Showing posts with label Pinto gneiss. Show all posts
Showing posts with label Pinto gneiss. Show all posts

Friday, November 18, 2011

A Soggy Day in Joshua Tree National Park: On the road with the NAGT

I spent the last weekend geotripping in Joshua Tree National Park with fellow members of the Far Western Section of the National Association of Geoscience Teachers. We hold these meetings twice a year at locations throughout California, Nevada and Hawaii. They are a great way to share teaching ideas and to collect samples and photos of some of the most spectacular scenery on the planet.

Part of our trip was an exploration of the Geology Road Tour in the middle of the park. The road is an unpaved track that is recommended for four-wheel drive vehicles. We would try to see if that was true on a rainy day! 
It was only sprinkling at first, as we crossed the Queen Valley pediment. Here and there inselbergs rose from the flat valley floor. These 'islands' of rocks that are remnants of mountain ridges that eroded away long ago.

The process of erosion continues into the present day. Can you see the horizontal scars across the boulders in the pictures above and below? These are areas of intense chemical weathering that formed when the soil levels were about 6-7 feet higher than today. The soils have eroded away within the last 20,000 years or so.
Another interesting form of erosion on these granite boulders is the development of tafoni, the hollows and honeycomb pits that occur on some boulders. The origin of the pits is somewhat unclear, but is no doubt a phenomenon of chemical weathering, possibly when the rock was still buried in the soil.
The hollow above was big enough to sit in. Others have had the idea of using the hole for shelter, as there was a grinding hole in the floor of the shallow cave. I also noticed a lot of charcoal in the soil at the site, meaning that the site was also utilized as a campsite by the local Native Americans.

We passed Malapai Hill, a 400 foot high basaltic intrusion. The volcanism resulted from decompression and partial melting of mantle material during a "reorganization" of the crust of southern California as the San Andreas fault system was taking shape. We didn't have time to check it out, but a climb of the hill reveals some nice examples of columnar jointing and fragments of mantle materials in the basalt.
Malapai Hill, photo by Mrs. Geotripper
We dropped down into Pleasant Valley, although with the building storm it was looking less and less pleasant by the moment. The abrupt valley wall marks the trace of the Blue Cut fault, a left lateral strike-slip fault that trends eastward through the park.
We stopped for a look at the Gold Coin Mine (not much equipment left), and searched for a few petroglyphs on the dark metamorphic rocks at the mine site.
At the contact with the granite, I saw a very nice example of a xenolith ('alien stone'), a piece of older rock that was incorporated into the granite when it was still molten. The xenolith was more resistant to erosion, and now stands out.
The weather was getting nastier by the second. The road crossed a playa surface in the center of Pleasant Valley. After the first eight cars passed through, the surface had become 'unstable', for lack of a better term. For the first time in five years of driving my Subaru, I went fishtailing on a road. My car has been stable on all manner of icy and snowy surfaces, but this was...fun. When we left two hours later, other cars were driving down the one way road. I wonder how they fared.
At the other end of the valley we found some of the most interesting rocks, a series of aplite dikes cutting across the Proterozoic Pinto Gneiss. These rocks are part of a complex that includes the oldest rocks in California (and part of an extensive belt of mountains that once extended across the southern United States).
 The rocks have been intricately folded and intruded by small granite veins. The complex chemical interactions have resulted in mineralization, leading many miners to seek out valuable ores in these rocks, mostly without success.
We continued around the one-way loop, on not too unreasonable roads while the rain continued to pour down on us. Luckily the playa surface did not extend to the other end of the loop, and we had no problems crossing the valley.
The view across the valley was interesting...our road out could be seen meandering up the alluvial slope. The inselbergs from the first part of the road tour can be seen on the skyline through the falling rain.
We made it back to the paved highway without incident, but the trip was cut a bit short because our last destination was Key's View. On a normal desert day, the view is incredible, looking across the Coachella Valley to Salton Sea, the San Andreas fault, and the San Jacinto Mountains. But not on this particular afternoon. The 30% chance of showers had turned into a full-fledged storm, so we headed back to town.

A trip spoiled by rain? Absolutely not. There is nothing quite like the sights and smells of a rainstorm in the desert. It was a great day!

Sunday, May 22, 2011

Taking Granite for Granted? Looking at Gneiss Rocks in Joshua Tree

Where can one find the oldest rocks in California? And for that matter, any place west of Utah and Wyoming? Some well-seasoned geological travelers would point to the bottom of the Grand Canyon, where dark metamorphic gness and schist lie exposed below the Great Unconformity. Others might point to the Black Mountains in Death Valley National Park, where similar rocks are exposed along the unique turtleback faults of the deep graben that forms the main axis of the park. These beautiful rocks formed during a collisional event (really two) between 1.65-1.75 billion years ago that formed a huge mountain range that extended across the southern part of the North American continent for an unknown distance westward. At the time, most of the continents of the world were combined into a supercontinent called Rodinia (which existed prior to the better-known Pangea).
If one takes granite for granted, as I did once at Joshua Tree National Park, one might miss one of the unexpected pleasures of exploring the park. The giant granite boulders in the Wonderland of Rocks may catch most of the attention, but there are secrets in the somewhat bland looking hills in the south and central parts of the park: the oldest rocks in the state! The Pinto gneiss and related rocks in Joshua Tree are related to those seen at Grand Canyon and Death Valley. These are the ancient metamorphic rocks that the granitic magmas invaded. These rocks once may have been sands on a beach some 2 billion years ago, or muds on a sea floor. Some may have been volcanic flows. All have been baked by the molten rock and squeezed into their present shape.
South of Cottonwood Springs at the less-used park entrance near Chiriaco Summit out of Indio, a desert gully along the park road exposes the contact zone between the granite and the gneiss (pronounced 'nice'). The contact is marked by an intrusion breccia, bits and pieces of the metamorphic rocks enveloped in the granitic rock. The isolated chunks of metamorphic rock are called xenoliths ('alien rock').
A hike to the Mastodon Mine out of Cottonwood Springs reveals one of the most unique exposures of xenoliths (or enclaves, see comments below) that I have ever come across. The metamorphic rocks are weathering differently than the granitic rock, and end up protruding like chocolate chips in cookie dough!
Joshua Tree National Park is a fascinating treasure. The story shall continue....