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NORM: Radiation Surveys

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Title: NORM: Radiation Surveys


1
NORM Radiation Surveys (an Attempt for Source
Inventory) Gert Jonkers Engineering Analytical
- GSEA/4 Problem Solving (Shell EP Ionising
Radiation/NORM HSE Expert CHP) location Shell
Research Technology Centre, Amsterdam P.O.
38000 NL-1030 BN Amsterdam the Netherlands
2
MODES OF (NATURAL) DECAY
222Rn 218Po a
emission of mono-energetic, fast (MeV) He nuclei
214Pb 214Bi b
emission of poly-energetic, fast (keVlt gtMeV)
electrons
hn
234mPa 234Pa g
emission of mono-energetic, penetrative (keVlt
gtMeV) photons
3
RADIATION PENETRATION CHARACTERISTICS
4
NOR g-yields
5
g-RADIATION SURVEY OF OPERATING
INSTALLATIONS (objective potential presence of
NORM maintenance, workforce dose assessment)
  • External detection of NORM present on the inside
    of installations using ? dose-rate monitors
    (mSv/h)
  • activity concentration (Bq/g) ,
  • 228Ra, 228Ra and/or 228Th equilibrium with their
    progeny,
  • total amount and NORM spatial distribution,
  • elemental composition and specific density of
    NORM deposit,
  • elemental composition and wall thickness of the
    installation part,
  • presence of other radiation attenuating material,
  • total distance of NORM-source to monitor,
  • detector sensitivity field of view,
  • natural radiation background readings.

6
MEASUREMENTPROTOCOL
Equipment dose rate monitor Victoreen 190 /
RP1 (gt 10 nSv/h, Eg gt 15 keV) calibrated August
2003 Measurement Procedure Surface Dose Rate
taken as close as possible to surface (2 ltgt 5
cm) Ambient Dose Rate taken at 1 m height
(used for HS assessment)
  • Protocol
  • take 12 readings
  • remove maximum and minimum value of this series
  • compute average and standard deviation (s) of the
    10 remnant readings
  • check if maximum and minimum values are outliers
    with respect to the 95 (2s) confidence interval
    one occasional outlier is acceptable
  • quote averaged dose rate (if series of readings
    is acceptable)

7
MEASUREMENT STRATEGY
  • Identify product/waste streams in the flow
    diagrams of the installations (records with
    time?)
  • Identify all spots where, under normal plant
    operating conditions, deposits might have been
    formed c.q. Accumulated (DT, DP, changes
    mixing/flow/phasetreatment)
  • Check wall thickness of the spots under review
    (interprete)
  • Check for the presence of other attenuating
    materials at these spots (insulation material)
  • Estimate the distance of the (potential) NORM
    deposit to the monitoring device (take surface
    and ambient dose rate readings)
  • Select suitable radiation monitor (other hazards,
    confounders)
  • Take background readings of this monitor at the
    location of the installation (not at concrete
    strcutures)
  • Measure, both at the surface and at 1 m
    away/height to the installation parts, the
    external radiation level. Take notes of the
    monitor readings and mark, for future reference,
    the monitoring spots on the isometrics of the
    installation
  • Decide on the presence of enhanced radiation
    levels
  • Report on the findings from the current survey.

OUTPUT Maintenance attention Workforce dose
8
EXPLOIT a priori EP NORM KNOWLEDGE
FLARE
FUEL GAS
FLARE K.O. DRUM
GAS SCRUBBER
GAS SCRUBBER
METERING PACKAGE
EXPORT LINE
PRODUCTION MANIFOLD
2ND STAGE SEPARATOR
1ST STAGE SEPARATOR
DEHYDRATOR
OIL SHIPPING PUMP
SKIMMED OIL PUMP
FLOTATION CELL
WELLHEADS
DE- AERATOR
S.W.SERVICES COOLERS ETC.
OVERBOARD PUMP
SEA WATER PUMP
PRODUCTION TUBING
WATER FLOOD INJECTION
SEA WATER BOOSTER PUMP
9
Reported External Radiation Levels at the
Circumference (internally) of Oil/Gas Production
Facilities
10
b/g-CONTAMINATION MONITORING (objective
potential presence of NORM maintenance,
pre-classifaction)
  • Detection of NORM present on the inside of
    installation parts using b/?-monitoring devices
    (c/s)
  • activity surface contamination (Bq/cm2),
  • 228Ra, 210Pb, 228Ra and/or 228Th equilibrium with
    their
  • progeny,
  • remnant oily films, roughness of the surface,
  • (grab) sampling
  • natural radiation background readings.

11
NORM SURVEY- maintenance
  • Inside External Radiation Monitoring
  • External g(b)-Radiation Monitor (ex-proof,
    surface/assesment)
  • g/b Contamination Monitor (sensitive gt
    maintenance)
  • Sampling Suspect Deposits
  • Where appropriate (recording of selected, grab,
    representative sample and sampling data
    characteristics)

12
Grab Sampling Infield Measurements
13
SYSTEMATIC APPROACH TO PROTECTION AGAINST NORM
OPERATIONS NORM (external/contamination)
radiation survey dose readings gt 0.5
mSv/h NORM contaminated or contamination readings
gt 50 c/s above bg signpost areas 0.1
mSv/h lt dose readings lt 0.5 mSv/h NORM suspect Or
5 c/s above bg lt contamination readings lt
50 c/s above bg dose readings lt 0.1 mSv/h no
NORM restrictions and contamination readings lt 5
c/s above bg
MAINTENANCE NORM (external/contamination)
readings ad hoc NORM contaminated take external
and contamination readings for open
tanks/vessels, working hours, asses dose, Waste
Storage NORM suspect take external
and contamination readings for open
tanks/vessels, record working times, take
representative sample Analyse for
final classification of waste normal / NORM
14
NORM RADIATION SURVEYS
  • OPERATIONS
  • surface dose rates (mSv/h) gt enhanced with
    respect to natural background than 226Ra and/or
    228Ra-containing NORM (or enhanced
    222Rn-concentrations in tank gascap)
  • (contamination monitor c/s may show enhanced
    readings more sensitively)
  • ambient dose rates (mSv/h) gt g-dose component
    (records)
  •  
  • MAINTENANCE
  • ambient dose rates (mSv/h) gt g-dose component gt
    record
  • sample dose rate (mSv/h) and sample contamination
    (c/s) gt record
  • send in NORM-suspect samples for measurement and
    analysis (record, evaluate, corrective actions) gt
    final classifcation against legislation
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