In experiments on aprototypical combustor, Richard Steinert identifies new insights on the impactof noise on the phenomenon known as thermoacoustic instability. The phenomenonis a concern… Mehr…
In experiments on aprototypical combustor, Richard Steinert identifies new insights on the impactof noise on the phenomenon known as thermoacoustic instability. The phenomenonis a concerning issue which creates a technical limit on the efficiency andenvironmental impact of fossil fuels combustion in industrial combustors. Itposes a threat to the structural integrity of practical systems such as gasturbine combustors and rocket engines. The experiments demonstrate thatthermoacoustic systems feature an interesting noise-induced behaviour known ascoherence resonance – a coherent response of dynamical systems close to theirstability boundary that is induced by stochastic excitation. The work containedin this publication is an example illustrating the importance of fundamentalconsiderations in solving perplexing engineering issues.; PDF; Scientific, Technical and Medical > Energy technology & engineering, Springer Fachmedien Wiesbaden<
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In experiments on a prototypical combustor, Richard Steinert identifies new insights on the impact of noise on the phenomenon known as thermoacoustic instability. The phenomenon is a conc… Mehr…
In experiments on a prototypical combustor, Richard Steinert identifies new insights on the impact of noise on the phenomenon known as thermoacoustic instability. The phenomenon is a concerning issue which creates a technical limit on the efficiency and environmental impact of fossil fuels combustion in industrial combustors. It poses a threat to the structural integrity of practical systems such as gas turbine combustors and rocket engines. The experiments demonstrate that thermoacoustic systems feature an interesting noise-induced behaviour known as coherence resonance – a coherent response of dynamical systems close to their stability boundary that is induced by stochastic excitation. The work contained in this publication is an example illustrating the importance of fundamental considerations in solving perplexing engineering issues., Springer Spektrum<
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In experiments on aprototypical combustor, Richard Steinert identifies new insights on the impactof noise on the phenomenon known as thermoacoustic instability. The phenomenonis a concern… Mehr…
In experiments on aprototypical combustor, Richard Steinert identifies new insights on the impactof noise on the phenomenon known as thermoacoustic instability. The phenomenonis a concerning issue which creates a technical limit on the efficiency andenvironmental impact of fossil fuels combustion in industrial combustors. Itposes a threat to the structural integrity of practical systems such as gasturbine combustors and rocket engines. The experiments demonstrate thatthermoacoustic systems feature an interesting noise-induced behaviour known ascoherence resonance – a coherent response of dynamical systems close to theirstability boundary that is induced by stochastic excitation. The work containedin this publication is an example illustrating the importance of fundamentalconsiderations in solving perplexing engineering issues.; PDF; Scientific, Technical and Medical > Energy technology & engineering, Springer Fachmedien Wiesbaden<
No. 9783658138233. Versandkosten:Instock, Despatched same working day before 3pm, zzgl. Versandkosten.
In experiments on a prototypical combustor, Richard Steinert identifies new insights on the impact of noise on the phenomenon known as thermoacoustic instability. The phenomenon is a conc… Mehr…
In experiments on a prototypical combustor, Richard Steinert identifies new insights on the impact of noise on the phenomenon known as thermoacoustic instability. The phenomenon is a concerning issue which creates a technical limit on the efficiency and environmental impact of fossil fuels combustion in industrial combustors. It poses a threat to the structural integrity of practical systems such as gas turbine combustors and rocket engines. The experiments demonstrate that thermoacoustic systems feature an interesting noise-induced behaviour known as coherence resonance – a coherent response of dynamical systems close to their stability boundary that is induced by stochastic excitation. The work contained in this publication is an example illustrating the importance of fundamental considerations in solving perplexing engineering issues., Springer Spektrum<
Nr. 978-3-658-13823-3. Versandkosten:Worldwide free shipping, , DE. (EUR 0.00)
Effect of Noise on a Model Thermoacoustic System at its Stability Boundary: ab 69.49 € eBooks > Sachthemen & Ratgeber > Technik Gabler Betriebswirt.-Vlg, Gabler Betriebswirt.-Vlg
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Buch in der Datenbank seit 2016-07-01T10:17:46+02:00 (Berlin) Detailseite zuletzt geändert am 2024-03-24T01:41:09+01:00 (Berlin) ISBN/EAN: 9783658138233
ISBN - alternative Schreibweisen: 978-3-658-13823-3 Alternative Schreibweisen und verwandte Suchbegriffe: Autor des Buches: steinert, richard steiner, stein Titel des Buches: noise, model, boundary, noi, stability
Daten vom Verlag:
Autor/in: Richard Steinert Titel: BestMasters; Effect of Noise on a Model Thermoacoustic System at its Stability Boundary Verlag: Springer Spektrum; Springer Fachmedien Wiesbaden GmbH 44 Seiten Erscheinungsjahr: 2016-04-20 Wiesbaden; DE Sprache: Englisch 53,49 € (DE) 55,00 € (AT) 59,00 CHF (CH) Available XIV, 44 p. 23 illus.
EA; E107; eBook; Nonbooks, PBS / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Elektrotechnik; Verstehen; Prototypical Combustor; Fossil Fuels Combustion; Industrial Combustor; Noise Induced Response; Single Frequency Excitation; C; Electrical Power Engineering; Mechanical Power Engineering; Fossil Fuel; Energy Policy, Economics and Management; Energy; Energietechnik, Elektrotechnik und Energiemaschinenbau; Technologien für fossile Brennstoffe, allgemein; Umwelt; BC
Determination of the System’s Stability Characteristics.- Single Frequency Excitation in the Bistable Region.- Noise Induced Response in the Stable Region.
wrote his Master’s Thesis at the chair of Fluid Dynamics at the Technische Universität Berlin.
ContentsTarget GroupsRichard Steinert Publication in the field of natural sciences Includes supplementary material: sn.pub/extras
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