Tuesday, January 16, 2024

Deep Pacific Upside Down Waterfall

This passage from Helen Czerski's Blue Machine: How The Ocean Shapes Our World gives us a glimpse of the wondrous undersea universe we are just beginning to explore.

"We see upside-down waterfalls, she says. I don't understand what she means at first, and it takes me a few seconds to process the video as Deb keep talking. In those vertical chimneys, the walls crack and hydrothermal fluids come leaking out and  you get something that looks like half a toadstool growing out of a tree in an old growth forest. And suddenly I see it. This is a gigantic hydrothermal chimney looming out of the darkness, and hot water is indeed leaking out of its side. But because hot water is less dense than cold water, the hot water keeps flowing rapidly upwards. When it first hits cold water, its clearly dumped some minerals and made a ledge that sticks out- that's the toadstool shape that Deb is referring to. The water flowing upwards has had to flow outwards underneath the ledge before it can carry on upwards. But the ledge has developed a hollow on its underside like an upside-down bowl, so there is a pool of hot water there, held in the hollow as if it were filling up the inside of an umbrella. The boundary between hot and cold water shimmers like a mirror. And then the hot water is spilling out of its hollow and continuing upwards into the gloom. It really is an upside down waterfall".

Helen Czerski is watching this footage captured by a remotely operated vehicle exploring the area around the Juan de  Fuca Ridge, an undersea mountain chain a few hundred kilometers west of Seattle. Here, the Pacific and the Juan de Fuca tectonic plates diverge. Scientists are closely monitoring this ridge for seismic and volcanic activity, using a network of sensors  called the Regional Cabled Array. Deb Kelly is the Director of this project. Hydrothermal chimneys are sulfide and carbonate mineral deposits that form when hot mineral saturated sea water emerges through cracks in the ocean crust. The are common near mid oceanic ridges where the interaction of sea water and rock heated up by magma generates vigorous hydrothermal systems.

I'm only a quarter into this book and am enjoying every page of it. Highly recommended!

Tuesday, January 9, 2024

Kenjalgad Perched Aquifer

I have been experimenting with shooting videos of geological features with an accompanying commentary. Here are two of my recent efforts.

Last month I visited Kenjalgad, a small fort near the town of Bhor. As is typical of forts of the Sahaydri ranges, it sits atop a thick basalt scarp. 

The videos explain the geological conditions for the formation of a perched aquifer. I hope I have been clear in my explanation. Sound on please! 

Kenjalgad aquifer. Location 1- Permanent Link


Kenjalgal aquifer. Location 2- Permanent Link

Kenjalgad as seen in this picture is quite an impressive mesa.


The aquifer I described in the video occurs within the topmost rock layers of the scarp forming basalt. They form discrete accumulations of groundwater high up on these ridges, separate from the aquifers underlying the surrounding valley.

I am planning on making more of these videos of various geologic features. Should they be a little longer, say two or three minutes each? I would appreciate some feedback from you.

Wednesday, January 3, 2024

The Making Of Iceland

Committees are underappreciated. 

xkcd comics.

Happy New Year everyone! 

Tuesday, December 19, 2023

Books: Transformer , Blue Machine

 These two books came highly recommended via friends and social media.


I had really enjoyed his earlier book, The Vital Question. It was an exploration of energy constraints on the evolution of complex life on earth and perhaps elsewhere in the universe. Transformers takes a deeper look at the chemical processes underlying cellular function and their commonalities and differences across the spectrum of life.






Growing up as a hard rock geologist, I received very little training in how the ocean functioned. And to be honest, I have not updated myself on this immensely important topic in earth sciences. Blue Machine is my chance to learn more about how oceans shape our world. Looking forward to this one!


Sunday, December 17, 2023

Geological Contact: Sirohi Fold Belt And Erinpura Granite

One of  my favorite courses during graduate work in Pune was geological Remote Sensing. We focused a lot on visual interpretation of aerial photographs and satellite imagery. Lab work meant hours of poring over different areas of India and making preliminary geology maps based on observations of the landforms and rock structures visible from space. The rock composition, structure, and weathering patterns controls the surface expression of geological units. These are manifest on satellite imagery and on aerial photographs as differences in tone, texture, structural styles, and relief. 

I came across a nice example of the juxtaposition of two distinct geologic rock units just northeast of the town of Sirohi in Rajasthan. 

These two terrains made up of the Erinpura Granite and the Sirohi Group sediments are easily recognizable. 

The terrain west of the yellow line and isolated ribbons between the purple lines is made up of layered metamorphosed sedimentary rocks of the Sirohi Group. These sediments were deposited on the Erinpura Granite basement around 850 million years ago. Hard rock layers form northeast southwest oriented ridges with intervening valleys underlain by a softer lithology.  The texture appears fine and the ridge and valley terrain has a substantial vegetation cover. The rock layers can be traced as a series of folds. The Sirohi Group sediments were deformed and metamorphosed by 820 million years ago.

The Erinpura Granite represents magmatism that occurred around 900 million years ago.  Occurring mostly east of the yellow line, the granite also forms enclaves (orange outline) in the fold belt.

The granite appears as a light toned surface. It is massive body of rock, lacking the layering seen in the western sedimentary basin. The landform is a low elevation plain as compared to the Sirohi rocks.The rock has a coarse granular texture. Its surface has scant vegetation. Several lineaments (dark colored lines) are seen crisscrossing the granite body. These are fractures and dikes. Shrubs and trees growing along the fractures and dikes give them a darker appearance and make them stand out against the lighter granite body. The fracture sets have also controlled the local drainage. Several streams can be seen flowing along straight courses.

Below are two close up images of the contact zones between the two terrains. 

At this scale you can appreciate why the granite as a coarser texture in the synoptic imagery. The fracture systems has broken the granite in to a blocky surface. 

In this image below the Erinpura Granite occurs as an enclave surrounded by Sirohi metasedimentary rocks. 


And finally, a close up of structure controlled drainage in the Eripura Granite terrain. The fir tree like pattern, known as trellis drainage,  is due to streams flowing along orthogonal fracture sets. 

Geology mapping done. Now to visit Rajasthan for a field check!