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HF Radar observations of the Dardanelles outflow current in North Eastern Aegean using validated WERA HF radar data

Z. KOKKINI; M. POTIRIS; A. KALAMPOKIS; V. ZERVAKIS
Mediterranean Marine Science · Vol. 15, Issue 4 · pp. 753 · 2014

Abstract

A two-site WERA HF radar station was installed in November 2009 at the eastern coast of Lemnos Island in North Aegean Sea, aiming to monitor the surface inflow of Black Sea waters exiting from the Dardanelles Strait, as well as to constitute a coastal management tool for incidents of oil-pollution or save-and-rescue operations. Strong interference by foreign transmissions is a source of noise deteriorating the quality of the backscattered signal, thus significantly reducing the HF radar’s effective data return rate. In order to ameliorate this problem, further quality-control and data gap interpolating procedures have been developed and applied, to be used in addition to the procedures incorporated and used by the manufacturer’s signal processing software. The second-level processing involves traditional despiking in the temporal domain, preceding Empirical Orthogonal Function analysis. The latter is used not only to filter high-frequency noise but also to fill data gaps in time and space. The data reconstruction procedure has been assessed via comparison of (a) HF radial with CODE-type drifter radial velocities as well as (b) HF-derived virtual drifter tracks with actual drifter tracks. The main circulation features and their variability, as revealed by the reconstructed fields, are presented.

Bibliographic Information

JournalMediterranean Marine Science
PublisherHellenic Centre for Marine Research
Publication Date2014-12-23
Publication Year2014
Volume15
Issue4
Pages753
Document TypeJournal Article
Print ISSN1108-393X
eISSN1791-6763
DOI10.12681/mms.938
SubjectMarine biology; oceanography; fisheries; aquaculture; marine ecology

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NARA Access CoverageOA / free full text
Journal Homepagehttps://ejournals.epublishing.ekt.gr/index.php/hcmr-med-mar-sc
Publisher PageOpen Publisher Page
This article is openly available from the publisher.