Juliet Crider – 天美影院News /news Tue, 10 Jan 2023 18:42:30 +0000 en-US hourly 1 https://wordpress.org/?v=6.9.4 天美影院brings field geology to students with 鈥榁irtual Field Geology鈥 /news/2022/12/08/uw-brings-field-geology-to-students-with-virtual-field-geology/ Thu, 08 Dec 2022 19:42:51 +0000 /news/?p=80217 Whaleback Anticline
The former Bear Valley Strip Mine in Pennsylvania is the site of the 鈥淲haleback anticline,鈥 named because the 30-foot-tall hump of bedrock looks like a whale. Decades of coal mining exposed folds in the bedrock, that offer clues to the landscape鈥檚 history. The Virtual Field Geology project uses drone photography to create a virtual field visits on a web browser or virtual reality headset. Photo: 天美影院

天美影院 geologists had set out to create computer-based field experiences long before the COVID-19 pandemic hit. , a 天美影院associate professor of Earth and space sciences, first got a grant from the National Science Foundation to send a former graduate student and a drone to photograph an iconic Pennsylvania geological site and pilot a new approach to field geology.

Her team has now completed a virtual field visit to that site, the , where decades of coal mining have exposed 300-million-year-old folds in the bedrock. A pilot version of the web-based tool was used during the pandemic, and a version that allows people to wear virtual reality headsets to explore the geological site just launched. A 天美影院field class used both tools in an undergraduate summer course that for the first time blended virtual and in-person field trips.

The 天美影院 project has many goals: to make geology field experiences accessible to more people; to document geological field sites that may be at risk from erosion or development; to offer virtual 鈥渄ry run鈥 experiences that complement field courses and help new students acclimate to the field; and to allow scientific collaborators to virtually visit a field site and explore it together.听

, a 天美影院doctoral student in Earth and Space Sciences, used his background in geology to help develop the virtual field experiences. He is lead author of a published this fall that presents the first two sites: the Whaleback site and a fictional site called 鈥淔old Islands.鈥

cartoon island, trees, and geology field tools
The fictional 鈥楩old Islands鈥 experience is a cartoon-based field geology site that lets students practice their skills using a geodetic compass and other tools of field geology. Photo: Needle et al/Geoscience Communication

鈥淰irtual experiences provide access to more people, they let us visit sites that are completely inaccessible, and we think everyone can benefit from a new way to interact with the tools of field geology,鈥 Needle said.听

Last summer, instead of the traditional 天美影院geology six-week field course in Montana, the department held a hybrid version led by Crider and , a 天美影院assistant professor of Earth and space sciences. It combined classroom teaching and digital experiences with day trips to the many geologic sites within driving distance of the Seattle campus.

鈥淢oving forward, these virtual field trips are likely going to play a key part in making the geosciences more accessible and more equitable,鈥 Condit said. 鈥淭hey provide the opportunity for all students to be able to begin experiencing fieldwork remotely, and learn about how vital the geologic field context is for the geosciences.鈥

The pandemic altered the project鈥檚 trajectory. When COVID canceled field trips, the team put the virtual reality programming on pause and focused on creating a web-based version that would be accessible most quickly to the most people. Since the site launched, it鈥檚 been accessed more than 1,700 times by 天美影院undergraduates and, after sharing among the geology teaching community, around the world. The team recently completed the VR version.

Even though people can now travel and assemble, the team believes virtual experiences could become part of a 鈥渘ew normal鈥 for geology research and education.听

鈥淧art of increasing access to the field is to help people know what to anticipate,鈥 Crider said. 鈥淭o the extent that we can help students anticipate both the outdoors experience and the science experience, then the uncertainty and maybe anxiety is reduced, and people can focus on the learning goals.鈥

The virtual experiences allow people to visit the field site and use common geology tools to measure angles in the rock layers or orientation of cracks that explain a landscape鈥檚 history. While a virtual option benefits anyone challenged by the travel and access to a remote field site, it also lets all students and researchers have a 鈥渄ry run鈥 experience and review techniques before reaching the actual location.

In the , keyboard commands let a user walk across the landscape. Users can try various tools to measure distances and angles. Selecting three points creates a virtual plane and displays its orientation. Data can be downloaded into a spreadsheet or directly into a popular geology software program.

鈥淲hat鈥檚 unique about this experience is that it鈥檚 open-ended, which allows instructors to tailor the lessons and the goals,鈥 Crider said. 鈥淪tudents decide what to measure, and where to measure, to answer the questions 鈥 it鈥檚 not predetermined. Making those decisions is an important thing to learn.鈥

The virtual experience also gives the scientist superhuman powers to instantly swoop from one place to another, zoom in and out to explore a site at different scales.听

鈥淥ne of the cool advantages of the game is that you can fly. There鈥檚 a little jetpack icon and then you go up in the air, and all of a sudden your perspective changes, and you can travel quickly from place to place,鈥 Needle said.听

It also provides access to sites that have limited or risky access.听

鈥淎t the Whaleback anticline a lot of the interesting, curved rock geometry is exposed at a height of 30 feet, where you can鈥檛 walk without risking fatality,鈥 Needle said.

The team recently demonstrated the virtual reality version of the Pennsylvania site. Although VR requires a special headset, the field of view is larger, and VR offers a sense of scale that鈥檚 helpful at sites like the 30-foot-tall Whaleback anticline. An interactive feature lets the user pick up a rock hammer and split open a 3D model of a rock.

four people standing at conference, two wearing VR headsets
Max Needle (far right) and Jacky Mooc (center in blue sweater) at the Geological Society of America鈥檚 annual meeting, in Denver in October. Two meeting attendees explore the Whaleback anticline geologic site by donning an Oculus Quest 2 headset. Photo: 天美影院

鈥淎s a teaching assistant, I鈥檝e seen students confronted with challenges in the field that go beyond the academic aspect,鈥 Needle said. 鈥淥r maybe someone can鈥檛 go into the field because they have bad asthma, or a particular field site can only be accessed with specialized climbing gear. We think a lot of people can benefit from these tools.鈥

Needle ran a short course at the Geological Society of America鈥檚 annual meeting in October showing other geologists how to use the 天美影院software to create other virtual field visits. This was the third such workshop he鈥檚 given, and the largest so far. All the software used for the 天美影院experiences are freely available.

person standing between two big screens
Max Needle presents the Virtual Field Geology project at the Geological Society of America鈥檚 annual meeting in Denver in October. Photo: 天美影院

Projects are under way for sites in Pennsylvania, Vermont and California. Needle hopes that someday the software might be used to visit the bottom of the ocean or the surface of another planet.听

鈥淚 think this is a prototype of where the field of geology could be headed in the future,鈥 Needle said.

The lead designers are , a recent 天美影院graduate in computer science and engineering who is now a software engineer at Lockheed Martin, and John Akers of the 天美影院Reality Lab. It was one of the first projects of the , which pairs 天美影院undergraduates with projects needing augmented-reality or virtual-reality programming. The effort and required tools for this work was funded by the National Science Foundation, 天美影院Research Royalty Fund, 天美影院Department of Earth and Space Sciences, 天美影院Student Technology Fund, and the Geological Society of America.

For more information, contact Needle at mneedle@uw.edu, Crider at criderj@uw.edu and Condit at ccondit@uw.edu .听

 

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