1990Unpublished venueRequires access

Fluid Dynamics for the Study of Transonic Flow

Heinrich J Ramm

Open publisher page 18 citations

Abstract

Abstract This new title leads readers step-by-step through the transition from subsonic to supersonic flow, and will help them develop an understanding of the complex theoretical principles involved. The work provides complete information on the fundamentals as well as matters of increasing complexity demonstrating the logic behind the computer analysis that is a necessary part of such a study. The book will be of use to anyone who needs to acquire an understanding of transonic flow, practising engineers as well as students of fluid mechanics.

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What this paper is about

Abstract This new title leads readers step-by-step through the transition from subsonic to supersonic flow, and will help them develop an understanding of the complex theoretical principles involved. The work provides complete information on the fundamentals as well as matters of increasing complexity demonstrating the logic behind the computer analysis that is a necessary part of such a study. The book will be of use to anyone who needs to acquire an understanding of transonic flow, practising engineers as well as students of fluid mechanics.

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OpenAlex reports 18 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Abstract This new title leads readers step-by-step through the transition from subsonic to supersonic flow, and will help them develop an understanding of the complex theoretical principles involved. The work provides complete information on the fundamentals as well as matters of increasing complexity demonstrating the logic behind the computer analysis that is a necessary part of such a study. The book will be of use to anyone who needs to acquire an understanding of transonic flow, practising engineers as well as students of fluid mechanics.

Key concepts: Transonic, Supersonic speed, Flow (mathematics), Computer science, Work (physics), Fluid dynamics, Choked flow, Computational fluid dynamics

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