Official Series Description


Lab Data Summary

Aggregate lab data for the ANDIC HAPLOCRYODS soil series. This aggregation is based on all pedons with a current taxon name of ANDIC HAPLOCRYODS, and applied along 1-cm thick depth slices. Solid lines are the slice-wise median, bounded on either side by the interval defined by the slice-wise 5th and 95th percentiles. The median is the value that splits the data in half. Five percent of the data are less than the 5th percentile, and five percent of the data are greater than the 95th percentile. Values along the right hand side y-axis describe the proportion of pedon data that contribute to aggregate values at this depth. For example, a value of "90%" at 25cm means that 90% of the pedons correlated to ANDIC HAPLOCRYODS were used in the calculation. Source: KSSL snapshot . Methods used to assemble the KSSL snapshot used by SoilWeb / SDE

There are insufficient data to create the lab data summary figure.


Water Balance

Monthly water balance estimated using a leaky-bucket style model for the ANDIC HAPLOCRYODS soil series. Monthly precipitation (PPT) and potential evapotranspiration (PET) have been estimated from the 50th percentile of gridded values (PRISM 1981-2010) overlapping with the extent of SSURGO map units containing each series as a major component. Monthly PET values were estimated using the method of Thornthwaite (1948). These (and other) climatic parameters are calculated with each SSURGO refresh and provided by the fetchOSD function of the soilDB package. Representative water storage values (“AWC” in the figures) were derived from SSURGO by taking the 50th percentile of profile-total water storage (sum[awc_r * horizon thickness]) for each soil series. Note that this representation of “water storage” is based on the average ability of most plants to extract soil water between 15 bar (“permanent wilting point”) and 1/3 bar (“field capacity”) matric potential. Soil moisture state can be roughly interpreted as “dry” when storage is depleted, “moist” when storage is between 0mm and AWC, and “wet” when there is a surplus. Clearly there are a lot of assumptions baked into this kind of monthly water balance. This is still a work in progress.

There are insufficient data to create the water balance bar figure.



There are insufficient data to create the water balance line figure.

Sibling Summary

Siblings are those soil series that occur together in map units, in this case with the ANDIC HAPLOCRYODS series. Sketches are arranged according to their subgroup-level taxonomic structure. Source: SSURGO snapshot , parsed OSD records and snapshot of SC database .

There are insufficient data to create the sibling sketch figure.

Select annual climate data summaries for the ANDIC HAPLOCRYODS series and siblings. Series are sorted according to hierarchical clustering of median values. Source: SSURGO map unit geometry and 1981-2010, 800m PRISM data .

There are insufficient data to create the annual climate figure.

Geomorphic description summaries for the ANDIC HAPLOCRYODS series and siblings. Series are sorted according to hierarchical clustering of proportions and relative hydrologic position within an idealized landform (e.g. top to bottom). Most soil series (SSURGO components) are associated with a hillslope position and one or more landform-specific positions: hills, mountain slopes, terraces, and/or flats. Proportions can be interpreted as an aggregate representation of geomorphic membership. The values printed to the left (number of component records) and right (Shannon entropy) of stacked bars can be used to judge the reliability of trends. Small Shannon entropy values suggest relatively consistent geomorphic association, while larger values suggest lack thereof. Source: SSURGO component records .

There are insufficient data to create the 2D hillslope position figure.

There are insufficient data to create the 3D hills figure.

There are insufficient data to create the 3D mountains figure.

There are insufficient data to create the 3D terrace figure.

There are insufficient data to create the 3D flats position figure.

Competing Series

Soil series competing with ANDIC HAPLOCRYODS share the same family level classification in Soil Taxonomy. Source: parsed OSD records and snapshot of the SC database .

There are insufficient data to create the competing sketch figure.

Select annual climate data summaries for the ANDIC HAPLOCRYODS series and competing. Series are sorted according to hierarchical clustering of median values. Source: SSURGO map unit geometry and 1981-2010, 800m PRISM data .

There are insufficient data to create the annual climate figure.

Geomorphic description summaries for the ANDIC HAPLOCRYODS series and competing. Series are sorted according to hierarchical clustering of proportions and relative hydrologic position within an idealized landform (e.g. top to bottom). Proportions can be interpreted as an aggregate representation of geomorphic membership. Most soil series (SSURGO components) are associated with a hillslope position and one or more landform-specific positions: hills, mountain slopes, terraces, and/or flats. The values printed to the left (number of component records) and right (Shannon entropy) of stacked bars can be used to judge the reliability of trends. Shannon entropy values close to 0 represent soil series with relatively consistent geomorphic association, while values close to 1 suggest lack thereof. Source: SSURGO component records .

There are insufficient data to create the 2D hillslope position figure.

There are insufficient data to create the 3D hills figure.

There are insufficient data to create the 3D mountains figure.

There are insufficient data to create the 3D terrace figure.

There are insufficient data to create the 3D flats position figure.

Soil series sharing subgroup-level classification with ANDIC HAPLOCRYODS, arranged according to family differentiae. Hovering over a series name will print full classification and a small sketch from the OSD. Source: snapshot of SC database .

This figure is not available.

Block Diagrams

Click a link below to display the diagram. Note that these diagrams may be from multiple survey areas.

  1. WA-2010-11-08-02 | Okanogan-Methon Highlands Area -

    Typical area in the Okanogan National Forest showing the relationship of the detailed soil map units (Soil Survey of Okanogan-Methon Highlands Area, Washington).

Map Units

Map units containing ANDIC HAPLOCRYODS as a major component. Limited to 250 records.

Map Unit Name Symbol Map Unit Area (ac) Map Unit Key National Map Unit Symbol Soil Survey Area Publication Date Map Scale
Einahnuhto silty clay loam-Andic Haplocryods, rubbly, complex, 1 to 8 percent slopes92358512431qb0ak65320001:24000
Aquic Haplocryands-Andic Haplocryods complex, 1 to 8 percent slopes2247512361q9sak65320001:24000
Andic Haplocryods-Lithic Haplocryods complex, 16 to 45 percent slopes101D14893347064831zfjak7061:250000
Andic Haplocryods-Lithic Haplocryods complex, 9 to 25 percent slopes101C11136347064731zfhak7061:250000
Andic Haplocryods-Lithic Haplocryods complex, 26 to 65 percent slopes101E7359347064931zfkak7061:250000
Andic Haplocryods-Lithic Haplocryods complex, 4 to 15 percent slopes101B2893347064631zfgak7061:250000
Typic Dystrocryepts-Andic Haplocryods-Histic Cryaquepts complex, 0 to 45 percent slopes205D2795347067031zg8ak7061:250000
Andic Haplocryods-Lithic Haplocryods complex, 46 to 100 percent slopes101F2390347065031zflak7061:250000
Typic Dystrocryepts-Andic Haplocryods-Histic Cryaquepts complex, 0 to 65 percent slopes205E1603347067231zg9ak7061:250000
Lithic Haplocryods-Andic Haplocryods complex, 46 to 65 percent slopes102E1573347065331zfpak7061:250000
Lithic Haplocryods-Andic Haplocryods complex, 66 to 100 percent slopes102F1571347065431zfqak7061:250000
Lithic Haplocryods-Andic Haplocryods complex, 26 to 45 percent slopes102D1029347065231zfnak7061:250000
Typic Dystrocryepts-Andic Haplocryods-Histic Cryaquepts complex, 0 to 25 percent slopes205C952347067131zg7ak7061:250000
Typic Dystrocryepts-Andic Haplocryods-Histic Cryaquepts complex, 0 to 100 percent slopes205F682347067331zgbak7061:250000
Andic Haplocryods-Terric Cryosaprists complex, 0 to 15 percent slopes103B642347065531zfrak7061:250000
Andic Haplocryods-Terric Cryosaprists complex, 0 to 25 percent slopes103C609347065631zfsak7061:250000
Andic Haplocryods-Lithic Haplocryods complex, 0 to 8 percent slopes101A581347063031zdsak7061:250000
Lithic Haplocryods-Andic Haplocryods complex, 16 to 25 percent slopes102C537347065131zfmak7061:250000
Andic Haplocryods-Terric Cryosaprists complex, 0 to 45 percent slopes103D277347065831zftak7061:250000
Typic Haplocryods-Andic Haplocryods complex, 0 to 8 percent slopes105A181347063831zf1ak7061:250000
Typic Haplocryods-Andic Haplocryods complex, 9 to 15 percent slopes105B141347065931zfwak7061:250000
Andic Haplocryods-Terric Cryosaprists complex, 0 to 8 percent slopes103A115347064431zf7ak7061:250000
Andic Haplocryods-Terric Cryosaprists complex, 0 to 65 percent slopes103E56347065731zfvak7061:250000
Typic Haplocryods-Andic Haplocryods complex, 16 to 25 percent slopes105C48347066031zfxak7061:250000
Lithic Haplocryods-Andic Haplocryods complex, 9 to 15 percent slopes102B33347063431zdxak7061:250000
Typic Haplocryods-Andic Haplocryods complex, 26 to 45 percent slopes105D25347066131zfyak7061:250000
Andic Haplocryods-Lithic Haplocryods complex, 16 to 45 percent slopes101D1111347071331zfjak7071:250000
Andic Haplocryods-Lithic Haplocryods complex, 9 to 25 percent slopes101C860347071231zfhak7071:250000
Andic Haplocryods-Lithic Haplocryods complex, 26 to 65 percent slopes101E677347071431zfkak7071:250000
Typic Dystrocryepts-Andic Haplocryods-Histic Cryaquepts complex, 0 to 65 percent slopes205E491347071831zg9ak7071:250000
Andic Haplocryods-Lithic Haplocryods complex, 4 to 15 percent slopes101B286347071131zfgak7071:250000
Typic Dystrocryepts-Andic Haplocryods-Histic Cryaquepts complex, 0 to 100 percent slopes205F199347071931zgbak7071:250000
Lithic Haplocryods-Andic Haplocryods complex, 16 to 25 percent slopes102C172347070631zfmak7071:250000
Typic Dystrocryepts-Andic Haplocryods-Histic Cryaquepts complex, 0 to 45 percent slopes205D167347071731zg8ak7071:250000
Lithic Haplocryods-Andic Haplocryods complex, 26 to 45 percent slopes102D144347070831zfnak7071:250000
Lithic Haplocryods-Andic Haplocryods complex, 66 to 100 percent slopes102F135347070931zfqak7071:250000
Typic Dystrocryepts-Andic Haplocryods-Histic Cryaquepts complex, 0 to 25 percent slopes205C38347071631zg7ak7071:250000
Lithic Haplocryods-Andic Haplocryods complex, 46 to 65 percent slopes102E13347071031zfpak7071:250000
Andic Haplocryods-Lithic Haplocryods complex, 46 to 100 percent slopes101F5347763331zflak7071:250000
Andic Dystrocryepts-Andic Haplocryods-Rock outcrop complex, 30 to 90 percent slopes32116407768102kxrwa63720081:24000
Andic Haplocryods, 20 to 60 percent slopes**517275755142jkywa68020031:24000
Andic Haplocryods-Rock outcrop-Chutes complex, 45 to 90 percent slopes**62954755552jm8wa68020031:24000
Andic Haplocryods, 10 to 30 percent slopes**4504754792jjtwa68020031:24000
Typic Vitricryands-Andic Haplocryods complex, till substratum, 25 to 75 percent slopes710114902612195nk17wa74920051:24000
Andic Haplocryods-Typic Vitricryands, till substratum, complex, 5 to 25 percent slopes90727698759752k1twa74920051:24000
Typic Vitricryands-Andic Haplocryods-Fulvicryands association, 35 to 90 percent slopes92023750759632k1fwa74920051:24000
Andic Haplocryods-Typic Vitricryands complex, cirque basin, 10 to 50 percent slopes70221966612197nk19wa74920051:24000
Andic Haplocryods-Typic Vitricryands association, 35 to 65 percent slopes90613838759622k1dwa74920051:24000
Andic Dystrocryepts-Andic Haplocryods-Cryofluvents association, till substratum, 0 to 35 percent slopes90011593759922k2cwa74920051:24000
Andic Haplocryods-Rock outcrop association, 35 to 65 percent slopes9058534759842k23wa74920051:24000
Andic Haplocryods-Vitrandic Dystrocryepts-Rock outcrop association, 35 to 90 percent slopes9096421759822k21wa74920051:24000
Andic Haplocryods-Rock outcrop association, 15 to 35 percent slopes9041259759832k22wa74920051:24000
Andic Haplocryods-Vitrandic Dystrocryepts-Rock outcrop association, 15 to 35 percent slopes9081082759812k20wa74920051:24000
Andic Haplocryods-Aquic Haplocryands association, 15 to 65 percent slopes8500173889341843531jqswa7621:24000
Andic Dystrocryepts-Histic Cryaquepts-Andic Haplocryods complex association, 0 to 45 percent slopes820063909341843431jqrwa7621:24000
Andic Dystrocryepts, cold-Andic Haplocryods, cold-Rock outcrop association, 15 to 100 percent slopes970034079341844331jr0wa7621:24000
Andic Haplocryods, cold-Lithic Dystrocryepts-Histic Cryaquepts association, cold, 0 to 65 percent slopes871033677341844231jqzwa7621:24000

Map of Series Extent

Approximate geographic distribution of the ANDIC HAPLOCRYODS soil series. To learn more about how this distribution was mapped, or to compare this soil series extent to others, use the Series Extent Explorer (SEE) application. Source: generalization of SSURGO geometry .