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  1. .gitattributes +8 -0
  2. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/Boiling-424_video.mp4 +3 -0
  3. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/ae_hit_parameters_aligned.csv +0 -0
  4. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/ae_time_parameters_aligned.csv +0 -0
  5. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/ae_wfs_band_integrated_power.csv +0 -0
  6. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/ae_wfs_band_power_oscillation_spectrum.csv +41 -0
  7. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/ae_wfs_channel_1_metadata.json +29 -0
  8. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/ae_wfs_channel_1_waveform.npy +3 -0
  9. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/ae_wfs_characteristic_frequencies.csv +0 -0
  10. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/critical_events.csv +7 -0
  11. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/hydrophone_band_integrated_power.csv +0 -0
  12. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/hydrophone_band_power_oscillation_spectrum.csv +41 -0
  13. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/hydrophone_characteristic_frequencies.csv +0 -0
  14. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/hysteresis_analysis.xlsx +3 -0
  15. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/hysteresis_metadata.json +8 -0
  16. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/hysteresis_summary.csv +2 -0
  17. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/hysteresis_timeseries.csv +0 -0
  18. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/Thumbs.db +3 -0
  19. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/ae_hit_parameters.png +3 -0
  20. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/ae_time_parameters.png +3 -0
  21. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/ae_wfs_band_integrated_power.png +3 -0
  22. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/ae_wfs_band_power_oscillation_spectrum.png +3 -0
  23. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/ae_wfs_characteristic_frequencies.png +3 -0
  24. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/ae_wfs_spectrogram.png +3 -0
  25. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/boiling_curve.png +3 -0
  26. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/heat_flux_vs_time.png +3 -0
  27. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/hydrophone_band_integrated_power.png +3 -0
  28. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/hydrophone_band_power_oscillation_spectrum.png +3 -0
  29. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/hydrophone_characteristic_frequencies.png +3 -0
  30. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/hydrophone_power_centroid_overlay.png +3 -0
  31. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/hydrophone_raw.png +3 -0
  32. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/hydrophone_spectrogram.png +3 -0
  33. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/hysteresis_boiling_curve.png +3 -0
  34. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/hysteresis_ratio.png +3 -0
  35. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/magnadc_power.png +3 -0
  36. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/pressure_profile.png +3 -0
  37. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/plots/surface_temperature.png +3 -0
  38. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/summary.json +117 -0
  39. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/summary.md +121 -0
  40. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/thermal_timeseries.csv +0 -0
  41. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/thermal_timeseries.npz +3 -0
  42. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/time_alignment.json +79 -0
  43. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Raw/BoilingBench-2_AE_Hit.TXT +3 -0
  44. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Raw/BoilingBench-2_AE_Source.DTA +3 -0
  45. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Raw/BoilingBench-2_AE_Time.TXT +3 -0
  46. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Raw/BoilingBench-2_AE_Waveform_STREAM20260512-171700-551.wfs +3 -0
  47. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Raw/BoilingBench-2_DC_power.lvm +0 -0
  48. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Raw/BoilingBench-2_Hydrophones.lvm +3 -0
  49. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Raw/BoilingBench-2_Pressure.lvm +3 -0
  50. BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Raw/BoilingBench-2_Temperature.lvm +0 -0
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BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling/BoilingBench-2_Multimodal_Processed/summary.md ADDED
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1
+ # Single-Case Analysis Summary
2
+
3
+ Notebook marker values are reproduced for comparison. If the test log says CHF was not reached, interpret `chf_proxy_*` as the notebook's current fixed-window marker rather than a confirmed CHF event.
4
+
5
+ | Quantity | Value |
6
+ | --- | --- |
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+ | `test_id` | `BoilingBench-2` |
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+ | `raw_folder` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling\BoilingBench-2_Multimodal_Raw` |
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+ | `analysis_mode` | `transient` |
10
+ | `temperature_reference_clock` | `2026-05-12T17:17:03.397343` |
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+ | `clock_offset_tolerance_s` | `0.001` |
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+ | `applied_heat_load_W_cm2` | `60.0` |
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+ | `input_subcooling_C` | `0.0` |
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+ | `duration_s` | `1556.9` |
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+ | `pressure_mean_kPa` | `9.98` |
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+ | `pressure_std_kPa` | `0.0835688063616799` |
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+ | `pressure_rmse_vs_target_kPa` | `0.086095109445035` |
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+ | `T_sat_C` | `45.768395786229576` |
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+ | `mean_vapour_temp_C` | `44.74176852466282` |
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+ | `mean_liquid_temp_C` | `45.74106717572254` |
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+ | `max_surface_temp_C` | `250.13577186000003` |
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+ | `time_at_max_surface_temp_s` | `576.8` |
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+ | `max_heat_flux_W_cm2` | `43.337305354330525` |
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+ | `time_at_max_heat_flux_s` | `127.2` |
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+ | `dnb_time_s` | `127.2` |
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+ | `dnb_heat_flux_W_cm2` | `43.337305354330525` |
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+ | `dnb_drop_start_time_s` | `169.8` |
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+ | `dnb_search_end_s` | `250.0` |
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+ | `dnb_drop_window_s` | `5.0` |
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+ | `peak_time_s` | `250.0` |
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+ | `peak_surface_temp_C` | `118.55155879800004` |
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+ | `peak_heat_flux_W_cm2` | `26.221957228346273` |
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+ | `peak_search_end_s` | `250.0` |
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+ | `chf_proxy_time_s` | `99.2` |
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+ | `chf_proxy_W_cm2` | `40.12688862992114` |
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+ | `chf_event_status` | `not_confirmed` |
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+ | `htc_at_chf_proxy_W_cm2K` | `2.2122291938362144` |
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+ | `nbr_time_s` | `301.2` |
39
+ | `nbr_W_cm2` | `22.97362299212614` |
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+ | `q_min_between_chf_nbr_W_cm2` | `22.54376258267723` |
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+ | `q_min_time_s` | `299.2` |
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+ | `mean_R2_linear_fit` | `0.9376239001744663` |
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+ | `min_R2_linear_fit` | `0.004399921586242694` |
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+ | `plots_dir` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling\BoilingBench-2_Multimodal_Processed\plots` |
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+ | `dc_start_time_s` | `5.016396` |
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+ | `surface_temp_at_dc_start_C` | `46.536204180000034` |
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+ | `dc_shutoff_time_s` | `570.05752` |
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+ | `surface_temp_at_dc_shutoff_C` | `248.853330736` |
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+ | `oscillation_peak_time_s` | `302.40000000000055` |
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+ | `oscillation_peak_search_start_s` | `300.0` |
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+ | `oscillation_peak_search_end_s` | `570.05752` |
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+ | `hydrophone_available` | `True` |
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+ | `hydrophone_rows` | `19942400` |
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+ | `hydrophone_sampling_frequency_Hz` | `12799.999998973044` |
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+ | `hydrophone_clock_offset_s` | `-0.718221` |
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+ | `hydrophone_band_min_Hz` | `0.0` |
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+ | `hydrophone_band_max_Hz` | `6000.0` |
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+ | `hydrophone_band_power_time_bins` | `4867` |
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+ | `hydrophone_band_power_min_V2` | `1.3452631248702936e-05` |
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+ | `hydrophone_band_power_max_V2` | `0.008220859879242936` |
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+ | `hydrophone_band_power_mean_V2` | `0.0006822076951441751` |
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+ | `hydrophone_characteristic_band_min_Hz` | `0.0` |
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+ | `hydrophone_characteristic_band_max_Hz` | `6000.0` |
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+ | `hydrophone_median_peak_frequency_Hz` | `31.249999997492782` |
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+ | `hydrophone_median_spectral_centroid_Hz` | `86.52798844058317` |
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+ | `hydrophone_median_spectral_bandwidth_Hz` | `126.27580197400717` |
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+ | `hydrophone_power_centroid_window_start_s` | `300.0` |
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+ | `hydrophone_power_centroid_window_end_s` | `700.0` |
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+ | `hydrophone_power_centroid_samples` | `1250` |
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+ | `hydrophone_power_centroid_zero_lag_correlation` | `-0.7144582772489791` |
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+ | `hydrophone_power_centroid_best_correlation` | `-0.7144582772489791` |
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+ | `hydrophone_power_centroid_best_lag_s` | `0.0` |
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+ | `hydrophone_mean_centroid_z_at_power_peaks` | `-1.1623642901632438` |
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+ | `hydrophone_mean_centroid_z_at_power_valleys` | `1.1460671506338596` |
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+ | `hydrophone_power_peak_count` | `36` |
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+ | `hydrophone_power_valley_count` | `34` |
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+ | `hydrophone_oscillation_window_start_s` | `300.0` |
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+ | `hydrophone_oscillation_window_end_s` | `700.0` |
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+ | `hydrophone_oscillation_samples` | `1250` |
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+ | `hydrophone_dominant_oscillation_frequency_Hz` | `0.00499999999959865` |
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+ | `hydrophone_dominant_oscillation_period_s` | `200.000000016054` |
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+ | `hydrophone_oscillation_label` | `Hydrophone` |
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+ | `ae_hit_available` | `True` |
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+ | `ae_time_available` | `True` |
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+ | `ae_hit_rows` | `96471` |
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+ | `ae_time_rows` | `157266` |
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+ | `ae_clock_offset_s` | `-6.397343` |
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+ | `ae_wfs_available` | `True` |
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+ | `ae_wfs_file` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling\BoilingBench-2_Multimodal_Raw\BoilingBench-2_AE_Waveform_STREAM20260512-171700-551.wfs` |
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+ | `ae_wfs_channel` | `1` |
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+ | `ae_wfs_samples` | `1571955712` |
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+ | `ae_wfs_duration_s` | `1571.9557109999998` |
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+ | `ae_wfs_sampling_frequency_Hz` | `1000000.0` |
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+ | `ae_wfs_clock_offset_s` | `-2.846343` |
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+ | `ae_wfs_samples_per_record` | `4096` |
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+ | `ae_wfs_spectrogram_time_bins` | `2400` |
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+ | `ae_wfs_spectrogram_frequency_bins` | `2049` |
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+ | `ae_wfs_spectrogram_chunk_size` | `654981` |
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+ | `ae_wfs_spectrogram_nperseg` | `8192` |
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+ | `ae_wfs_spectrogram_max_frequency_Hz` | `250000.0` |
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+ | `ae_wfs_band_min_Hz` | `0.0` |
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+ | `ae_wfs_band_max_Hz` | `250000.0` |
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+ | `ae_wfs_band_power_time_bins` | `2400` |
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+ | `ae_wfs_band_power_min_V2` | `6.6168076055029535e-09` |
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+ | `ae_wfs_band_power_max_V2` | `0.0005259058990125419` |
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+ | `ae_wfs_band_power_mean_V2` | `9.355597460368065e-07` |
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+ | `ae_wfs_characteristic_band_min_Hz` | `0.0` |
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+ | `ae_wfs_characteristic_band_max_Hz` | `250000.0` |
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+ | `ae_wfs_median_peak_frequency_Hz` | `8300.78125` |
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+ | `ae_wfs_median_spectral_centroid_Hz` | `15302.674851076186` |
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+ | `ae_wfs_median_spectral_bandwidth_Hz` | `27135.235155752198` |
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+ | `ae_wfs_oscillation_window_start_s` | `300.0` |
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+ | `ae_wfs_oscillation_window_end_s` | `700.0` |
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+ | `ae_wfs_oscillation_samples` | `611` |
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+ | `ae_wfs_dominant_oscillation_frequency_Hz` | `0.05987301352941317` |
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+ | `ae_wfs_dominant_oscillation_period_s` | `16.702015500000527` |
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+ | `ae_wfs_oscillation_label` | `AE waveform` |
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+ | `thermal_timeseries_csv` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling\BoilingBench-2_Multimodal_Processed\thermal_timeseries.csv` |
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+ | `thermal_timeseries_npz` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling\BoilingBench-2_Multimodal_Processed\thermal_timeseries.npz` |
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+ | `critical_events_csv` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling\BoilingBench-2_Multimodal_Processed\critical_events.csv` |
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+ | `time_alignment_json` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-2_Subatmospheric_saturated_flatCu_pool_boiling\BoilingBench-2_Multimodal_Processed\time_alignment.json` |
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