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Ocean Modeling Discussion View Topic

Hello, I am currently running WRF with omlcall=1, oml_hml0 = 10, and oml_gamma = 1 (very stratified ocean state). With sst_update=0 (constant SST from the Real-Time Global High-Res product), I run WRF and SST doesn't change throughout the run. However, ocean mixed layer depth and ocean mixed layer temperature change accordingly to how the ocean mixed layer model should run. 2-m temperature changes accordingly as well. I also run WRF with sst_update=1 with the ocean mixed layer model turned on and produce the same results with SST not changing.

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Modeling

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Is the SST actually changing in the model but not being output correctly? The model results seem to show this (e.g. Winds change) but SST seems to stay constant.

I feel like anyone who turns on this ocean mixed layer model would love to see the SST change accordingly. Thanks for your help, Greg Posts: 3 Joined: Thu Feb 23, 2012 10:57 am Location: Rutgers University.

ROMS zeta is 'absolute SSH' in the sense that it includes time mean and time varying SSH with respect to a datum (i.e. Zeta=0) that is a geopotential surface, i.e.

Ocean Modeling Discussion View Topic We May Be Different

If zeta=constant there is no associated pressure gradient force. Altimetrists do not say 'absolute' SSH so let me clarify: In altimetry the equivalent quantity to ROMS zeta is close to the sum of mean dynamic topography (MDT) and sea level anomaly (SLA).

Ocean Modeling Discussion View Topic Vladmodels

MDT is the height of the long-term time mean sea level with respect to a geopotential surface (the marine geoid). This is different from the Mean Sea Surface which has huge slopes in it because of variations in gravity due to the uneven distribution of the earth's mass. These geoid slopes are not relevant to ocean dynamics so MDT+SLA is the most ROMS-like quantity because the slope of MDT+SLA is almost equivalent to the slope of zeta. Why do I say 'almost'?