Metagenomic biodiversity assessment within an offshore wind farm. [PDF]
Serivichyaswat PT +4 more
europepmc +1 more source
The Relation between Migratory Activity of Pipistrellus Bats at Sea and Weather Conditions Offers Possibilities to Reduce Offshore Wind Farm Effects. [PDF]
Brabant R +3 more
europepmc +1 more source
Flight Altitude of Common Cranes (<i>Grus grus</i>) Crossing the Arkona Basin (Baltic Sea): Implications for Offshore Wind Farm Development. [PDF]
Skov H +6 more
europepmc +1 more source
Bu tezde ?mixed integer linear program? (MILP) kullanılarak rüzgar çiftliği optimizasyonu formüle edilmiştir. Öncelikle, her bir grid noktasının olası rüzgar türbini yerini temsil ettiği bir grid, rüzgar çiftliğiyle birleştirildi. Bu süreçte, rüzgar çiftliğindeki güç kaybını bulmak amacıyla rüzgar türbinlerinin birbirlerine yakınlıkları ve ...
openaire +1 more source
Wind farm noise negatively impacts the calling behavior of three frogs in Caatinga dry forests. [PDF]
de Oliveira RF +4 more
europepmc +1 more source
A proposed methodology for mollification of subsynchronous oscillation in DFIG-based wind farm. [PDF]
Abdeen M, El-Dabah MA, Agwa AM.
europepmc +1 more source
Quasi-Newton optimised Kolmogorov-Arnold Networks for wind farm power prediction. [PDF]
Mubarak AS +5 more
europepmc +1 more source
Wind power prediction based on deep learning models: The case of Adama wind farm. [PDF]
Ayene SM, Yibre AM.
europepmc +1 more source
This deliverable is related to T1.1 In this task we will define two baseline wind farms: 1) a small 9 turbine windfarm with 15MW reference turbines that is also used in CL-Windcon, 2) a rotor diameter scaled version of the HKN wind farm lay-out with 69 IEA 20MW turbines. We will perform baseline Large Eddy Simulations (LES) simulations using EllipSys3D
openaire +1 more source
New genetic gray wolf optimizer with a random selective mutation for wind farm layout optimization. [PDF]
Amaro Pinazo M.
europepmc +1 more source

