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ARCHIVED REPORTS_XR0007518
Environmental Health - Public
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3500 - Local Oversight Program
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PR0545769
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ARCHIVED REPORTS_XR0007518
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Last modified
10/8/2020 10:30:34 PM
Creation date
6/9/2020 11:37:10 AM
Metadata
Fields
Template:
EHD - Public
ProgramCode
3500 - Local Oversight Program
File Section
ARCHIVED REPORTS
FileName_PostFix
XR0007518
RECORD_ID
PR0545769
PE
3528
FACILITY_ID
FA0004139
FACILITY_NAME
Plaza liquor and Gas
STREET_NUMBER
2420
Direction
W
STREET_NAME
TURNER
STREET_TYPE
RD
City
LODI
Zip
95242
CURRENT_STATUS
02
SITE_LOCATION
2420 W TURNER RD
P_LOCATION
02
P_DISTRICT
004
QC Status
Approved
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EHD - Public
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GREGG IN SITU, INC. <br /> ADVANCED GEO <br /> March 7, 2002 Plaza Liquor <br /> 02-514tx Lodi, Ca <br /> In situ groundwater samples were taken at three locations Groundwater samples were <br /> ' collected using a Hydropunch® type groundwater sampling system (figure 2) The <br /> groundwater sampler operates by pushing 1 75 inch diameter hollow rods with a <br /> retrievable tip A stainless steel filter screen is attached to the tip At the desired <br /> sampling depth, the rods are retracted exposing the filter screen and allowing for <br /> groundwater infiltration A small diameter bailer is then used to collect groundwater <br /> samples through the hollow rod <br /> 1 3.0 CONE PENETRATION TEST DATA & INTERPRETATION <br /> The cone penetration test data is presented in graphical form Penetration depths are <br /> referenced to existing ground surface This data includes CPT logs of measured soil <br /> parameters and a computer tabulation of interpreted soil types along with additional <br /> geotechnical parameters and pore pressure dissipation data <br /> ' The stratigraphic interpretation is based on relationships between cone bearing (qc), <br /> sleeve friction ft), and penetration pore pressure (U) The friction ratio (Rf), which is <br /> sleeve friction divided by cone bearing, is a calculated parameter which is used to infer <br /> soil behavior type Generally, cohesive soils (clays) have high friction ratios, low cone <br /> ' bearing and generate large excess pore water pressures Cohesionless soils (sands) <br /> have lower fnctrdn ratios, high cone beanng and generate little in the way of excess <br /> pore water pressures <br /> The interpretation of soils encountered on this project was carried out using recent <br />' correlations developed by Robertson et al, 1988 It should be noted that it is not always <br /> possible to clearly identrfy a soil type based on qc, fs and U In these situations, <br /> experience and judgement and an assessment of the pore pressure dissipation data <br /> should be used to infer the soil behavior type The soil classification chart (figure 3) <br /> used to interpret soil types based on qc and Rf is provided in the Appendix <br /> Interpreted output requires that depth of water be entered for calculation purposes, <br /> where depth to water is unknown an arbitrary depth in excess of 10 feet of the deepest <br /> sounding is entered as the groundwater depth <br /> I <br />
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