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  • © 1995

Hydrodynamic Propulsion and Its Optimization

Analytic Theory

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Part of the book series: Fluid Mechanics and Its Applications (FMIA, volume 27)

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Table of contents (7 chapters)

  1. Front Matter

    Pages i-xvi
  2. Basic Hydrodynamics

    • J. A. Sparenberg
    Pages 1-94
  3. The Actuator Surface

    • J. A. Sparenberg
    Pages 95-137
  4. The Ship Screw

    • J. A. Sparenberg
    Pages 138-163
  5. Unsteady Propulsion

    • J. A. Sparenberg
    Pages 164-203
  6. Optimization Theory

    • J. A. Sparenberg
    Pages 204-250
  7. Applications of Optimization Theory

    • J. A. Sparenberg
    Pages 251-305
  8. On the Existence of Optimum Propulsion

    • J. A. Sparenberg
    Pages 306-344
  9. Back Matter

    Pages 345-376

About this book

HYDRODYNAMIC PROPULSION AND ITS OPTIMIZATION ANALYTIC THEORY Hydrodynamic propulsion has been of major interest ever since craft took to the water. In the course of time, many attempts have been made to invent, develop, or to improve hydrodynamic propulsion devices. Remarkable achievements in this field were made essentially by experienced individuals, who were in need of reliable propulsion units such as paddle wheels, sculling devices, screw propellers, and of course, sails. The problem of minimizing the amount of input energy for a prescribed effective output was first investigated seriously at the beginning of this century. In 1919, BETZ presented a paper on air-screw propellers with minimum consumption of energy which could be applied to ship-screw propellers also. Next, attempts were made to optimize hydrodynamic propulsion units. Ensuing investigations concerned the optimization of the hydrodynamic system: ship-propeller. The first simple theory of ship propulsion which was presented considered more or less only thrust augmentation, wake processing and modification of propeller characteristics when operating behind the ships hull. This theory has been little improved meanwhile and is still useful, particularly with regard to practical ship design and for evaluating results of ship model tests. However, this theory is not adequate for optimization procedures necessary for high-technology propulsion, particularly for ship propellers utilizing propulsion improving devices such as tip end plates or tip fins at the propeller blades, spoilers in front of the propeller, asymmetrical stern etc.

Authors and Affiliations

  • Department of Mathematics, University of Groningen, The Netherlands

    J. A. Sparenberg

Bibliographic Information

Buy it now

Buying options

eBook USD 169.00
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 219.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 219.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access