Überspringen zum Hauptinhalt

Datenverzeichnis

Spalte Typ Bezeichnung Beschreibung
ID text ID

Landslide ID specific for the database, includes the data source (311, USGS, D10, etc.) followed by a number (i.e., D10-1). ID numbers are based on ranked order of the landslides from each data source from south to north based on their latitudes. Slides with exactly the same latitude at database precision are ordered from west to east.

Data Source text Data Source

The name of the data source (i.e., 311, USGS, D10, etc., without an ID number).

OriginalLabel text Original Label

The original labels of the landslide if they exist. This aims to enable linking between slides in the database to slides in the respective source list.

Latitude numeric Latitude

Decimal degrees north of the Equator.

Longitude numeric Longitude

Decimal degrees west of the Prime Meridian (by convention the westward direction is indicated by a negative value).

County text LOCATION

County where landslide occurred, inherited from data source or spatial query.

Municipality text Municipality

Municipality where landslide occurred, inherited from data source or spatial query.

StateRoute numeric State Route

Included for PennDOT data. Route number of route near landslide occurrence.

StartSegment numeric Start Segment

Included for PennDOT data. Start segment of route section where landslide occurred.

OffsetFromStartSegment text Offset From Start Segment

Included for PennDOT data. Offset from start segment of route section where landslide occurred (ft).

AboveOrBelowRoad text Above Or Below Road

Describes whether the landslide is above (A) or below (B) the road in the context of local elevations. AB marks that it occurs both above and below.

SlideTypeDCNR text Slide Type DCNR

Describes the landslide type following DCNR classification (Delano and Wilshusen, 2001) (Categories included in the database: Debris avalanche, Debris flow, Debris slide, Earthflow, Mudflow, Rock fall, Rock slump, Slump, and Soil creep, for more details see section 4.6 of the report describing the database).

LandslideArea numeric Landslide Area

The areal extent of slide materials (ft^2).

LandslideDownslopeDisplacement text Landslide Downslope Displacement

The magnitude of downslope displacement (ft) as recorded from the landslide’s head scarp to the nearest occurrence of run out material (see Figure 2.2.1 in the report).

DepthToFailurePlane text Depth To Failure Plane

The depth (ft) to the failure plain as recorded from field observations, cores or alike (see Figure 2.2.1 in the report).

Month numeric Month

Month of landslide occurrence.

Day numeric Day

Day of landslide occurrence.

Year numeric Year

Year of landslide occurrence.

Elevation numeric Elevation

Elevation (ft) above mean averaged sea level for the landslide polygon centroid or the landslide point location based on the smoothed DEM.

LocalRelief numeric Local Relief

Local relief (ft) in each DEM pixel is computed from the smoothed DEM using TopoToolbox (a MATLAB based set of topographic analysis algorithms, (Schwanghart and Scherler, 2014)) and computes the difference between the highest and lowest elevations within a circular kernel whose radius is 820 ft (typical hillslope length) that is centered on each pixel.

Slope numeric Slope

Slope (degrees) was computed from the smoothed 10m DEM as the total gradient computed over a 3*3 kernel.

TopographicRoughness numeric Topographic Roughness

Roughness (ft) was computed as the standard deviation of elevation differences between the original DEM and DEM that is smoothed with a kernel of 150 ft radius.

Aspect numeric Aspect

Aspect (azimuthal degrees, clockwise from north) in each DEM pixel is computed from the smoothed DEM using TopoToolbox (a MATLAB based set of topographic analysis algorithms, (Schwanghart and Scherler, 2014)) and computes the slope orientation at the landslide location.

DrainageArea numeric Drainage Area

Drainage area (ft^2) in each DEM pixel is computed from the number of DEM pixels that drain to a pixel of interest, and is computed from the smoothed DEM using TopoToolbox (a MATLAB based set of topographic analysis algorithms, (Schwanghart and Scherler, 2014))).

WetnessIndex numeric Wetness Index

Wetness index in each DEM pixel is computed from the natural logarithm of the ratio between the area (ft^2) that drains to the pixel and the topographic slope (ft/ft) of the pixel (both computed from the smoothed DEM using TopoToolbox (a MATLAB based set of topographic analysis algorithms, (Schwanghart and Scherler, 2014))).

HillslopePosition numeric Hillslope Position

Hillslope position is the relative location along a hillslope, where values of 0, 0.5, and 1 represent the base, middle and top of the hill, respectively. The hillslope position is approximated as (Z-Zb)/Re, where Z is the elevation at the landslide location, Zb is the lowermost elevation of the hill, and Re is the hill’s topographic relief (i.e., elevation difference between the hill’s top and base, Figure 2.2.2). Zb and Re are approximated by finding the minimum and maximum elevations within a circular area, centered on the landslide, whose radius equals a typical hillslope length (~820 ft).

DistanceToNearestStream numeric Distance To Nearest Stream

Based on an ArcGIS algorithm that creates a raster of Euclidean distances from the nearest stream (i.e., the “Distance Accumulation” function), where streams are defined as landscape positions having drainage area larger than 4,500,000 ft2 (based on a typical drainage area threshold for channel initiation). Distance from nearest stream (ft) is then sampled from this raster.

DistanceToNearestRoad numeric Distance To Nearest Road

Based on an ArcGIS algorithm that creates a raster of Euclidean distances from the nearest road (i.e., the “Distance Accumulation” function), where roads, including dirt roads, are based on the combination of State Roads, Local Roads, and Unpaved Roads (Penn State - Center for Dirt and Gravel Road Studies, 2012; Pennsylvania Department of Transportation, 2024a, 2024b). Distance from nearest road (ft) is then sampled from this raster.

MeanCurvature numeric Mean Curvature

Mean curvature (ft^-1) in each DEM pixel is computed from the smoothed DEM using TopoToolbox (a MATLAB based set of topographic analysis algorithms, (Schwanghart and Scherler, 2014)) and relies on the curvature of a two dimensional polynomial surface computed based on a 3*3 kernel centered at each DEM pixel (Schmidt, Evans and Brinkmann, 2003). Positive and negative values are indicative of concave (channels) and convex (ridges) landforms, respectively.

PlanarCurvature numeric Planar Curvature

Planar curvature (ft^-1) in each DEM pixel is computed from the smoothed DEM using TopoToolbox (a MATLAB based set of topographic analysis algorithms, (Schwanghart and Scherler, 2014)) and relies on the curvature, perpendicular to the steepest descent of a two dimensional polynomial surface computed based on a 3*3 kernel centered at each DEM pixel (Schmidt, Evans and Brinkmann, 2003). Positive and negative values are indicative of upstream (channels) and downstream (ridges) curvature, respectively.

ProfileCurvature numeric Profile Curvature

Profile curvature (ft^-1) in each DEM pixel is computed from the smoothed DEM using TopoToolbox (a MATLAB based set of topographic analysis algorithms, (Schwanghart and Scherler, 2014) and relies on the curvature, in the direction of steepest descent, of a two dimensional polynomial surface computed based on a 3*3 kernel centered at each DEM pixel (Schmidt, Evans and Brinkmann, 2003). Positive and negative values are indicative of decreased and increase slope downstream, respectively, which are typically associated with channels and ridges, respectively.

SoilUnit text Soil Unit

This is a name for the soil, generally based on historical soil series names generated for county soil surveys. This name allows linkage of experience based on soil survey names to the quantitative measures presented here.

SandContent numeric Sand Content

Component proportion and horizon thickness weighted average of percent sand in SSURGO database (Soil Survey Staff, 2023) for the mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map.

SiltContent numeric Silt Content

Component proportion and horizon thickness weighted average of percent silt in SSURGO database (Soil Survey Staff, 2023) for the mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map.

ClayContent numeric Clay Content

Component proportion and horizon thickness weighted average of percent clay in SSURGO database (Soil Survey Staff, 2023) for the mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map.

ErodibilityFactor numeric Erodibility Factor

Component proportion and horizon thickness weighted average of soil erodibility factor in SSURGO database (Soil Survey Staff, 2023) for the mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map.

AverageSoilThickness numeric Average Soil Thickness

Component proportion weighted average total thickness (in) of soil horizons in SSURGO database (Soil Survey Staff, 2023) for the mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map. Note that SSURGO data may not report the total depth of soils, and use of this parameter should incorporate that limitation.

AASHTOsoil numeric AASHTO soil

Component proportion and horizon thickness weighted average of AASHTO soil classification in SSURGO database (Soil Survey Staff, 2023) for the mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map.

ErosionHazardPotential text Erosion Hazard Potential

Pre-aggregated data in SSURGO database (Soil Survey Staff, 2023) for the mapped soil unit at landslide polygon centroid or landslide point location. These values are assigned to the soil map unit, so smoothing was not used for this parameter. [Class Description: Not rated, Slight, Moderate, Severe]

ErosionClass numeric Erosion Class

Component percent weighted sum of erosion class in SSURGO database (Soil Survey Staff, 2023) for mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map. [Class Description: Area of sediment deposition = 0, Class 1 (0-25% soil loss) = 1, Class 2 (25-75% soil loss) = 2, Class 3 (75-99% soil loss) = 3, Class 4 (complete soil loss) = 4]

PlanningLimitationLocalRoadsAndStreets text Planning Limitation Local Roads And Streets

Assigned to mapunit based on soil surveys (Soil Survey Staff, 2023) for mapped soil unit at landslide polygon centroid or landslide point location. These values are assigned to the soil map unit, so smoothing was not used for this parameter. [Class Description: Not rated, Not limited, Somewhat limited, Very limited].

DrainageClass numeric Drainage Class

Component percent weighted sum of drainage class in SSURGO database (Soil Survey Staff, 2023) for the mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map. [Class Description: Excessively drained =1, Somewhat excessively drained =2, Well drained = 3, Moderately well drained =4, Somewhat poorly drained = 5, Poorly drained =6, Very poorly drained =7]

RunoffClass numeric Runoff Class

Component percent weighted sum of runoff class in SSURGO database (Soil Survey Staff, 2023) for mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map. [Class Description: Negligible =1, Very low =2, Low =3, Medium =4, High= 5, Very high =6]

SoilSlipPotential numeric Soil Slip Potential

Component percent weighted sum of soil slip potential in SSURGO database (Soil Survey Staff, 2023) for mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map. [Class Description: Low=1, Medium =2, High=3]

SoilPorosity numeric Soil Porosity

Component proportion and horizon thickness weighted average of soil porosity (in3/in3) in SSURGO database (Soil Survey Staff, 2023) for mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map.

SaturatedHydraulicConductivity numeric Saturated Hydraulic Conductivity

Horizon thickness and component proportion weighted average of horizon vertical conductivities (micrometers per second) in SSURGO database (Soil Survey Staff, 2023) for mapped soil unit at landslide polygon centroid or landslide point location on the smoothed parameter map.

GeologicFormationOrGroup text Geologic Formation Or Group

Geologic formation or group (as defined by Pennsylvania Bureau of Topographic and Geologic Survey, Department of Conservation and Natural Resources (2001)) at the landslide polygon centroid or landslide point location.

ElevationAbovePittsburghCoal numeric Elevation Above Pittsburgh Coal

This is based on the elevation (ft) difference between the topographic surface and the marker bed elevation at the location of each landslide (Northern and Central Appalachian Basin Coal Regions Assessment Team, 2001). In areas that are not underlain by a marker bed, no value is assigned.

ElevationAboveUpperFreeportCoal numeric Elevation Above Upper Freeport Coal

This is based on the elevation (ft) difference between the topographic surface and the marker bed elevation at the location of each landslide (Northern and Central Appalachian Basin Coal Regions Assessment Team, 2001). In areas that are not underlain by a marker bed, no value is assigned.

DipOfPittsburghCoal numeric Dip Of Pittsburgh Coal

The dip (degrees) was computed from the marker bed raster (Northern and Central Appalachian Basin Coal Regions Assessment Team, 2001) as the total gradient computed over a 3*3 kernel.

DipOfUpperFreeportCoal numeric Dip Of Upper Freeport Coal

The dip (degrees) was computed from the marker bed raster (Northern and Central Appalachian Basin Coal Regions Assessment Team, 2001) as the total gradient computed over a 3*3 kernel.

AspectOfPittsburghCoal numeric Aspect Of Pittsburgh Coal

Aspect (Measured in azimuthal degrees, clockwise from north) in each marker bed (Northern and Central Appalachian Basin Coal Regions Assessment Team, 2001) pixel is computed using TopoToolbox (a MATLAB based set of topographic analysis algorithms, (Schwanghart and Scherler, 2014)) and reflects the orientation of the marker bed dip the landslide location.

AspectOfUpperFreeportCoal numeric Aspect Of Upper Freeport Coal

Aspect (Measured in azimuthal degrees, clockwise from north) in each marker bed (Northern and Central Appalachian Basin Coal Regions Assessment Team, 2001) pixel is computed using TopoToolbox (a MATLAB based set of topographic analysis algorithms, (Schwanghart and Scherler, 2014)) and reflects the orientation of the marker bed dip the landslide location.

DistanceToUndergroundMine numeric Distance To Underground Mine

Based on an ArcGIS algorithm that creates a raster of Euclidean distances (ft) from the nearest underground mine (i.e., the “Distance Accumulation” function), where underground mines are defined by the PADEP “Digitized Mined Areas” (Pennsylvania Department of Environmental Protection, 2023b). A distance of zero implies that a mine is mapped directly below the landslide.

DepthToUndergroundMine numeric Depth To Underground Mine

Elevation (ft) of landslide above uppermost mapped coal contours (i.e., Pittsburgh or Upper Freeport coal (Northern and Central Appalachian Basin Coal Regions Assessment Team, 2001)) if mining occurred directly below the landslide polygon centroid or point.

MeanPrecipitationAtDayOfLandslide numeric Mean Precipitation At Day Of Landslide

The mean average precipitation (in) was computed over a period of 1, 2, 7, 30, 90, and 180 days prior to landslides that have an associated date of landslide occurrence.

MeanPrecipitationOver2DaysBeforeLandslide numeric Mean Precipitation Over 2 Days Before Landslide

The mean average precipitation (in) was computed over a period of 1, 2, 7, 30, 90, and 180 days prior to landslides that have an associated date of landslide occurrence.

MeanPrecipitationOver7DaysBeforeLandslide numeric Mean Precipitation Over 7 Days Before Landslide

The mean average precipitation (in) was computed over a period of 1, 2, 7, 30, 90, and 180 days prior to landslides that have an associated date of landslide occurrence.

MeanPrecipitationOver30DaysBeforeLandslide numeric Mean Precipitation Over 30 Days Before Landslide

The mean average precipitation (in) was computed over a period of 1, 2, 7, 30, 90, and 180 days prior to landslides that have an associated date of landslide occurrence.

MeanPrecipitationOver90DaysBeforeLandslide numeric Mean Precipitation Over 90 Days Before Landslide

The mean average precipitation (in) was computed over a period of 1, 2, 7, 30, 90, and 180 days prior to landslides that have an associated date of landslide occurrence.

MeanPrecipitationOver180DaysBeforeLandslide numeric Mean Precipitation Over 180 Days Before Landslide

The mean average precipitation (in) was computed over a period of 1, 2, 7, 30, 90, and 180 days prior to landslides that have an associated date of landslide occurrence.

NumberOfFreezeThawAlterationsOver7DaysBeforeLandslide numeric Number Of Freeze Thaw Alterations Over 7 Days Before Landslide

The number of freeze thaw alterations over periods of 7, 30 and 365 days were counted prior to landslides that have timing information.

MeanLengthOfFreezeThawCyclesOver7DaysBeforeLandslide numeric Mean Length Of Freeze Thaw Cycles Over 7 Days Before Landslide

The mean length (days) of freeze thaw cycles over periods of 7, 30 and 365 days prior to landslides that have timing information.

MeanTemperatureOfFreezeCyclesOver7DaysBeforeLandslide numeric Mean Temperature Of Freeze Cycles Over 7 Days Before Landslide

The mean temperature (degrees F) of freezes over periods of 7, 30 and 365 days prior to landslides that have timing information.

MinimumTemperatureOfFreezeCyclesOver7DaysBeforeLandslide numeric Minimum Temperature Of Freeze Cycles Over 7 Days Before Landslide

The minimum temperature (degrees F) of freezes over periods of 7, 30 and 365 days prior to landslides that have timing information.

MeanTemperatureOfThawCyclesOver7DaysBeforeLandslide numeric Mean Temperature Of Thaw Cycles Over 7 Days Before Landslide

The mean temperature (degrees F) of thaws over periods of 7, 30 and 365 days prior to landslides that have timing information.

MeanGeneralTemperatureOver7DaysBeforeLandslide numeric Mean General Temperature Over 7 Days Before Landslide

The mean temperature (degrees F) of entire period over periods of 7, 30 and 365 days prior to landslides that have timing information.

NumberOfFreezeThawAlterationsOver30DaysBeforeLandslide numeric Number Of Freeze Thaw Alterations Over 30 Days Before Landslide

The number of freeze thaw alterations over periods of 7, 30 and 365 days were counted prior to landslides that have timing information.

MeanLengthOfFreezeThawCyclesOver30DaysBeforeLandslide numeric Mean Length Of Freeze Thaw Cycles Over 30 Days Before Landslide

The mean length (days) of freeze thaw cycles over periods of 7, 30 and 365 days prior to landslides that have timing information.

MeanTemperatureOfFreezeCyclesOver30DaysBeforeLandslide numeric Mean Temperature Of Freeze Cycles Over 30 Days Before Landslide

The mean temperature (degrees F) of freezes over periods of 7, 30 and 365 days prior to landslides that have timing information.

MinimumTemperatureOfFreezeCyclesOver30DaysBeforeLandslide numeric Minimum Temperature Of Freeze Cycles Over 30 Days Before Landslide

The minimum temperature (degrees F) of freezes over periods of 7, 30 and 365 days prior to landslides that have timing information.

MeanTemperatureOfThawCyclesOver30DaysBeforeLandslide numeric Mean Temperature Of Thaw Cycles Over 30 Days Before Landslide

The mean temperature (degrees F) of thaws over periods of 7, 30 and 365 days prior to landslides that have timing information.

MeanGeneralTemperatureOver30DaysBeforeLandslide numeric Mean General Temperature Over 30 Days Before Landslide

The mean temperature (degrees F) of entire period over periods of 7, 30 and 365 days prior to landslides that have timing information.

NumberOfFreezeThawAlterationsOver365DaysBeforeLandslide numeric Number Of Freeze Thaw Alterations Over 365 Days Before Landslide

The number of freeze thaw alterations over periods of 7, 30 and 365 days were counted prior to landslides that have timing information.

MeanLengthOfFreezeThawCyclesOver365DaysBeforeLandslide numeric Mean Length Of Freeze Thaw Cycles Over 365 Days Before Landslide

The mean length (days) of freeze thaw cycles over periods of 7, 30 and 365 days prior to landslides that have timing information.

MeanTemperatureOfFreezeCyclesOver365DaysBeforeLandslide numeric Mean Temperature Of Freeze Cycles Over 365 Days Before Landslide

The mean temperature (degrees F) of freezes over periods of 7, 30 and 365 days prior to landslides that have timing information.

MinimumTemperatureOfFreezeCyclesOver365DaysBeforeLandslide numeric Minimum Temperature Of Freeze Cycles Over 365 Days Before Landslide

The minimum temperature (degrees F) of freezes over periods of 7, 30 and 365 days prior to landslides that have timing information.

MeanTemperatureOfThawCyclesOver365DaysBeforeLandslide numeric Mean Temperature Of Thaw Cycles Over 365 Days Before Landslide

The mean temperature (degrees F) of thaws over periods of 7, 30 and 365 days prior to landslides that have timing information.

MeanGeneralTemperatureOver365DaysBeforeLandslide numeric Mean General Temperature Over 365 Days Before Landslide

The mean temperature (degrees F) of entire period over periods of 7, 30 and 365 days prior to landslides that have timing information.

Zusätzliche Informationen

Feld Wert
Daten wurden zuletzt aktualisiert 6. März 2025
Metadaten zuletzt aktualisiert 29. März 2025
Erstellt 6. März 2025
Format CSV
Lizenz Creative Commons Attribution Share-Alike
Datastore activeTrue
Has viewsTrue
Hasha849d705ed51ef716a38b1f524ec80bc
Idf6aea9d6-910c-4755-9bf6-e4c40d2f52e0
Mimetypetext/csv
Package id42a2155f-edf2-4baf-bac9-6d3e77c4a463
Position1
PreviewTrue
Preview rows6.461
Size3,8 MiB
Stateactive
Total record count6.461
Tracking summary{'total': 0, 'recent': 0}
Url typeupload

Data Use Agreement

You must agree to the terms below to access the site.

Terms of use

The Western Pennsylvania Regional Data Center (WPRDC) is a project led by the University Center of Social and Urban Research (UCSUR) at the University of Pittsburgh ("University") in collaboration with City of Pittsburgh and The County of Allegheny in Pennsylvania. The WPRDC and the WPRDC Project is supported by a grant from the Richard King Mellon Foundation.

This Data Use Agreement covers the terms and conditions that you must agree to before you access or use the Data on deposit with the WPRDC. By using the data available on the WPRDC website portal, you agree to the terms and conditions of your access to the WPRDC and your use of the Data on deposit with the WPRDC.

Intending to be legally bound, you agree to the following:

  1. Effective Date: The effective date of the Agreement is the date of your signature or click through acceptance of these terms, and the terms shall continue to bind you with every subsequent attempt to access or use Data from the WPRDC.
  2. Definitions: "Data" for purposes of this Agreement, shall mean all information of varying formats which has been deposited with the WPRDC by The City, The County, and other third parties, to make such information available for public access. Data may cover, but is not limited to topics including property ownership, budgets, transportation, education, public safety, public services, and geographic information. Data may consist of, but is not limited to administrative records created by government or other organizations, statistical information designed to improve the function of government and organizations, and information created about government and organizations. The Data on deposit with the WPRDC is not intended to and should not contain Non-Public Information, as defined below.
  3. "Non-Public Information" for the purposes of this Agreement shall mean information that may not be disclosed to the public for the following reasons: The information is exempt from disclosure or the information is prohibited from being disclosed under State and Federal Laws and regulations including the Pennsylvania Right to Know Act, 65 P.S § 67.101 et seq., the Criminal History Record Information Act, 18 Pa.C.S. §§ 9101-9183, the Health Insurance Portability and Accountability Act (HIPAA), and other applicable privacy laws; The information is covered by a contractual non-disclosure obligation; The information is covered by confidentiality and fiduciary obligations; or The information is private, proprietary or privileged. "User" shall mean any individual who seeks access to or uses WPRDC Data. "Third Party Links" shall mean any website links to other data and data resources provided by the WPRDC portal/website.
  4. Grant of Access and Use of WPRDC Data: Subject to the compliance with the User Terms and Conditions set forth below, UCSUR hereby grants User permission to access and use the Data from the WPRDC pursuant to the license terms, restrictions, or designations placed upon the Data by the Data owner and depositor. This grant shall not include permission to use Non-Public Information which is inadvertently deposited in the WPRDC.
  5. User Terms and Conditions:

    The User is subject to the following terms and conditions with respect to the User's access and use of WPRDC Data.

    1. User shall accept complete responsibility for its access to and use of the Data derived from the WPRDC, or any derivatives User makes of the Data.
    2. User shall abide by the licensing terms if provided by the data owner and WPRDC as publisher.
    3. User shall abide by the terms and conditions of any Third Party Links when accessing data from the WPRDC through such Third Party Links.
    4. User agrees to immediately notify the WPRDC Project Manager, Robert Gradeck, at 412-624-9177 or via email at rmg44@pitt.edu when Non-Public Information is suspected or discovered through User access to the WPRDC. User agrees to refrain from use of any Non-Public Information inadvertently on deposit and accessible from the WPRDC.
    5. User understands that UCSUR may, on its own and without notice, remove Data and Third Party Data Links from the WPRDC.
    6. User understands and agrees that there is no obligation for UCSUR to update or provide customized Data under this Agreement.
    7. User shall comply with all Federal, State, and local laws and regulations governing regarding use of the Data and Third Party Data Links.
    8. User shall provide feedback, questions, concerns, or comments regarding access or use of Data on deposit with the WPRDC by contacting the WPRDC Project Manager, Robert Gradeck, at 412-624-9177 or rmg44@pitt.edu.
  6. Ownership of Data: Ownership of the Data in the WPRDC and through Third Party Links shall remain and belong to the person or party that created it and/or deposited it in the WPRDC. Nothing in this Agreement shall be construed as a transfer or assignment of ownership of any data, copyrights, or other intellectual property.
  7. Disclaimers/No Warranties/As Is and As Available: DISCLAIMER. THE UNIVERSITY, THE CITY, AND THE COUNTY OF ALLEGHENY HEREBY DISCLAIM ALL IMPLIED AND EXPRESS WARRANTIES OF ANY KIND WITH REGARD TO DATA MADE AVAILABLE IN THE WPRDC AND ACCESSED BY USER THROUGH THE WPRDC, INCLUDING, BUT NOT LIMITED TO, THE WARRANTIES OF MERCHANTABILITY AND OF FITNESS FOR ANY PARTICULAR PURPOSE SPECIFIC PURPOSE. THE UNIVERSITY DOES NOT WARRANT THE COMPLETENESS OR ACCURACY OF THE DATA MADE AVAILABLE THROUGH THE WPRDC. USER HEREBY ACKNOWLEDGES AND ACCEPTS THE ABOVE DISCLAIMERS AND USES ALL OF THE DATA IN THE WPRDC AT ITS OWN RISK AND ON AN "AS IS" AND "AS AVAILABLE" BASIS.
  8. Indemnification: User agrees to indemnify, release, and hold harmless the University of Pittsburgh, UCSUR, The City of Pittsburgh, and The County of Allegheny, to include its elected officials, officers, appointees, employees and agents, from any and all liability for claims arising out of my access to and/or use of Data made available through the WPRDC.
  9. Assignability: User agrees that this Agreement may not be assigned by User. This Agreement may be assigned at any time by University without prior notice to Licensee.
  10. Governing Law, Jurisdiction, and Venue: User agrees that this Agreement shall be construed and enforced according to the laws of the Commonwealth of Pennsylvania and the sole jurisdiction and venue for the resolution of any dispute arising from or relating to the Agreement shall be the state and federal courts located within the County of Allegheny, Pennsylvania.

Through clicking the button below, the User represents that they are over the age of 18 and understands and agrees to the terms and conditions set forth above.