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step 02 to finish (~5 hrs) Don't touch anything. Step 2: Clip to all-England on E drive bashLiCSBAS05op_clip_unw.py -i C:\Users\Administrator\Documents\AllStrata\GEOCml10 -o E:\AllStrata\GEOCml10clip_desc -g -4.5/1.5/50.0/55.0 Step 3: Delete full-frame data from C bashrmdir /s /q C:\Users\Administrator\Documents\AllStrata\GEOCml10 rmdir /s /q C:\Users\Administrator\Documents\AllStrata\GEOC This reclaims ~580 GB on C. Step 4: Run steps 11-16 on E bashLiCSBAS11_check_unw.py -d E:\AllStrata\GEOCml10clip_desc -t E:\AllStrata\TS_desc -c 0.05 LiCSBAS12_loop_closure.py -d E:\AllStrata\GEOCml10clip_desc -t E:\AllStrata\TS_desc LiCSBAS13_sb_inv.py -d E:\AllStrata\GEOCml10clip_desc -t E:\AllStrata\TS_desc LiCSBAS14_vel_std.py -t E:\AllStrata\TS_desc LiCSBAS15_mask_ts.py -t E:\AllStrata\TS_desc LiCSBAS16_filt_ts.py -t E:\AllStrata\TS_desc Step 5: Quick coherence check (GO/NO-GO) pythonimport rasterio import numpy as np with rasterio.open(r'E:\AllStrata\TS_desc\vel.geo.tif') as src: vel = src.read(1) total = vel.size valid = np.count_nonzero(~np.isnan(vel)) print(f"Overall coverage: {valid/total*100:.1f}%") # Check specifically around Aylesbury (51.82°N, -0.81°E) row, col = src.index(-0.81, 51.82) window = vel[max(0,row-50):row+50, max(0,col-50):col+50] local_valid = np.count_nonzero(~np.isnan(window)) local_total = window.size print(f"Aylesbury area coverage: {local_valid/local_total*100:.1f}%") If below 30% in residential areas → stop, consider PS-InSAR. Step 6: Copy descending finals to C bashmkdir C:\Users\Administrator\Documents\AllStrata\data\insar\descending copy E:\AllStrata\TS_desc\vel.geo.tif C:\Users\Administrator\Documents\AllStrata\data\insar\descending\ copy E:\AllStrata\TS_desc\cum.h5 C:\Users\Administrator\Documents\AllStrata\data\insar\descending\ copy E:\AllStrata\TS_desc\results\mask*.geo.tif C:\Users\Administrator\Documents\AllStrata\data\insar\descending\ xcopy E:\AllStrata\TS_desc\info C:\Users\Administrator\Documents\AllStrata\data\insar\descending\info\ /s Step 7: Re-download ascending to C bashcd C:\Users\Administrator\Documents\AllStrata LiCSBAS01_get_geotiff.py -f 030A_03517_515153 -s 20150101 -e 20260101 Step 8: Run step 02 ascending on C bashLiCSBAS02_ml_prep.py -i GEOC -o GEOCml10 -n 1 Step 9: Clip ascending to E bashLiCSBAS05op_clip_unw.py -i C:\Users\Administrator\Documents\AllStrata\GEOCml10 -o E:\AllStrata\GEOCml10clip_asc -g -4.5/1.5/50.0/55.0 Step 10: Delete ascending full-frame from C bashrmdir /s /q C:\Users\Administrator\Documents\AllStrata\GEOCml10 rmdir /s /q C:\Users\Administrator\Documents\AllStrata\GEOC Step 11: Run steps 11-16 on ascending bashLiCSBAS11_check_unw.py -d E:\AllStrata\GEOCml10clip_asc -t E:\AllStrata\TS_asc -c 0.05 LiCSBAS12_loop_closure.py -d E:\AllStrata\GEOCml10clip_asc -t E:\AllStrata\TS_asc LiCSBAS13_sb_inv.py -d E:\AllStrata\GEOCml10clip_asc -t E:\AllStrata\TS_asc LiCSBAS14_vel_std.py -t E:\AllStrata\TS_asc LiCSBAS15_mask_ts.py -t E:\AllStrata\TS_asc LiCSBAS16_filt_ts.py -t E:\AllStrata\TS_asc Step 12: Copy ascending finals to C bashmkdir C:\Users\Administrator\Documents\AllStrata\data\insar\ascending copy E:\AllStrata\TS_asc\vel.geo.tif C:\Users\Administrator\Documents\AllStrata\data\insar\ascending\ copy E:\AllStrata\TS_asc\cum.h5 C:\Users\Administrator\Documents\AllStrata\data\insar\ascending\ copy E:\AllStrata\TS_asc\results\mask*.geo.tif C:\Users\Administrator\Documents\AllStrata\data\insar\ascending\ xcopy E:\AllStrata\TS_asc\info C:\Users\Administrator\Documents\AllStrata\data\insar\ascending\info\ /s Step 13: Decompose on C bashcd C:\Users\Administrator\Documents\AllStrata python src\decompose.py --asc data\insar\ascending\vel.geo.tif --desc data\insar\descending\vel.geo.tif --out data\insar\decomposed\ Final folder structure on C (working data) C:\Users\Administrator\Documents\AllStrata\ ├── src\ # Your 11 pipeline modules ├── templates\ # Report HTML/CSS ├── data\ │ └── insar\ │ ├── ascending\ │ │ ├── vel.geo.tif # ~1-2 GB │ │ ├── cum.h5 # ~3-5 GB │ │ ├── mask*.geo.tif │ │ └── info\ │ ├── descending\ │ │ ├── vel.geo.tif │ │ ├── cum.h5 │ │ ├── mask*.geo.tif │ │ └── info\ │ └── decomposed\ │ ├── vel_vertical.geo.tif │ └── vel_ew.geo.tif └── output\ └── reports\ # Generated PDFs Final folder structure on E (archive/heavy data) E:\AllStrata\ ├── GEOCml10clip_desc\ # Clipped interferograms descending ├── GEOCml10clip_asc\ # Clipped interferograms ascending ├── TS_desc\ # Full processing output descending └── TS_asc\ # Full processing output ascending