landscape

Flowpaths

Submitted by dylan on Tue, 2008-03-18 05:44.
Flowpaths

1953 Hopland Field Station Soil Survey

Submitted by dylan on Fri, 2008-03-14 20:29.
1953 Hopland Field Station Soil Survey
( categories: )

Some panoramic pictures

Submitted by dylan on Sat, 2007-01-27 03:00.

PINN Pano 1: Recent burn area.PINN Pano 1: Recent burn area.

( categories: )

Sample profile creation III

Submitted by dylan on Tue, 2007-01-09 03:27.
Sample profile creation III

Spectral decomposition (by FFT) for each profile.

( categories: )

Sample profile creation II

Submitted by dylan on Tue, 2007-01-09 03:26.
Sample profile creation II

Elevation profiles for the paths taken by the soil scientist here.

( categories: )

Sample profile creation I

Submitted by dylan on Tue, 2007-01-09 03:25.
Sample profile creation I

Vector representation of 2 transects performed by an adventurous soil scientist near McCabe Canyon, Pinnacles National Monument.

( categories: )

Glacial Outwash Deposits in the Central San Joaquin Valley

Submitted by dylan on Mon, 2005-08-15 22:09.

Quick trip to the Ione formation

Submitted by dylan on Sun, 2005-06-26 19:20.
Roadcut
Fig 2: Road Cut
Ped features from the Ione soil.
Fig 1: Ped Features
Exposed surface
Fig 3: Exposed Surface
Landscape near the Ione Formation.
Fig 4: Landscape
Landscape on the Ione formation.
Fig 5: Another Landscape

There are few opportunities to see an Oxisol outside of the tropics. The Ione soil is one example of an Oxisol formed in a tropical paleoclimate, protected by a layer of ironstone, and later exposed during recent times. This soil is thought to have originally formed from highly weathered alluvium washed down from the original Sierra Nevada (Eocene age) and deposited in a low energy environment. Subsequent uplift coupled with repeated wetting and drying cycles transformed plinthite near the surface into ironstone. This extremely hard surface of iron stone protected the underlying material from erosion, and was eventually buried by cobbly alluvium of similar age to that of the China Hat formation. Later uplift of the Sierra Nevada and the resulting erosion of overlying material re-exposed the Ione formation materials. Recent colluvial deposits have created a considerable layer of overburden, masking the properties of the original Ione material near the surface. The subsurface of this polygenic soil contained oxic horizons: a horizon with less than 10% weatherable minerals in the sand fraction and a high content of low activity clays such as kaolinite (Buol et al., 2003). In addition, redoximorphic features such as iron concretions and nodules were found throughout the oxic horizons. Concentrations of hematite, goethite, and plinthite were also visible in the oxic horizons (See Figure 1). For the classification of Oxisols, an otherwise xeric soil moisture regime is recognized as ustic in the Keys To Soil Taxonomy 9th edition. This characteristic coupled with a base saturation greater than 35% is recognized at the great group level classification of this soil: an Eutroustox.