Waterhammer in Non-Rigid Pipes: Precursor Waves and Mechanical Damping

Author:

Williams D. J.1

Affiliation:

1. Department of Aeronautics and Fluid Mechanics, Glasgow University

Abstract

When a pipe can move, waterhammer effects are altered by the existence of precursor waves, i.e. longitudinal elastic strain waves in the pipe walls, modified by the presence of the fluid. Theory and experiment show that precursor waves cannot be ignored, if the effect of longitudinal strain is to be considered; conventional waterhammer theory is thus unsatisfactory. Flexural waves may also occur. It was found experimentally that pipe motion caused mechanical damping of the waterhammer–greater than the viscous damping. Viscoelastic piping also gave rise to strong mechanical damping, even without pipe motion.

Publisher

SAGE Publications

Subject

General Engineering

Reference11 articles.

1. Aronovich G. V., Kartvelishvili N. A., Lyubimtsev Ya. K. Waterhammer and surge tanks (Moscow) 1968, 3–13. (English translation: Israel program for scientific translations, Jerusalem 1970.).

2. Fox J. A. Engineering fluid mechanics 1974, 291–311 (Macmillan, London).

3. Ireland J. W. Mechanics of fluids 1971, 293–298 (Butterworths, London).

4. Massey B. S. Mechanics of fluids 3rd edition, 1975, 424–434 (Van Nostrand Reinhold, London).

5. Analysis of Surge

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