{"refrec":{"BRefID":332502,"RR":"<b>LaCasce, J.H.; Groeskamp, S.</b> (2020). Baroclinic modes over rough bathymetry and the surface deformation radius. <i>J. Phys. Oceanogr. 50(10)</i>: 2835-2847. <a href=\"https://doi.org/10.1175/jpo-d-20-0055.1\" target=\"_blank\">https://doi.org/10.1175/jpo-d-20-0055.1</a>","BEntID":326114,"PublicFlag":1,"CheckedFlag":0,"wosflag":1,"vabbflag":0,"RefStringPartII":". <i>J. Phys. Oceanogr. 50(10)</i>: 2835-2847. <a href=\"https://doi.org/10.1175/jpo-d-20-0055.1\" target=\"_blank\">https://doi.org/10.1175/jpo-d-20-0055.1</a>","DocTypID":8,"DocType":"Journal article","MarineFlag":0,"FreshFlag":0,"BrackishFlag":0,"TerrestrialFlag":0,"Authorstring":"LaCasce, J.H.; Groeskamp, S.","OrigTitleTranslFlag":0,"Authorstringtrunc":"LaCasce, J.H.; Groeskamp, S.","Englishabstract":"<p>    The deformation radius is widely used as an indication of the eddy length    scale at different latitudes. The radius is usually calculated assuming a    flat ocean bottom. However, bathymetry alters the baroclinic modes and    hence their deformation radii. In a linear quasigeostrophic two-layer model    with realistic parameters, the deep flow for a 100-km wave approaches zero    with a bottom ridge roughly 10 m high, leaving a baroclinic mode that is    mostly surface trapped. This is in line with published current meter    studies showing a primary EOF that is surface intensified and has nearly    zero flow at the bottom. The deformation radius associated with this    “surface mode” is significantly larger than that of the flat bottom    baroclinic mode. Using <em>World Ocean Atlas</em> data, the surface radius    is found to be 20%–50% larger over much of the globe, and 100% larger in    some regions. This in turn alters the long Rossby wave speed, which is    shown to be 1.5–2 times faster than over a flat bottom. In addition, the    larger deformation radius is easier to resolve in ocean models.</p>","AbstractOtherLang":null,"BibLvlCode":"AS","StandardTitle":"Baroclinic modes over rough bathymetry and the surface deformation radius","OrigTitleLangCode":"en","OrigTitleLangCodeExtended":"eng","OrigTitleLangID":15,"DateLastModified":{"date":"2026-06-09 01:32:10.707258","timezone_type":1,"timezone":"+02:00"},"UserAccessRight":null,"UserAccID":null,"AuthorKeywords":"Baroclinic flows; Ocean dynamics; Rossby waves","OtherDescriptors":null,"Notes":null,"AnaPub":2020,"MonPub":null,"DateUpdate":"2021-01-11","DateCreate":"2021-01-11","SecASFANote":null,"ConfID":null,"PeerRev":1,"VlizCoreFlag":1,"WoScode":"WOS:000589826300003","VABBcode":null,"OpenAcc":0,"DOI":"10.1175/jpo-d-20-0055.1"},"refs":null,"anarec":{"AnaID":332502,"PubliDate":2020,"Pagination":"2835-2847","XtraPublOfAnaID":null,"ISBN":null,"Volume":"50","Issue":"10","BRefMon":null,"BRefMonRR":null,"BRefXtra":null,"BRefXtraRR":null,"SerBRefID":43252,"SerRR":"Journal of Physical Oceanography. 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