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  1. .gitattributes +7 -0
  2. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/BoilingBench-1_Video.mp4 +3 -0
  3. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/ae_hit_parameters_aligned.csv +0 -0
  4. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/ae_time_parameters_aligned.csv +0 -0
  5. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/ae_wfs_band_integrated_power.csv +0 -0
  6. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/ae_wfs_band_power_oscillation_spectrum.csv +40 -0
  7. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/ae_wfs_channel_1_metadata.json +29 -0
  8. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/ae_wfs_channel_1_waveform.npy +3 -0
  9. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/ae_wfs_characteristic_frequencies.csv +0 -0
  10. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/critical_events.csv +7 -0
  11. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/hydrophone_band_integrated_power.csv +0 -0
  12. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/hydrophone_band_power_oscillation_spectrum.csv +41 -0
  13. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/hydrophone_characteristic_frequencies.csv +0 -0
  14. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/hysteresis_analysis.xlsx +3 -0
  15. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/hysteresis_metadata.json +8 -0
  16. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/hysteresis_summary.csv +2 -0
  17. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/hysteresis_timeseries.csv +0 -0
  18. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/meb_envelope_analysis.csv +0 -0
  19. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/meb_envelope_metrics.csv +4 -0
  20. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/Thumbs.db +3 -0
  21. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/ae_hit_parameters.png +3 -0
  22. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/ae_time_parameters.png +3 -0
  23. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/ae_wfs_band_integrated_power.png +3 -0
  24. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/ae_wfs_band_power_oscillation_spectrum.png +3 -0
  25. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/ae_wfs_characteristic_frequencies.png +3 -0
  26. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/ae_wfs_spectrogram.png +3 -0
  27. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/boiling_curve.png +3 -0
  28. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/heat_flux_vs_time.png +3 -0
  29. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/hydrophone_band_integrated_power.png +3 -0
  30. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/hydrophone_band_power_oscillation_spectrum.png +3 -0
  31. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/hydrophone_characteristic_frequencies.png +3 -0
  32. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/hydrophone_power_centroid_overlay.png +3 -0
  33. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/hydrophone_raw.png +3 -0
  34. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/hydrophone_spectrogram.png +3 -0
  35. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/hysteresis_boiling_curve.png +3 -0
  36. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/hysteresis_ratio.png +3 -0
  37. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/magnadc_power.png +3 -0
  38. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/meb_envelope_analysis.png +3 -0
  39. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/meb_normalized_envelope_comparison.png +3 -0
  40. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/pressure_profile.png +3 -0
  41. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/plots/surface_temperature.png +3 -0
  42. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/summary.json +136 -0
  43. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/summary.md +140 -0
  44. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/thermal_timeseries.csv +0 -0
  45. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/thermal_timeseries.npz +3 -0
  46. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/time_alignment.json +79 -0
  47. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Raw/BoilingBench-1_AE_Hit.TXT +0 -0
  48. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Raw/BoilingBench-1_AE_Source.DTA +3 -0
  49. BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Raw/BoilingBench-1_AE_Time.TXT +3 -0
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+ "time_alignment_json": "X:\\ned3-016_BoilingBench-Multimodal\\BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling\\BoilingBench-1_Multimodal_Processed\\time_alignment.json"
136
+ }
BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling/BoilingBench-1_Multimodal_Processed/summary.md ADDED
@@ -0,0 +1,140 @@
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
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
+ | --- | --- |
7
+ | `test_id` | `BoilingBench-1` |
8
+ | `raw_folder` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling\BoilingBench-1_Multimodal_Raw` |
9
+ | `analysis_mode` | `subcooled` |
10
+ | `temperature_reference_clock` | `2026-05-10T18:02:20.415915` |
11
+ | `clock_offset_tolerance_s` | `0.001` |
12
+ | `applied_heat_load_W_cm2` | `250.0` |
13
+ | `input_subcooling_C` | `57.6` |
14
+ | `duration_s` | `988.9` |
15
+ | `pressure_mean_kPa` | `97.51` |
16
+ | `pressure_std_kPa` | `0.05821346892999003` |
17
+ | `pressure_rmse_vs_target_kPa` | `0.19662890202307987` |
18
+ | `T_sat_C` | `98.90256294901906` |
19
+ | `mean_vapour_temp_C` | `49.92851421476239` |
20
+ | `mean_liquid_temp_C` | `57.60048842093023` |
21
+ | `max_surface_temp_C` | `172.869782979` |
22
+ | `time_at_max_surface_temp_s` | `132.4` |
23
+ | `max_heat_flux_W_cm2` | `277.95529029921306` |
24
+ | `time_at_max_heat_flux_s` | `608.4` |
25
+ | `dnb_time_s` | `124.8` |
26
+ | `dnb_heat_flux_W_cm2` | `190.67491149606312` |
27
+ | `dnb_drop_start_time_s` | `127.2` |
28
+ | `dnb_search_end_s` | `250.0` |
29
+ | `dnb_drop_window_s` | `5.0` |
30
+ | `peak_time_s` | `132.4` |
31
+ | `peak_surface_temp_C` | `172.869782979` |
32
+ | `peak_heat_flux_W_cm2` | `131.82243751181102` |
33
+ | `peak_search_end_s` | `250.0` |
34
+ | `chf_proxy_time_s` | `100.0` |
35
+ | `chf_proxy_W_cm2` | `177.26038907086644` |
36
+ | `chf_event_status` | `not_confirmed` |
37
+ | `htc_at_chf_proxy_W_cm2K` | `5.4872578814166415` |
38
+ | `nbr_time_s` | `608.4` |
39
+ | `nbr_W_cm2` | `277.95529029921306` |
40
+ | `q_min_between_chf_nbr_W_cm2` | `131.810384283464` |
41
+ | `q_min_time_s` | `132.0` |
42
+ | `mean_R2_linear_fit` | `0.9942899991897582` |
43
+ | `min_R2_linear_fit` | `0.804153545310094` |
44
+ | `plots_dir` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling\BoilingBench-1_Multimodal_Processed\plots` |
45
+ | `dc_start_time_s` | `5.227982` |
46
+ | `surface_temp_at_dc_start_C` | `67.32582513799997` |
47
+ | `dc_shutoff_time_s` | `673.893438` |
48
+ | `surface_temp_at_dc_shutoff_C` | `130.90226886200003` |
49
+ | `oscillation_peak_time_s` | `308.0000000000018` |
50
+ | `oscillation_peak_search_start_s` | `300.0` |
51
+ | `oscillation_peak_search_end_s` | `673.893438` |
52
+ | `hydrophone_available` | `True` |
53
+ | `hydrophone_rows` | `12659200` |
54
+ | `hydrophone_sampling_frequency_Hz` | `12799.999998382205` |
55
+ | `hydrophone_clock_offset_s` | `-0.690666` |
56
+ | `hydrophone_band_min_Hz` | `0.0` |
57
+ | `hydrophone_band_max_Hz` | `6000.0` |
58
+ | `hydrophone_band_power_time_bins` | `3089` |
59
+ | `hydrophone_band_power_min_V2` | `2.662287225914444e-07` |
60
+ | `hydrophone_band_power_max_V2` | `0.34432377083938753` |
61
+ | `hydrophone_band_power_mean_V2` | `0.01569990414576491` |
62
+ | `hydrophone_characteristic_band_min_Hz` | `0.0` |
63
+ | `hydrophone_characteristic_band_max_Hz` | `6000.0` |
64
+ | `hydrophone_median_peak_frequency_Hz` | `917.1874998840765` |
65
+ | `hydrophone_median_spectral_centroid_Hz` | `1058.4925354442585` |
66
+ | `hydrophone_median_spectral_bandwidth_Hz` | `415.7213778935318` |
67
+ | `hydrophone_power_centroid_window_start_s` | `300.0` |
68
+ | `hydrophone_power_centroid_window_end_s` | `700.0` |
69
+ | `hydrophone_power_centroid_samples` | `1250` |
70
+ | `hydrophone_power_centroid_zero_lag_correlation` | `0.613071711041985` |
71
+ | `hydrophone_power_centroid_best_correlation` | `0.6365792432016261` |
72
+ | `hydrophone_power_centroid_best_lag_s` | `-0.6400000000808177` |
73
+ | `hydrophone_mean_centroid_z_at_power_peaks` | `0.20572223368366888` |
74
+ | `hydrophone_mean_centroid_z_at_power_valleys` | `-0.5122079579736395` |
75
+ | `hydrophone_power_peak_count` | `32` |
76
+ | `hydrophone_power_valley_count` | `31` |
77
+ | `hydrophone_oscillation_window_start_s` | `300.0` |
78
+ | `hydrophone_oscillation_window_end_s` | `700.0` |
79
+ | `hydrophone_oscillation_samples` | `1250` |
80
+ | `hydrophone_dominant_oscillation_frequency_Hz` | `0.07999999998989779` |
81
+ | `hydrophone_dominant_oscillation_period_s` | `12.50000000157847` |
82
+ | `hydrophone_oscillation_label` | `Hydrophone` |
83
+ | `meb_envelope_requested_window_start_s` | `300.0` |
84
+ | `meb_envelope_window_start_s` | `308.0000000000018` |
85
+ | `meb_envelope_window_end_s` | `673.893438` |
86
+ | `meb_envelope_signals` | `wall_temperature, heat_flux, hydrophone_power` |
87
+ | `meb_wall_temperature_envelope_percent_change` | `166.84305128004604` |
88
+ | `meb_heat_flux_envelope_percent_change` | `149.6909712591653` |
89
+ | `meb_hydrophone_power_envelope_percent_change` | `142.53646543264347` |
90
+ | `meb_wall_temperature_envelope_r2` | `0.9349556334216645` |
91
+ | `meb_heat_flux_envelope_r2` | `0.9383095992007897` |
92
+ | `meb_hydrophone_power_envelope_r2` | `0.5913788246195762` |
93
+ | `meb_wall_temperature_envelope_time_constant_s` | `239.09963083491155` |
94
+ | `meb_heat_flux_envelope_time_constant_s` | `247.7554288284663` |
95
+ | `meb_hydrophone_power_envelope_time_constant_s` | `7315.200000923745` |
96
+ | `meb_wall_temperature_envelope_asymptote` | `18.82583201536867` |
97
+ | `meb_heat_flux_envelope_asymptote` | `41.54500510005463` |
98
+ | `meb_hydrophone_power_envelope_asymptote` | `0.443360725961774` |
99
+ | `meb_wall_temperature_envelope_saturation_fraction_at_end` | `0.7833534233875042` |
100
+ | `meb_heat_flux_envelope_saturation_fraction_at_end` | `0.771461917343065` |
101
+ | `meb_hydrophone_power_envelope_saturation_fraction_at_end` | `0.04877057549928598` |
102
+ | `ae_hit_available` | `True` |
103
+ | `ae_time_available` | `True` |
104
+ | `ae_hit_rows` | `61864` |
105
+ | `ae_time_rows` | `100841` |
106
+ | `ae_clock_offset_s` | `-8.415915` |
107
+ | `ae_wfs_available` | `True` |
108
+ | `ae_wfs_file` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling\BoilingBench-1_Multimodal_Raw\BoilingBench-1_AE_waveform_STREAM20260510-180215-533.wfs` |
109
+ | `ae_wfs_channel` | `1` |
110
+ | `ae_wfs_samples` | `1007625216` |
111
+ | `ae_wfs_duration_s` | `1007.625215` |
112
+ | `ae_wfs_sampling_frequency_Hz` | `1000000.0` |
113
+ | `ae_wfs_clock_offset_s` | `-4.882915` |
114
+ | `ae_wfs_samples_per_record` | `4096` |
115
+ | `ae_wfs_spectrogram_time_bins` | `2400` |
116
+ | `ae_wfs_spectrogram_frequency_bins` | `2049` |
117
+ | `ae_wfs_spectrogram_chunk_size` | `419843` |
118
+ | `ae_wfs_spectrogram_nperseg` | `8192` |
119
+ | `ae_wfs_spectrogram_max_frequency_Hz` | `250000.0` |
120
+ | `ae_wfs_band_min_Hz` | `0.0` |
121
+ | `ae_wfs_band_max_Hz` | `250000.0` |
122
+ | `ae_wfs_band_power_time_bins` | `2400` |
123
+ | `ae_wfs_band_power_min_V2` | `5.813551464174776e-09` |
124
+ | `ae_wfs_band_power_max_V2` | `4.988348159708457e-05` |
125
+ | `ae_wfs_band_power_mean_V2` | `4.854611507127646e-06` |
126
+ | `ae_wfs_characteristic_band_min_Hz` | `0.0` |
127
+ | `ae_wfs_characteristic_band_max_Hz` | `250000.0` |
128
+ | `ae_wfs_median_peak_frequency_Hz` | `8422.8515625` |
129
+ | `ae_wfs_median_spectral_centroid_Hz` | `8485.341637361846` |
130
+ | `ae_wfs_median_spectral_bandwidth_Hz` | `4733.620794645545` |
131
+ | `ae_wfs_oscillation_window_start_s` | `300.0` |
132
+ | `ae_wfs_oscillation_window_end_s` | `700.0` |
133
+ | `ae_wfs_oscillation_samples` | `952` |
134
+ | `ae_wfs_dominant_oscillation_frequency_Hz` | `0.0800619407210555` |
135
+ | `ae_wfs_dominant_oscillation_period_s` | `12.490329250000428` |
136
+ | `ae_wfs_oscillation_label` | `AE waveform` |
137
+ | `thermal_timeseries_csv` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling\BoilingBench-1_Multimodal_Processed\thermal_timeseries.csv` |
138
+ | `thermal_timeseries_npz` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling\BoilingBench-1_Multimodal_Processed\thermal_timeseries.npz` |
139
+ | `critical_events_csv` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling\BoilingBench-1_Multimodal_Processed\critical_events.csv` |
140
+ | `time_alignment_json` | `X:\ned3-016_BoilingBench-Multimodal\BoilingBench-1_Ambient_subcooled_flatCu_pool_boiling\BoilingBench-1_Multimodal_Processed\time_alignment.json` |
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