Surface Meteorology and Air-Sea Fluxes at the WHOTS Ocean Reference Station: Variability at Periods up to One Year
-
2026
-
Source Meteorology 2026, 5(1), 5
Details
-
Journal Title:Meteorology
-
Personal Author:
-
NOAA Program & Office:
-
Description:An eighteen-year record of in situ surface meteorology and computed bulk air-sea fluxes of heat, freshwater, and momentum from an ocean site windward of the Hawaiian Islands is presented. Observations were logged every minute. The one-minute, one-hour, and one-day time series statistics are presented. The daily-averaged time series provide an overview of this trade wind site, with mean wind of 6.8 m s−1 toward the west-southwest, mean ocean heat gain of 23.2 W m−2, and freshwater loss of 1.2 m yr−1. Energetic variability was found at the higher sampling rates, evidenced by spectral peaks in solar insolation and sea-level pressure and by striking transient signals including short-lived insolation values higher than clear-sky values, short periods with air warmer than the sea surface, and by series of downdrafts of dry air. At longer periods, the presence of moist air accompanying low winds and sunny skies enhanced ocean heating. Winter events with dry air and wind, resulting in large latent and net heat loss, led to ocean cooling. Signals of two hurricanes, Darby and Douglas, were recorded. Normalized by their duration, short-lived events have the potential to make significant contributions to the heat, freshwater, and mechanical energy exchanges.
-
Keywords:
-
Source:Meteorology 2026, 5(1), 5
-
DOI:
-
Format:
-
Document Type:
-
Funding:
-
License:
-
Rights Information:CC BY
-
Compliance:Submitted
-
Download URL:
-
File Type:
-
Collection(s):
-
Main Document Checksum:urn:sha-512:1efa78ffde94b27dd2e3dc0e2dc07335dc41510ab2b032b34af189f6a4c981d8d6504a03ed77863c06e01ea0363a21af0f2eded96a130f5e997438a925768fe3
The NOAA IR serves as an archival repository of NOAA-published products including scientific findings, journal articles,
guidelines, recommendations, or other information authored or co-authored by NOAA or funded partners. As a repository, the
NOAA IR retains documents in their original published format to ensure public access to scientific information.
You May Also Like