surround the borehole, and assess borehole quality during drilling and coring operations. When making geological interpretations of downhole logs, it is essential to be able to distinguish between features that are geological and those that are operation-related. During Expedition 364 some drilling-induced and logging-related features were observed and include the following: effects caused by the presence of casing and metal debris in the hole, logging-tool eccentering, drilling-induced corkscrew shape of the hole, possible re-magnetization of low-coercivity grains within sedimentary rocks, markings on the borehole wall, and drilling-induced changes in the borehole diameter and trajectory.
Read moreScientific Drilling
HOTSPOT is an international collaborative effort to understand the volcanic history of the Snake River Plain (SRP). The SRP overlies a thermal anomaly, the Yellowstone-Snake River hotspot, that is thought to represent a deep-seated mantle plume under North America. The primary goal of this project is to document the volcanic and stratigraphic history of the SRP, which represents the surface expression of this hotspot, and to understand how it affected the evolution of continental crust and mantle. An additional goal is to evaluate the geothermal potential of southern Idaho. Project HOTSPOT has completed three drill holes. (1) The Kimama site is located along the central volcanic axis of the SRP; our goal here was to sample a long-term record of basaltic volcanism in the wake of the SRP hotspot. (2) The Kimberly site is located near the margin of the plain; our goal here was to sample a record of high-temperature rhyolite volcanism associated with the underlying plume. This site was chosen to form a nominally continuous record of volcanism when paired with the Kimama site. (3) The Mountain Home site is located in the western plain; our goal here was to sample the Pliocene-Pleistocene transition in lake sediments at this site and to sample older basalts that underlie the sediments. We report here on our initial results for each site, and on some of the geophysical logging studies carried out as part of this project. doi:10.2204/iodp.sd.15.06.2013
Read moreCoring Techniques for Scientific Investigation of Faults
<strong class="journal-contentHeaderColor">Abstract.</strong> No abstract available. <br><br> doi:<a href="http://dx.doi.org/10.2204/iodp.sd.s01.24.2007" target="_blank">10.2204/iodp.sd.s01.24.2007</a>
Read moreCoring Techniques for Scientific Investigation of Faults
No abstract available. <br><br> doi:<a href="http://dx.doi.org/10.2204/iodp.sd.s01.24.2007" target="_blank">10.2204/iodp.sd.s01.24.2007</a>
Read moreObservation of the Continental Crust through Drilling II