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ARCHIVED REPORTS_XR0003686
Environmental Health - Public
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ARCHIVED REPORTS_XR0003686
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Last modified
7/23/2020 4:54:46 PM
Creation date
7/23/2020 4:13:02 PM
Metadata
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Template:
EHD - Public
ProgramCode
2900 - Site Mitigation Program
File Section
ARCHIVED REPORTS
FileName_PostFix
XR0003686
RECORD_ID
PR0505553
PE
2960
FACILITY_ID
FA0006856
FACILITY_NAME
FRANKS FOOD MART
STREET_NUMBER
2072
Direction
W
STREET_NAME
YOSEMITE
STREET_TYPE
AVE
City
MANTECA
Zip
94336
APN
22202001
CURRENT_STATUS
01
SITE_LOCATION
2072 W YOSEMITE AVE
P_LOCATION
04
P_DISTRICT
005
QC Status
Approved
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EHD - Public
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CONE EC <br /> ConeTec <br /> ios�s <br /> Geotechnical and Environmental Site Investigation Contractors <br />' ConeTec CPT Interpretations as of January 7, 1999 (Release 100 19) <br /> ConeTec's interpretation routine should be considered a calculator of current published CPT correlations <br /> and is subject to change to reflect the current state of practice The interpreted values are not <br /> considered valid for all soil types The interpretations are presented only as a guide for geotechnical use <br /> and should be carefully scrutinized for consideration in any geotechnical design Reference to current <br /> literature is strongly recommended <br /> The CPT interpretations are based on values of tip, sleeve friction and pore pressure averaged over a <br /> user specified interval (typically 0 25m) Note that Qt is the recorded tip value, Qc, corrected for pore <br />' pressure effects Since all ConeTec cones have equal end area friction sleeves, pore pressure <br /> corrections to sleeve friction, Fs, are not required <br /> The tip correction is Qt = Qc + (1-a) • Ud <br /> where Qt is the corrected tip load <br /> Qc is the recorded tip load <br /> Ud is the recorded dynamic pore pressure <br /> a is the Net Area Ratio for the cone(typically 0 85 for ConeTec cones) <br /> Effective vertical overburden stresses are calculated based on a hydrostatic distribution of equilibrium <br /> pore pressures below the water table or from a user defined equilibrium pore pressure profile (this can be <br /> obtained from CPT dissipation tests) The stress calculations use unit weights assigned to the Soil <br /> Behaviour Type zones or from a user defined unit weight profile <br /> Details regarding the interpretation methods for all of the interpreted parameters is given in table 1 The <br /> appropriate references referred to in table 1 are listed in table 2 <br /> The estimated Soil Behaviour Type is based on the charts developed by Robertson and Campanella <br /> shown in figure 1 <br /> Table 1 CPT Interpretation Methods <br /> Interpreted Description Equation Ref <br />' Parameter <br /> Depth mid layex depth <br /> AvgQt Averaged cam by(Qt) 1 <br /> AvgQt=—Y_Qt, <br /> AvgFs Averaged sleeve fnchon(Fs) AvgFs=1 FS, <br /> n — <br /> AvgRf Averaged fricbm ratty(Rf) AvgFs <br /> AvgRf.=100%0 <br /> AvgQ1 <br /> AvgUd Averaged dynamic pore pressure(Ud) AvgUd=1�_ Ud, <br />' n < < <br /> SBT Sal Behavior Type as defined by Robertson and Campanella 1 <br />
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