the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
Exploring Wake Interactions in a Counterrotating Dual Rotor System for different Yaw configurations: An Experimental Study
Abstract. As an opportunity to increase turbine and wind park efficiencies, multi and dual rotor turbines have received great attention among research and industry. Goal of this experimental study is to validate and add findings to numerical simulations on dual rotors. It will be shown that the rotational sense greatly influences the lateral interaction and hence the downstream evolution of a dual wake. In the experiments, 19 hot-wires on a downstream traversing array are used to acquire the velocities in the wake at high temporal and spatial resolution. Two laterally spaced counterrotating model wind turbines with a diameter of 0.58 m (= 1 D) generate the wake, which is analyzed between 0.75–10.0 D downstream. The benefits in dual rotor wake control will be shown through symmetrical yaw-alternation of the setup in dependency of the positioning of the turbines with different rotational sense. To achieve a beneficial wake evolution for a downwind turbine, two main strategies are presented. One is a wake centroid deflection away from a possible downstream turbine, causing a flow entrainment from above the dual rotor setup. The other one is an induced wake collision, resulting in strong turbulent interaction between the two single wakes and faster wake recovery. The knowledge of these principles and their application to full scale show great potential for large efficiency gains in terms of wind park operation.
Competing interests: At least one of the (co-)authors is a member of the editorial board of Wind Energy Science.
Publisher's note: Copernicus Publications remains neutral with regard to jurisdictional claims made in the text, published maps, institutional affiliations, or any other geographical representation in this paper. While Copernicus Publications makes every effort to include appropriate place names, the final responsibility lies with the authors. Views expressed in the text are those of the authors and do not necessarily reflect the views of the publisher.- Preprint
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RC1: 'Comment on wes-2026-48', Anonymous Referee #1, 08 Apr 2026
The comment was uploaded in the form of a supplement: https://wes.copernicus.org/preprints/wes-2026-48/wes-2026-48-RC1-supplement.pdfCitation: https://doi.org/
10.5194/wes-2026-48-RC1 - AC1: 'Reply on RC1', Jannis Maus, 15 Jul 2026
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RC2: 'Comment on wes-2026-48', Anonymous Referee #2, 04 Jun 2026
Review for “Exploring Wake Interactions in a Counterrotating Dual Rotor System for different Yaw configurations: An Experimental Study”
This work investigates the combined impact of rotation direction and yaw on the wake structure of a dual rotor. Overall, the study is interesting and can contribute to a better understanding and further development of dual-rotor systems.
However, the manuscript requires major revision before it can be considered for publication, particularly regarding the analysis and interpretation of the results. Some conclusions appear to be based on assumptions that are not sufficiently supported by the presented data. Additional supporting evidence and deeper analysis are needed to strengthen the arguments and validate the conclusions.
Please refer to the attached detailed comments for specific suggestions and concerns.
Good luck with the revision.
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AC2: 'Reply on RC2', Jannis Maus, 15 Jul 2026
The reviewer addressed very important points regarding missing data presentations and a not sufficiently supported line of argument of the presented wake forming mechanisms. In hindsight the authors realized that too many assumptions and prior knowledge was expected from the reader that is only known to people who have dealt extensively with the topic at hand. Subsequently, the manuscript was extensively revised. In particular, the discussion of the single-rotor wakes, which form the basis for the subsequent analysis, was expanded by presenting additional data from the experimental study at hand, as well as further literature addressing the same mechanisms.
The authors also added a schematic drawing to help illustrate the complex three-dimensional nature of clockwise and counterclockwise rotating wakes and its relevance to the results found. It certainly helps the reader to follow the argumentation and conclusions given in the manuscript and solves the questions raised later in the document.
For a more detailed display of what has been deleted, adapted or changed, please refer to the differential file provided.
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AC2: 'Reply on RC2', Jannis Maus, 15 Jul 2026
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