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Thermohaline circulation

part of the large-scale ocean circulation that is driven by global density gradients created by surface heat and freshwater fluxes

Architectural plans, a scale model, maps and brass measuring instruments
Places and architectureInterpretive dossier study · Crown Archives visual atlas
Record originEnglish Wikipedia
Text licenseCC BY-SA 4.0
Source revisionAug 16, 2026
Entity authorityQ463223
Source-derived summary

Thermohaline circulation (THC) is a part of the large-scale ocean circulation driven by global density gradients formed by surface heat and freshwater fluxes. The name thermohaline is derived from thermo-, referring to temperature, and haline, referring to salt content—factors which together determine the density of sea water.

Wind-driven surface currents (such as the Gulf Stream) travel polewards from the equatorial Atlantic Ocean, cooling and sinking en-route to higher latitudes - eventually becoming part of the North Atlantic Deep Water - before flowing into the ocean basins. While the bulk of thermohaline water upwells in the Southern Ocean, the oldest waters (with a transit time of approximately 1000 years) upwell in the North Pacific; extensive mixing takes place between the ocean basins, reducing the difference in their densities, forming the Earth's oceans a global system. The water in these circuits transport energy (as heat) and mass (as dissolved solids and gases) around the globe. Consequently, the state of the circulation greatly impacts the climate of Earth.

The thermohaline circulation is often referred to as the ocean conveyor belt, great ocean conveyor, or "global conveyor belt" - a term coined by climate scientist Wallace Smith Broecker. It is also known as the meridional overturning circulation, or MOC; a name used to signify that circulation patterns caused by temperature and salinity gradients are not necessarily part of a single global circulation. This is due, in part, to the difficulty in separating parts of the circulation driven by temperature and salinity from those affected by factors such as wind and tidal force.

This global circulation comprises two major "limbs;" the Atlantic meridional overturning circulation (AMOC) centered in the north Atlantic Ocean, and the Southern Ocean overturning circulation, or Southern Ocean meridional circulation (SMOC) located near Antarctica.

Editorial summary

“Thermohaline circulation” enters the record as part of the large-scale ocean circulation that is driven by global density gradients created by surface heat and freshwater fluxes. Crown Archives preserves that source wording while asking what Thermohaline, circulation and part can confirm, complicate or overturn.

Editorial reviewMost useful as a place-based finding aid connecting the present description to earlier jurisdictions, maps and built evidence. The current lead gives the account dated anchors—1000—that can be checked directly. The selected authority fields contribute no independent date. Its strongest next move is a source search built around Thermohaline, circulation and part.
Editorial analysis

Why this record matters

“Thermohaline circulation” is worth following because a concise public description often conceals a longer documentary argument. Here, Thermohaline, circulation and part provides the most credible route into that argument.

Evidence profile

Place names and jurisdictional language are key evidence: both can reveal earlier catalogue descriptions and overlooked record series. The source revision retrieved here is dated Aug 16, 2026. The linked authority identifier is Q463223. The Library of Congress control number is sh2007006534. 1 of 1 selected statements include explicit references; 0 carry qualifiers and 0 use preferred rank. The first chronological checks are 1000.

Critical limits

Architectural summaries often privilege surviving fabric and can understate demolished phases, contested use or displaced communities. The source lead contains qualifying language; that uncertainty should survive quotation, summary and reuse. Authority statements aid reconciliation but still require their own references, qualifiers and ranks to be checked.

How to read it

Treat names, boundaries and functions as historically changeable. Maps, plans, inventories and administrative records can clarify what the place meant at different dates.

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Contemporary maps, plans, listed-building records, estate papers and the responsible local or national archive.

Three-step research path

  1. Establish the record: confirm the title “Thermohaline circulation”, its source revision and the description used here.
  2. Expand the search: follow Thermohaline circulation primary sources, Thermohaline circulation archive and Thermohaline research across catalogues and specialist indexes.
  3. Test the account: compare the strongest cited source with the responsible institution’s current record and note any disagreement.

Questions for further research

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Source & attribution

This entry incorporates text from Thermohaline circulation” on English Wikipedia. Contributors are listed in the page history. Text is available under the Creative Commons Attribution-ShareAlike 4.0 License. Selected authority identifiers and statements are retrieved from Wikidata under CC0; their references and qualifiers remain part of the verification path.