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per-configuration manifests

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manifests/abc_turb_full_256_fp64.json ADDED
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+ {
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+ "case": "abc_turb_full_256_fp64",
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+ "compute_precision": "fp64",
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+ "storage_precision": "fp32",
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+ "channels": [
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+ "u",
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+ "v",
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+ "w",
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+ "p"
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+ ],
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+ "pressure_source": "operators.pressure_hat (D4-certified)",
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+ "regime": {
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+ "note": "k_f/tau are confounded with Re; only pure-nu Re axis is single-variable",
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+ "input": {
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+ "nu": 0.007,
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+ "k_f": null,
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+ "ou_tau": null,
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+ "ou_sigma2": null,
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+ "forcing_type": "none"
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+ },
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+ "measured": {
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+ "Re_lambda_mean": 57.910791295893404,
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+ "eps_mean": 0.018419807075134808,
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+ "k_max_eta_window_avg": 5.638279590197564
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+ }
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+ },
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+ "n_seeds_accepted": 8,
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+ "n_seeds_rejected": 0,
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+ "accepted_seeds": [
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+ "rejected_seeds": [],
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+ "total_frames": 400,
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+ "frame_keep_frac_min": 1.0,
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+ "frame_keep_frac_max": 1.0,
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+ "pooled_A10": null,
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+ "per_seed": [
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+ {
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+ "seed": 0,
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+ "run": "abc_turb_full_256_fp64_corpus",
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+ "frames_in_corpus": 50,
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+ "frame_keep_frac": 1.0,
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+ {
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+ "seed": 1,
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+ "run": "abc_turb_full_256_fp64_corpus_pool1",
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+ {
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+ "seed": 2,
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+ "run": "abc_turb_full_256_fp64_corpus_pool2",
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+ {
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+ "seed": 5,
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+ "run": "abc_turb_full_256_fp64_corpus_pool5",
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+ "seed": 6,
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+ "run": "abc_turb_full_256_fp64_corpus_pool6",
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+ {
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+ "seed": 7,
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+ "run": "abc_turb_full_256_fp64_corpus_pool7",
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+ }
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+ ],
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+ "frame_filter": "none (all window frames exported; trajectory is Class-I by WINDOW-AVERAGE k_maxη per the DNS standard — instantaneous k_maxη is report-only, not a per-frame gate)",
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+ "CAVEATS": [
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+ "No per-frame resolution gate was applied: EVERY frame in the sampling window is exported, so frames ARE (near-)uniformly spaced at the export cadence. Each frame still stores its own 'k_max_eta'; SOME frames have instantaneous k_maxη<1.5 (eps-peak instants) -- this is physical (real turbulence ε fluctuates) and does NOT violate acceptance: the TRAJECTORY is Class-I by the window-average convention (DNS standard), and per-frame k_maxη is provided for OPTIONAL downstream filtering.",
145
+ "Because the eps-PEAK (strongest-small-scale, most intermittent) instants are KEPT (not dropped), this corpus does NOT under-sample the strong-dissipation tail — high-order intermittency statistics are representative of the resolved trajectory. (Frames whose instantaneous k_maxη<1.5 sit at the grid's resolution edge for that burst; users wanting a strict per-frame Class-I subset can filter on the stored 'k_max_eta'.)"
146
+ ]
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+ }
manifests/decay_batchelor_v2.json ADDED
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+ {
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+ "case": "decay_batchelor_v2",
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+ "compute_precision": "fp64",
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+ "storage_precision": "fp32",
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+ "channels": [
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+ "u",
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+ "v",
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+ "w",
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+ "p"
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+ "pressure_source": "operators.pressure_hat (D4-certified)",
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+ "regime": {
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+ "note": "k_f/tau are confounded with Re; only pure-nu Re axis is single-variable",
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+ "input": {
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+ "ou_tau": null,
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+ "forcing_type": "none"
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+ },
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+ "pooled_A10": "3.05%;0.77%(8 条独立实现池化,共 68 T_E;各实现交叉项: [4.02, 6.58, 6.54, 4.34, 1.24, 2.71, 2.35, 4.05])",
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+ "per_seed": [
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+ }
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+ ],
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+ "frame_filter": "instantaneous k_maxη>=1.5 (per-frame Class-I resolution gate)",
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+ "CAVEATS": [
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+ "Frames are filtered by instantaneous k_maxeta>=1.5, so they are NOT uniformly spaced in time (dropped slots are eps-peak instants). Each frame stores its true 't' AND its 'k_max_eta' -- loaders MUST use the stored 't' and not assume a uniform dt between consecutive frames.",
145
+ "INTERMITTENCY BIAS (physical consequence, not just timing): the dropped frames are the eps-PEAK instants -- the most intermittent, strongest-small-scale moments. They are dropped because at those instants k_maxeta<1.5, i.e. the GRID cannot faithfully resolve that burst (spectral pileup at the cutoff); keeping them would feed under-resolved numerical artefacts to a model. The consequence is that this corpus SYSTEMATICALLY UNDER-SAMPLES the strong-dissipation tail: the eps distribution is right-truncated and high-order intermittency statistics (derivative flatness/kurtosis B3, high-order structure functions) are a LOWER BOUND, not unbiased. For Re_lambda~86 the truncation is mild (dropped eps ~1.3-1.4x the mean, not extreme tails), but downstream users must NOT treat this as an unbiased sample of real turbulence's extreme events.",
146
+ "A seed with low frame_keep_frac (<0.80) kept fewer frames because its instantaneous k_maxeta dipped below 1.5 more often; such a trajectory may be intrinsically closer to the resolution edge -- inspect before publishing."
147
+ ]
148
+ }
manifests/decay_saffman_v2.json ADDED
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+ {
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+ "case": "decay_saffman_v2",
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+ "compute_precision": "fp64",
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+ "storage_precision": "fp32",
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+ "channels": [
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+ "u",
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+ "v",
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+ "w",
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+ "p"
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+ ],
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+ "pressure_source": "operators.pressure_hat (D4-certified)",
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+ "regime": {
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+ "note": "k_f/tau are confounded with Re; only pure-nu Re axis is single-variable",
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+ "input": {
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+ "k_f": null,
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+ "ou_tau": null,
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+ "ou_sigma2": null,
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+ "forcing_type": "none"
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+ },
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+ "eps_mean": 0.10905788399990385,
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+ "pooled_A10": "2.89%;2.41%(8 条独立实现池化,共 60 T_E;各实现交叉项: [5.39, 12.14, 8.89, 7.84, 2.27, 3.05, 2.12, 9.74])",
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+ "per_seed": [
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+ "Frames are filtered by instantaneous k_maxeta>=1.5, so they are NOT uniformly spaced in time (dropped slots are eps-peak instants). Each frame stores its true 't' AND its 'k_max_eta' -- loaders MUST use the stored 't' and not assume a uniform dt between consecutive frames.",
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+ "INTERMITTENCY BIAS (physical consequence, not just timing): the dropped frames are the eps-PEAK instants -- the most intermittent, strongest-small-scale moments. They are dropped because at those instants k_maxeta<1.5, i.e. the GRID cannot faithfully resolve that burst (spectral pileup at the cutoff); keeping them would feed under-resolved numerical artefacts to a model. The consequence is that this corpus SYSTEMATICALLY UNDER-SAMPLES the strong-dissipation tail: the eps distribution is right-truncated and high-order intermittency statistics (derivative flatness/kurtosis B3, high-order structure functions) are a LOWER BOUND, not unbiased. For Re_lambda~86 the truncation is mild (dropped eps ~1.3-1.4x the mean, not extreme tails), but downstream users must NOT treat this as an unbiased sample of real turbulence's extreme events.",
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+ "A seed with low frame_keep_frac (<0.80) kept fewer frames because its instantaneous k_maxeta dipped below 1.5 more often; such a trajectory may be intrinsically closer to the resolution edge -- inspect before publishing."
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+ ]
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+ }
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+ "No per-frame resolution gate was applied: EVERY frame in the sampling window is exported, so frames ARE (near-)uniformly spaced at the export cadence. Each frame still stores its own 'k_max_eta'; SOME frames have instantaneous k_maxη<1.5 (eps-peak instants) -- this is physical (real turbulence ε fluctuates) and does NOT violate acceptance: the TRAJECTORY is Class-I by the window-average convention (DNS standard), and per-frame k_maxη is provided for OPTIONAL downstream filtering.",
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+ "Because the eps-PEAK (strongest-small-scale, most intermittent) instants are KEPT (not dropped), this corpus does NOT under-sample the strong-dissipation tail — high-order intermittency statistics are representative of the resolved trajectory. (Frames whose instantaneous k_maxη<1.5 sit at the grid's resolution edge for that burst; users wanting a strict per-frame Class-I subset can filter on the stored 'k_max_eta'.)"
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+ ]
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+ ]
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+ "Re_lambda": null,
93
+ "eps_mean": null,
94
+ "K_drift_last5TL_pct": null
95
+ },
96
+ {
97
+ "seed": 5,
98
+ "run": "stratified_reb40_256_fp64_corpus_pool5",
99
+ "frames_in_corpus": 150,
100
+ "frame_keep_frac": null,
101
+ "frames_seen": null,
102
+ "frames_skipped_underresolved": null,
103
+ "k_max_eta_window_avg": 1.7510841409471534,
104
+ "Re_lambda": null,
105
+ "eps_mean": null,
106
+ "K_drift_last5TL_pct": null
107
+ },
108
+ {
109
+ "seed": 6,
110
+ "run": "stratified_reb40_256_fp64_corpus_pool6",
111
+ "frames_in_corpus": 150,
112
+ "frame_keep_frac": null,
113
+ "frames_seen": null,
114
+ "frames_skipped_underresolved": null,
115
+ "k_max_eta_window_avg": 1.8280214147071896,
116
+ "Re_lambda": null,
117
+ "eps_mean": null,
118
+ "K_drift_last5TL_pct": null
119
+ },
120
+ {
121
+ "seed": 7,
122
+ "run": "stratified_reb40_256_fp64_corpus_pool7",
123
+ "frames_in_corpus": 150,
124
+ "frame_keep_frac": null,
125
+ "frames_seen": null,
126
+ "frames_skipped_underresolved": null,
127
+ "k_max_eta_window_avg": 1.7685041967406372,
128
+ "Re_lambda": null,
129
+ "eps_mean": null,
130
+ "K_drift_last5TL_pct": null
131
+ }
132
+ ],
133
+ "frame_filter": "none — VERIFIED from zarr: all exported frames have instantaneous k_maxη>=1.5 (0 sub-1.5 of 1200) and are near-uniformly spaced in t (dt CoV=0.0076). Trajectory is Class-I by window-average k_maxη; no per-frame gate dropped frames.",
134
+ "CAVEATS": [
135
+ "Frames are (near-)uniformly spaced at the export cadence (verified dt CoV<5% from the stored 't'); loaders may treat dt as ~constant but the true 't' is stored per frame."
136
+ ],
137
+ "PROVENANCE": "rebuilt by rebuild_manifest_from_zarr.py from released zarr (accepted_seeds + frames_in_corpus derived from per-frame seed array; frame_filter/CAVEATS DERIVED from the zarr's own k_max_eta + t arrays, NOT hardcoded; NOT from .pt frame dirs)"
138
+ }