. Comparison of Fleet Numerical Weather Central acoustic forecast system and the Integrated Carrier Acoustic Prediction System (ICAPS).. Oceanography. Figure 11B. Basis flow chart for sub-surface temperature analysis (continued). Read in GUESS 3 field for Read in DATA LIST for level L Perform FIRST Pass tHrough ANALYSIS routine: Form ANAL 1 by adjusting GUESS 3 to reports which passed GEC, using L. Carstensen's analysis tech- nique (XR); reevaluate data by cross-checking neighboring reports s.'. Apply VERTICAL CONTROLS: (1) Apply a light smoother to the vertical gradient between ANAL 1 a


. Comparison of Fleet Numerical Weather Central acoustic forecast system and the Integrated Carrier Acoustic Prediction System (ICAPS).. Oceanography. Figure 11B. Basis flow chart for sub-surface temperature analysis (continued). Read in GUESS 3 field for Read in DATA LIST for level L Perform FIRST Pass tHrough ANALYSIS routine: Form ANAL 1 by adjusting GUESS 3 to reports which passed GEC, using L. Carstensen's analysis tech- nique (XR); reevaluate data by cross-checking neighboring reports s.'. Apply VERTICAL CONTROLS: (1) Apply a light smoother to the vertical gradient between ANAL 1 and the fi nal analysis at the level above. (2) Require T(L) T (level above) except at selected points. ANAL 2 _s' Perform SECOND PASS through ANALYSIS routine: Form ANAL 3 by adjusting ANAL 2 to data, using XR with lateral check Apply VERTICAL CONTROL: require T(L) T(level above) except at selected grid points. Result is ANAL 4. Restrict T(L) to range (-)2 C to (+)35 C. This provides final analysis for level L. L = next level. Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly resemble the original Fitzgerald, Timothy


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