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Kirjailija

Guohua Tu

Kirjat ja teokset yhdessä paikassa: 2 kirjaa, julkaisuja vuosilta 2025–2026, suosituimpiin kuuluu Stabilization of Hypersonic Boundary-Layer: Acoustic Metasurfaces. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

2 kirjaa

Kirjojen julkaisuvuodet: 2025–2026.

Stabilization of Hypersonic Boundary-Layer: Acoustic Metasurfaces

Stabilization of Hypersonic Boundary-Layer: Acoustic Metasurfaces

Rui Zhao; Guohua Tu; Jun Liang; Chihyung Wen

SPRINGER VERLAG, SINGAPORE
2025
sidottu
This book explores the mechanisms and applications of acoustic metasurfaces in the hypersonic transition control area. It begins with an introduction of the concepts of acoustic metasurface and hypersonic boundary-layer stabilization, which also provides a full scene of the research progress in the past two decades. This book then discusses the modeling methods of various acoustic metasurfaces, including the regular and irregular ones, and describes how the models are to be used in theoretical analysis and numerical calculations. The design strategies and optimization methods are presented to promote the applications in the engineering community. The possible stabilization mechanisms are explored, and the proposed analysis methods are used to clarify other flow instabilities. This book delivers valuable insight for aerospace engineers, postgraduate students, and researchers.
Stabilization of Hypersonic Boundary-Layer: Acoustic Metasurfaces

Stabilization of Hypersonic Boundary-Layer: Acoustic Metasurfaces

Rui Zhao; Guohua Tu; Liang Jun; Chihyung Wen

Springer Verlag Singapore
2026
Nidottu
This book explores the mechanisms and applications of acoustic metasurfaces in the hypersonic transition control area. It begins with an introduction of the concepts of acoustic metasurface and hypersonic boundary-layer stabilization, which also provides a full scene of the research progress in the past two decades. This book then discusses the modeling methods of various acoustic metasurfaces, including the regular and irregular ones, and describes how the models are to be used in theoretical analysis and numerical calculations. The design strategies and optimization methods are presented to promote the applications in the engineering community. The possible stabilization mechanisms are explored, and the proposed analysis methods are used to clarify other flow instabilities. This book delivers valuable insight for aerospace engineers, postgraduate students, and researchers.