Final report from the study on water hammer in fire protection system
AUTHOR | Malesińska Agnieszka; Malesi Ska Agnieszka |
PUBLISHER | LAP Lambert Academic Publishing (04/22/2015) |
PRODUCT TYPE | Paperback (Paperback) |
Description
The disturbance which spreads in a form of pressure wave occurs in transient fluid flow conditions. The disturbance speed in the pipes under pressure can reach the value close to the speed of sound in the medium. Course of the disturbance is so complex that it cannot be described in a simple and direct way. Water hammer phenomenon is accompanied by the formation of the oscillatory motion of the pipes in the system. It may even lead to significant displacement of the pipes, which in extreme cases can lead to fire protection system mounting damage. Therefore, correct identification of the dynamic load affecting the system during hydraulic shock wave propagation is essential to increase operational reliability of fire protection systems. In the book the results of the measured forces and the associated displacements are presented.
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Product Format
Product Details
ISBN-13:
9783659696732
ISBN-10:
3659696730
Binding:
Paperback or Softback (Trade Paperback (Us))
Content Language:
English
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Page Count:
92
Carton Quantity:
76
Product Dimensions:
6.00 x 0.22 x 9.00 inches
Weight:
0.32 pound(s)
Country of Origin:
US
Subject Information
BISAC Categories
Technology & Engineering | Environmental - General
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The disturbance which spreads in a form of pressure wave occurs in transient fluid flow conditions. The disturbance speed in the pipes under pressure can reach the value close to the speed of sound in the medium. Course of the disturbance is so complex that it cannot be described in a simple and direct way. Water hammer phenomenon is accompanied by the formation of the oscillatory motion of the pipes in the system. It may even lead to significant displacement of the pipes, which in extreme cases can lead to fire protection system mounting damage. Therefore, correct identification of the dynamic load affecting the system during hydraulic shock wave propagation is essential to increase operational reliability of fire protection systems. In the book the results of the measured forces and the associated displacements are presented.
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