Data Package Metadata   View Summary

Hubbard Brook Experimental Forest: Log decomposition sensor data

General Information
Data Package:
Local Identifier:knb-lter-hbr.306.3
Title:Hubbard Brook Experimental Forest: Log decomposition sensor data
Alternate Identifier:DOI PLACE HOLDER
Abstract:

This data set documents the temporal and spatial variation of soil and deadwood moisture, and nearby microclimate, for the a four-month period from June to October 2018.

These data were gathered as part of the Hubbard Brook Ecosystem Study (HBES). The HBES is a collaborative effort at the Hubbard Brook Experimental Forest, which is operated and main tained by the USDA Forest Service, Northern Research Station.

Publication Date:2021-10-11

Time Period
Begin:
2018-06-06
End:
2018-10-19

People and Organizations
Contact:Hubbard Brook Ecosystem Study [  email ]
Creator:Green, Mark B (Case Western Reserve University)
Creator:Evans, Daniel M (Plymouth State University)
Creator:Fraver, Shawn (University of Maine)
Creator:Lutz, David A (Dartmouth College)
Creator:Woodall, Chris W (USDA Forest Service)

Data Entities
Data Table Name:
frankenlog_data_hbef
Description:
Log decomposition sensor data
Other Name:
LogSensorLayoutDiagram
Description:
Layout diagram for log and sensors, from Woodall et al. 2020. Figure 2.
Detailed Metadata

Data Entities


Data Table

Data:https://pasta-s.lternet.edu/package/data/eml/knb-lter-hbr/306/3/6167698249a56e232212049fceb732d0
Name:frankenlog_data_hbef
Description:Log decomposition sensor data
Number of Records:12957
Number of Columns:141

Table Structure
Object Name:frankenlog_data_hbef.csv
Size:8338028 bytes
Authentication:0d3af16222405786d089fb0e72453ec3 Calculated By MD5
Text Format:
Number of Header Lines:1
Record Delimiter:\n
Orientation:column
Simple Delimited:
Field Delimiter:,
Quote Character:"

Table Column Descriptions
 
Column Name:datetime  
precip  
RH  
airT  
wind_dir  
snag_moist.1  
snag_T.1  
snag_moist.2  
snag_T.2  
snag_moist.3  
snag_T.3  
snag_moist.4  
snag_T.4  
snag_moist.5  
snag_T.5  
snag_moist.6  
snag_T.6  
moist_0  
temp_0  
moist_1  
temp_1  
moist_2  
temp_2  
moist_3  
temp_3  
moist_4  
temp_4  
moist_7  
temp_7  
moist_9  
temp_9  
moist_e  
temp_e  
moist_n  
temp_n  
moist_o  
temp_o  
moist_r  
temp_r  
moist_s  
temp_s  
moist_x  
temp_x  
moist_y  
temp_y  
moist_E  
temp_E  
moist_N  
temp_N  
moist_O  
temp_O  
moist_R  
temp_R  
moist_S  
temp_S  
moist_X  
temp_X  
moist_Y  
temp_Y  
moist_5  
temp_5  
moist_6  
temp_6  
moist_a  
temp_a  
moist_b  
temp_b  
moist_c  
temp_c  
moist_d  
temp_d  
moist_f  
temp_f  
moist_g  
temp_g  
moist_h  
temp_h  
moist_i  
temp_i  
moist_j  
temp_j  
moist_A  
temp_A  
moist_B  
temp_B  
moist_C  
temp_C  
moist_D  
temp_D  
moist_F  
temp_F  
moist_G  
temp_G  
moist_H  
temp_H  
moist_I  
temp_I  
moist_J  
temp_J  
moist_8  
temp_8  
moist_k  
temp_k  
moist_l  
temp_l  
moist_m  
temp_m  
moist_p  
temp_p  
moist_q  
temp_q  
moist_t  
temp_t  
moist_u  
temp_u  
moist_v  
temp_v  
moist_w  
temp_w  
moist_z  
temp_z  
moist_K  
temp_K  
moist_L  
temp_L  
moist_M  
temp_M  
moist_P  
temp_P  
moist_Q  
temp_Q  
moist_T  
temp_T  
moist_U  
temp_U  
moist_V  
temp_V  
moist_W  
temp_W  
moist_Z  
temp_Z  
Definition:observation timestampprecipitation per 5-minute period from rain gauge 4 (units are mm per 5-min)relative humidity as a proportion, measured adjacent to the log in the sub-canopyair temperature measured adjacent to the log in the sub-canopy (degrees C)wind direction (degrees)moisture in the standing deadwood (%)temperature in the TDR probe (degrees C)moisture in the standing deadwood (%)temperature in the TDR probe (degrees C)moisture in the standing deadwood (%)temperature in the TDR probe (degrees C)moisture in the standing deadwood (%)temperature in the TDR probe (degrees C)moisture in the standing deadwood (%)temperature in the TDR probe (degrees C)moisture in the standing deadwood (%)temperature in the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)moisture in the deadwood or soil (%)temperature in the head of the TDR probe (degrees C)
Storage Type:date  
float  
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Measurement Type:dateTimeratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratioratio
Measurement Values Domain:
FormatYYYY-MM-DD hh:mm:ss
Precision
Unitmillimeter
Typereal
Min
Max10.2 
Unitpercent
Typereal
Min0.4238 
Max1.05113333333333 
Unitcelsius
Typereal
Min2.66 
Max27.32 
Unitdegree
Typereal
Min
Max360 
Unitpercent
Typereal
Min11.0545454545455 
Max26.225 
Unitcelsius
Typereal
Min-3.06666666666667 
Max26.5733333333333 
Unitpercent
Typereal
Min7.5 
Max16.38 
Unitcelsius
Typereal
Min-3.20666666666667 
Max27.22 
Unitpercent
Typereal
Min
Max20.6133333333333 
Unitcelsius
Typereal
Min1.02 
Max24.9466666666667 
Unitpercent
Typereal
Min
Max13.1466666666667 
Unitcelsius
Typereal
Min-2.91333333333333 
Max27.6466666666667 
Unitpercent
Typereal
Min
Max72.9666666666667 
Unitcelsius
Typereal
Min-3.3 
Max28.38 
Unitpercent
Typereal
Min
Max17.5333333333333 
Unitcelsius
Typereal
Min-0.44 
Max26.0466666666667 
Unitpercent
Typereal
Min
Max80.8 
Unitcelsius
Typereal
Min-0.6 
Max34.5 
Unitpercent
Typereal
Min
Max59.5 
Unitcelsius
Typereal
Min-0.4 
Max31.2 
Unitpercent
Typereal
Min
Max27.6 
Unitcelsius
Typereal
Min-2.7 
Max35.2 
Unitpercent
Typereal
Min
Max42.7 
Unitcelsius
Typereal
Min-2.8 
Max29 
Unitpercent
Typereal
Min
Max34.6 
Unitcelsius
Typereal
Min-1.7 
Max29.9 
Unitpercent
Typereal
Min
Max56 
Unitcelsius
Typereal
Min-2.3 
Max28.1 
Unitpercent
Typereal
Min
Max23.1 
Unitcelsius
Typereal
Min-2.7 
Max27.3 
Unitpercent
Typereal
Min
Max33.2 
Unitcelsius
Typereal
Min-3 
Max17.9 
Unitpercent
Typereal
Min
Max28.3 
Unitcelsius
Typereal
Min-3.5 
Max16.8 
Unitpercent
Typereal
Min
Max36.8 
Unitcelsius
Typereal
Min-1 
Max17.4 
Unitpercent
Typereal
Min8.7 
Max18.7 
Unitcelsius
Typereal
Min7.6 
Max17 
Unitpercent
Typereal
Min
Max36.9 
Unitcelsius
Typereal
Min-2.5 
Max17.5 
Unitpercent
Typereal
Min
Max42.9 
Unitcelsius
Typereal
Min-0.7 
Max18 
Unitpercent
Typereal
Min
Max30.6 
Unitcelsius
Typereal
Min-3 
Max17.6 
Unitpercent
Typereal
Min
Max30.7 
Unitcelsius
Typereal
Min-1.5 
Max19.4 
Unitpercent
Typereal
Min
Max30.9 
Unitcelsius
Typereal
Min-1.6 
Max18.2 
Unitpercent
Typereal
Min
Max42.3 
Unitcelsius
Typereal
Min-3 
Max18.9 
Unitpercent
Typereal
Min7.9 
Max19 
Unitcelsius
Typereal
Min6.6 
Max18 
Unitpercent
Typereal
Min
Max36.8 
Unitcelsius
Typereal
Min-2.6 
Max18.9 
Unitpercent
Typereal
Min
Max47.5 
Unitcelsius
Typereal
Min-1.4 
Max19.6 
Unitpercent
Typereal
Min
Max40.5 
Unitcelsius
Typereal
Min-1.8 
Max17.9 
Unitpercent
Typereal
Min
Max55 
Unitcelsius
Typereal
Min-1.1 
Max26.5 
Unitpercent
Typereal
Min
Max32.3 
Unitcelsius
Typereal
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Unitpercent
Typereal
Min
Max32.8 
Unitcelsius
Typereal
Min7.9 
Max17.1 
Unitpercent
Typereal
Min
Max36.4 
Unitcelsius
Typereal
Min
Max17.1 
Unitpercent
Typereal
Min
Max43.5 
Unitcelsius
Typereal
Min5.1 
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Unitpercent
Typereal
Min
Max41.3 
Unitcelsius
Typereal
Min-3.2 
Max18 
Unitpercent
Typereal
Min
Max25.8 
Unitcelsius
Typereal
Min8.6 
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Unitpercent
Typereal
Min24.9 
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Unitcelsius
Typereal
Min14.9 
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Unitpercent
Typereal
Min
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Unitcelsius
Typereal
Min6.7 
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Typereal
Min
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Min-2.3 
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Min
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Typereal
Min
Max36.6 
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Min
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Min
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Min-1.6 
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Min
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Min
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Min
Max34.1 
Unitcelsius
Typereal
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Typereal
Min
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Typereal
Min
Max33.7 
Unitcelsius
Typereal
Min-0.8 
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Typereal
Min
Max37 
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Typereal
Min-1 
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Typereal
Min
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Typereal
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Typereal
Min
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Typereal
Min
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Typereal
Min
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Min
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Typereal
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Typereal
Min
Max30.6 
Unitcelsius
Typereal
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Typereal
Min
Max33.8 
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Typereal
Min
Max31.8 
Unitcelsius
Typereal
Min5.4 
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Unitpercent
Typereal
Min
Max59.2 
Unitcelsius
Typereal
Min-0.5 
Max17.4 
Unitpercent
Typereal
Min
Max27.3 
Unitcelsius
Typereal
Min5.6 
Max18.7 
Unitpercent
Typereal
Min
Max32.8 
Unitcelsius
Typereal
Min6.1 
Max18.9 
Unitpercent
Typereal
Min
Max20.7 
Unitcelsius
Typereal
Min5.1 
Max17.1 
Unitpercent
Typereal
Min
Max48.1 
Unitcelsius
Typereal
Min-0.1 
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Accuracy Report:                                                                                                                                                                                                                                                                                          
Accuracy Assessment:                                                                                                                                                                                                                                                                                          
Coverage:                                                                                                                                                                                                                                                                                          
Methods:                                                                                                                                                                                                                                                                                          

Non-Categorized Data Resource

Name:LogSensorLayoutDiagram
Entity Type:unknown
Description:Layout diagram for log and sensors, from Woodall et al. 2020. Figure 2.
Physical Structure Description:
Object Name:LogSensorLayoutDiagram.png
Size:81153 bytes
Authentication:0da86fc0870226b473474064456a6ecb Calculated By MD5
Externally Defined Format:
Format Name:image/png
Data:https://pasta-s.lternet.edu/package/data/eml/knb-lter-hbr/306/3/2217ef3e716a52d3ee1b4259e698fe36

Data Package Usage Rights

This information is released under the Creative Commons license - Attribution - CC BY (https://creativecommons.org/licenses/by/4.0/). The consumer of these data ("Data User" herein) is required to cite it appropriately in any publication that results from its use. The Data User should realize that these data may be actively used by others for ongoing research and that coordination may be necessary to prevent duplicate publication. The Data User is urged to contact the authors of these data if any questions about methodology or results occur. Where appropriate, the Data User is encouraged to consider collaboration or co-authorship with the authors. The Data User should realize that misinterpretation of data may occur if used out of context of the original study. While substantial efforts are made to ensure the accuracy of data and associated documentation, complete accuracy of data sets cannot be guaranteed. All data are made available "as is." The Data User should be aware, however, that data are updated periodically and it is the responsibility of the Data User to check for new versions of the data. The data authors and the repository where these data were obtained shall not be liable for damages resulting from any use or misinterpretation of the data. Thank you.

Keywords

By Thesaurus:
LTER Controlled Vocabularyecosystems, forests, watersheds, decomposition, soil, soil moisture, temperature, relative humidity
LTER Core Research Areadisturbance
HBES VocabularyHBR, Hubbard Brook LTER, Hubbard Brook Experimental Forest, Hubbard Brook Ecosystem Study, HBES, HBEF, New Hampshire, NH, White Mountain National Forest
ISO 19115 Topic Categorybiota, climatologyMeteorologyAtmosphere
National Research & Development TaxonomyClimate change, Climate change effects, Ecology, Ecosystems, & Environment

Methods and Protocols

These methods, instrumentation and/or protocols apply to all data in this dataset:

Methods and protocols used in the collection of this data package
Description:

Twelve time -domain reflectometer (TDR) sensors were inserted into a downed sugar maple log and measured the moisture content every 5-minutes. Six TDR sensors were inserted into the standing de ad wood (snag) associated with the downed log. Soil moisture and temperature was measured along six transects, perpendicular to log. Each transect included five locations and two de pths (10 and 20 cm). Micrometerology included wind direction, air temperature and relative humidity, and precipitation.

The exact layout for the sensor installation is described in Woodall et al. (2020).

Woodall, C. W., Evans, D. M., Fraver, S., Green, M. B., Lutz, D. A., & D’Amato, A. W. (2020). Real-time monitoring of deadwood moisture in forests: lessons learned from an intensive case study. Canadian Journal of Forest Research, 50(11), 1244-1252.

People and Organizations

Publishers:
Organization:Environmental Data Initiative
Email Address:
info@environmentaldatainitiative.org
Web Address:
https://environmentaldatainitiative.org
Id:https://ror.org/0330j0z60
Creators:
Individual: Mark B Green
Organization:Case Western Reserve University
Email Address:
mbg78@case.edu
Id:https://orcid.org/0000-0002-7415-7209
Individual: Daniel M Evans
Organization:Plymouth State University
Email Address:
dmevans1@plymouth.edu
Id:https://orcid.org/0000-0001-5637-1140
Individual: Shawn Fraver
Organization:University of Maine
Email Address:
shawn.fraver@maine.edu
Individual: David A Lutz
Organization:Dartmouth College
Email Address:
David.A.Lutz@Dartmouth.edu
Individual: Chris W Woodall
Organization:USDA Forest Service
Email Address:
christopher.w.woodall@usda.gov
Contacts:
Organization:Hubbard Brook Ecosystem Study
Email Address:
hbr-im@lternet.edu

Temporal, Geographic and Taxonomic Coverage

Temporal, Geographic and/or Taxonomic information that applies to all data in this dataset:

Time Period
Begin:
2018-06-06
End:
2018-10-19
Geographic Region:
Description:Hubbard Brook Experimental Forest
Bounding Coordinates:
Northern:  43.959Southern:  43.914
Western:  -71.8062Eastern:  -71.7022

Project

Parent Project Information:

Title:Log decomposition study
Personnel:
Individual: Mark B Green
Organization:Case Western Reserve University
Email Address:
mbg78@case.edu
Id:https://orcid.org/0000-0002-7415-7209
Role:Principal Investigator
Funding: USDA Forest Service, Northern Research Station NA
Related Project:
Title:Log decomposition study
Personnel:
Individual: Mark B Green
Organization:Case Western Reserve University
Email Address:
mbg78@case.edu
Id:https://orcid.org/0000-0002-7415-7209
Role:Principal Investigator
Funding: USDA Forest Service, Forest Inventory and Analysis Program NA

Maintenance

Maintenance:
Description:complete
Frequency:
Other Metadata

EDI is a collaboration between the University of New Mexico and the University of Wisconsin – Madison, Center for Limnology:

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