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Optical turbulence in the coastal area over False Bay, South Africa: Comparison of measurements and modeling results

: Sprung, Detlev; Eijk, Alexander M.J. van; Ullwer, Carmen; Gunter, Willi; Eisele, Christian; Seiffer, Dirk; Sucher, Erik; Stein, Karin


Stein, K.U. ; Society of Photo-Optical Instrumentation Engineers -SPIE-, Bellingham/Wash.:
Environmental Effects on Light Propagation and Adaptive Systems : 12-13 September 2018, Berlin, Germany
Bellingham, WA: SPIE, 2018 (Proceedings of SPIE 10787)
ISBN: 978-1-5106-2157-2
ISBN: 978-1-5106-2158-9
Paper 1078703, 9 S.
Conference "Environmental Effects on Light Propagation and Adaptive Systems" <2018, Berlin>
Fraunhofer IOSB ()
inhomogeneous distribution of optical turbulence; maritime surface layer; seasonal cycle

The atmospheric influence on wave propagation was investigated during the First European South African Transmission ExpeRiment (FESTER) from June 2015 to February 2016. The focus in this article was set on optical turbulence, the main atmospheric factor affecting the position and strength of Laser beams, the performance of electro-optical systems and imaging. Measurements were performed continuously during the campaign on three sites over the northwestern part of False Bay. The optical turbulence measurements include in situ measurements using an ultrasonic anemometer at the Roman Rock Island. Integrated optical turbulence measurements were performed at two sites, over a path of 1.8 km and a long distance path of 8.6 km. The sites may be affected by local effects of the coastal environment. For comparison, the optical turbulence was modeled using micrometeorological parameterization. Additionally, the optical turbulence was determined by simulations using the weather research and forecast model WRF. Simulation results were compared to measurements considering seasonal and meteorological variations. The representativeness of the measurements locations for offshore measurements will be discussed.