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Petrophysical Interpretation Report — 1001178750

Well (UWI)1001178750
Log date07/09/68
Acquisition date (header)07/09/68
BHT (measured)114 DEGF
Mud resistivity (RM)0.19 OHMM
Mud filtrate (RMF)0.14 OHMM
PLSS locationSec 26 T19S R22W (map precision ±1.6 km)
Larionov variantold_rocks (degraded)
Convergence statusDID_NOT_CONVERGE
Confidence tier○ BRACKETED
Engine versionscalc_vsh 0.1.0 · calc_phie 0.1.0 · calc_sw 0.1.0 · formula_registry 0.1.0
Config hash (SHA-256)2a9cb78728e386ab…
Git SHAbd23bea18153
Generatedautonomously, no human in the per-report loop

Confidence legend. Each result is tagged by parameter provenance: ● FIRM (core-calibrated) · ◐ QUALIFIED (offset-derived) · ○ BRACKETED (regional/global default — read as a range, dominant uncertainty stated). The system does not claim *always correct*; it states how well-supported each number is.


1. Executive summary

⚠️ ABSTENTION — this is NOT a confident estimate. The run did not converge to a defensible result; the numbers below are an uncalibrated engineering estimate, reported for transparency only:
- 1 unresolved MECHANICAL objection(s)

The vintage log covers only the deep consolidated section, so the full logged interval is evaluated — there is no overburden on record to exclude. Within that interval the net pay is 26.4 m with average effective porosity 0.198 and average water saturation 0.361. Monte-Carlo places the P50 net pay at 18.3 m within a P10-P90 range of 7.8 to 39.8 m. CLASS-B VINTAGE WELL: porosity comes from a count-rate neutron transform (engine-anchored, validated against sonic on offset wells; structural approximation) — every number is bracketed and must be read as a range. The run ABSTAINS from a confident estimate: the validators keep an unresolved objection, so the result must be read as a bracketed range, not a point value.

Net pay P10 / P50 / P90 = 7.8 / 18.3 / 39.8 m.
Net pay is dominated by 'm', which is a regional DEFAULT (uncalibrated). This is the single largest uncertainty — the result is bracketed, not a confident point estimate.


2. Data inventory (from LAS)


3. LAS quality control

Edit typeCurveDetail
spike_removal22 edits
degradation

4. Standardization

Raw mnemonics mapped to canonical curve names:

CanonicalRaw mnemonic
GRGR
NEUTNEUT
RTRES

5. Per-curve log QC


6. Data preparation

Edits applied before compute (by type): degradation: 1, spike_removal: 22.


7. Interval definition


8. Methodology

All numbers are produced by the deterministic, golden-tested engine. The LLM only selects methods/parameters and writes prose — it never computes a number. Figures are deterministic renderings of these computed numbers for the human reader; the agent reasons over the numeric EDA digest, not images (the models have no vision).

StepMethod (frozen)Version
VshLarionov 1969 (old rocks)vsh_larionov_old 0.1.0
PHIEVintage count-rate neutron, two-point semilog (class-B, engine-anchored)phi_neutron_countrate 0.1.0
SwArchie 1942sw_archie 0.1.0
Net payVsh/PHIE/Sw cutoffs → net sand → net reservoir → net paynetpay 0.1.0
UncertaintyMonte Carlo P10/P50/P90 + parameter sensitivitymc 0.1.0

9. Gamma-ray analysis


10. Resistivity analysis

Low-resistivity scan: rt_threshold=2.77, n_flagged=139, intervals=[[1127.6, 1127.8], [1129.1, 1129.1], [1130.2, 1130.5], [1131.6, 1131.6], [1131.9, 1132.0], [1132.6, 1132.9], [1133.2, 1133.7], [1134.2, 1137.4], [1139.8, 1140.3], [1142.1, 1142.4]].


11. Water resistivity (Rw)


12. Figures

Composite log

Composite log

Pickett plot

Pickett plot

Buckles plot

Buckles plot

Hingle plot

Hingle plot

Distributions

Distributions

Sensitivity tornado

Sensitivity tornado

Net-pay Monte-Carlo distribution

Net-pay Monte-Carlo distribution


13. Shale volume (Vsh)

Mean Vsh by method (selection is the agent's; the LLM authors no number):

MethodMean VshSelected
vsh_larionov_old0.174
vsh_larionov_tertiary0.122
vsh_linear0.261
vsh_clavier0.164
vsh_steiber0.140

14. Porosity

_Not computed — no RHOB/NPHI curve for the comparison._


15. Water saturation

Mean Sw (Archie 1942) = 0.717 (a=1.00, m=2.00, n=2.00, Rw=0.0349 ohm-m). Electrical parameters are engine-sourced; alternative Sw models are optional sections.

Mean Sw by method (engine-computed comparison; the LLM authors no number):

MethodMean SwSelected
sw_archie0.717
sw_simandoux0.582
sw_indonesia0.623

16. Zonation (net-pay intervals)

Raw net-pay runs merged into 25 intervals (gap tolerance 1.5 m); showing the 15 thickest, depth-ordered. Full set traces in the ledger.

IntervalTop (m)Base (m)Net pay (m)Avg PHIEAvg SwAvg Vsh
Z11142.71144.70.90.2330.4600.302
Z21158.11158.80.60.1290.4170.204
Z31166.51166.90.60.1760.4290.213
Z41179.91181.10.80.1880.4380.136
Z51203.81205.30.90.2380.4650.298
Z61221.21223.20.80.1800.4560.209
Z71256.21257.00.60.1790.4540.324
Z81263.11263.90.80.1870.3920.254
Z91266.61269.62.30.2320.4060.238
Z101275.91277.61.10.1360.3880.109
Z111283.81285.31.70.1830.3690.211
Z121304.81305.30.60.1990.3680.300
Z131319.31322.41.40.1540.3610.230
Z141328.31329.50.80.1580.3120.240
Z151331.51341.09.60.2200.2800.172

17. Results

QuantityValue
Gross interval214.0 m
Net pay (P10/P50/P90)7.8 / 18.3 / 39.8 m
Net-to-gross0.123
Avg PHIE (net pay)0.198
Avg Sw (net pay)0.361
Avg Vsh (net pay)0.204

18. Uncertainty and sensitivity

Monte Carlo, 500 realizations (seed 42). Net pay swing per parameter (one-at-a-time):

ParameterNet-pay swing (m)
m30.2
Rw28.8
a15.4
n9.1

Dominant uncertainty: m (swing 30.2 m).

Multi-seed robustness: P50 UNSTABLE across seeds (spread 3.4 m across 4 seeds).

Net pay is dominated by 'm', which is a regional DEFAULT (uncalibrated). This is the single largest uncertainty — the result is bracketed, not a confident point estimate.


19. Derived parameters


20. Parameters and provenance

ParameterValueUnitProvenanceSource
gr_min20.000APIdefault
gr_max120.000APIdefault
rho_ma2.710g/ccdefaultSchlumberger 1989
rho_fl1.000g/ccdefault
phie_max0.450v/vdefault
phi_sh_d0.100v/vdefault
phi_sh_n0.350v/vdefault
a1.000-defaultWinsauer et al. 1952
m2.000-defaultArchie, G.E. 1942
n2.000-defaultArchie, G.E. 1942
Rw0.040ohm-mdefaultKansas Geological Survey 2000
rt_hydrocarbon_floor5.000ohm-mdefault
vsh_cutoff0.350v/vdefault
phie_cutoff0.100v/vdefault
sw_cutoff0.500v/vdefault
bit_size_config7.875indefault
qc_abort_threshold0.800-default
circuit_breaker_n3.000-default

The citations table (not RAG) gives each cited parameter exactly one frozen source. Parameters tagged default are regional/global — they drive the bracketed tier.


21. Petrophysical cutoffs

Boundary-inclusive criteria applied by the engine (netpay) to flag reservoir:

StageCriterionCutoffProvenance
Net sandVsh ≤ cutoff0.350default
Net reservoir+ PHIE ≥ cutoff0.100default
Net pay+ Sw ≤ cutoff0.500default

Cutoff values are engine parameters (never LLM-authored); the dominant net-pay uncertainty is m — see Uncertainty for the swing.


22. Data quality and validator objections

Curve provenance (canonical ← raw mnemonic): GR←GR, NEUT←NEUT, RT←RES.

QC edits applied before compute — degradation: 1, spike_removal: 22.

ValidatorTypeDetail
vsh_phie_anticorrelationsupportVsh-PHIE Pearson 0.98 > 0.3 (dirty rock + high porosity)
rt_sw_consistencymechanical33 depths with Sw<0.4 but RT<5.0 ohm-m

23. Methodology (decision graph)

flowchart TD
    dec_1["decision: step: compare_methods"]
    act_1["tool_call: compare_methods"]
    dec_2["decision: step: compute_vsh"]
    act_2["tool_call: compute_vsh"]
    dec_3["decision: step: compute_phie"]
    act_3["tool_call: compute_phie"]
    dec_4["decision: step: compare_methods"]
    act_4["tool_call: compare_methods"]
    dec_5["decision: step: compute_sw"]
    act_5["tool_call: compute_sw"]
    dec_6["decision: step: apply_cutoffs"]
    act_6["tool_call: apply_cutoffs"]
    dec_7["decision: step: run_uncertainty"]
    act_7["tool_call: run_uncertainty"]
    dec_8["decision: step: derived_parameters"]
    act_8["tool_call: derived_parameters"]

24. Data gaps for calibration

This is a LAS-only study. Data that would calibrate the interpretation is absent:


25. Limitations


26. Conclusions

Vintage class-B well: logged interval covers only the deep consolidated section (no overburden recorded), GR-only clay indicator, count-rate porosity with engine anchors, Archie saturation. Structural-uncertainty caveat applies to every number. Method choices were made against the engine's numeric comparisons, not by preference; the comparison tables show the rejected alternatives beside the selected method. All numbers in this report come from the deterministic engine; the analyst chose the interval, the methods and the analyses, and wrote this prose — nothing more. Remaining uncertainty is dominated by the uncalibrated regional parameters.


Appendix A — Ledger excerpt (traceability)

{
  "net_pay_total_m": 26.365199999990182,
  "net_pay_p10_p50_p90": [
    7.772399999997106,
    18.28799999999319,
    39.791639999985186
  ],
  "driving_params": {
    "a": 1.0,
    "m": 2.0,
    "n": 2.0,
    "Rw": 0.04
  },
  "claim_verifier": {
    "result": "PASS",
    "flags": [],
    "tone_flags": []
  }
}

Appendix B — Completeness gate

ItemPresent
QC edits recorded before compute
Every number ledger-traced
Confidence tier on the run
Parameter citations frozen
Validator objections listed, not hidden
Uncertainty propagated (Monte Carlo)
Claim verifier run on prose