0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R1,000 - R2,500 (1)
  • R5,000 - R10,000 (1)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Coolant Flow Instabilities in Power Equipment (Paperback): Vladimir B. Khabensky, Vladimir Antonovich Gerliga Coolant Flow Instabilities in Power Equipment (Paperback)
Vladimir B. Khabensky, Vladimir Antonovich Gerliga
R2,272 Discovery Miles 22 720 Ships in 12 - 17 working days

Thermal-hydraulic instability can potentially impair thermal reliability of reactor cores or other power equipment components. Thus it is important to address stability issues in power equipment associated with thermal and nuclear installations, particularly in thermal nuclear power plants, chemical and petroleum industries, space technology, and radio, electronic, and computer cooling systems. Coolant Flow Instabilities in Power Equipment synthesizes results from instability investigations around the world, presenting an analysis and generalization of the published technical literature. The authors include individual examples on flow stability in various types of equipment, including boilers, reactors, steam generators, condensers, heat exchangers, turbines, pumps, deaerators, bubblers, and pipelines. They also present information that has not been widely available until recently, such as thermal-acoustic instability, flow instability with supercritical parameters, and single-phase coolant flow static instability. The material described in this book is derived from vast amounts of experimental data from thermal-physical test facilities and full-scale installations. It is presented in a manner accessible to readers without advanced mathematical backgrounds. Particular attention has been paid to oscillatory (low-frequency and thermal-acoustic) and static thermal-hydraulic coolant flow instability. In addition, the physical mechanism of instability has been considered in detail. This book provides knowledge of the various types of flow instability, the equipment where this instability can manifest, and the ensuing consequences, as well as makes recommendations concerning possible removal or mitigation of these consequences. The authors provide this information as a useful reference for readers to facilitate the enhanced safety of modern power equipment through qualitative evaluation of design and flow parameters and subsequent selection of the optimal means for increasing flow stability.

Coolant Flow Instabilities in Power Equipment (Hardcover): Vladimir B. Khabensky, Vladimir Antonovich Gerliga Coolant Flow Instabilities in Power Equipment (Hardcover)
Vladimir B. Khabensky, Vladimir Antonovich Gerliga
R5,947 Discovery Miles 59 470 Ships in 12 - 17 working days

Thermal-hydraulic instability can potentially impair thermal reliability of reactor cores or other power equipment components. Thus it is important to address stability issues in power equipment associated with thermal and nuclear installations, particularly in thermal nuclear power plants, chemical and petroleum industries, space technology, and radio, electronic, and computer cooling systems. Coolant Flow Instabilities in Power Equipment synthesizes results from instability investigations around the world, presenting an analysis and generalization of the published technical literature. The authors include individual examples on flow stability in various types of equipment, including boilers, reactors, steam generators, condensers, heat exchangers, turbines, pumps, deaerators, bubblers, and pipelines. They also present information that has not been widely available until recently, such as thermal-acoustic instability, flow instability with supercritical parameters, and single-phase coolant flow static instability. The material described in this book is derived from vast amounts of experimental data from thermal-physical test facilities and full-scale installations. It is presented in a manner accessible to readers without advanced mathematical backgrounds. Particular attention has been paid to oscillatory (low-frequency and thermal-acoustic) and static thermal-hydraulic coolant flow instability. In addition, the physical mechanism of instability has been considered in detail. This book provides knowledge of the various types of flow instability, the equipment where this instability can manifest, and the ensuing consequences, as well as makes recommendations concerning possible removal or mitigation of these consequences. The authors provide this information as a useful reference for readers to facilitate the enhanced safety of modern power equipment through qualitative evaluation of design and flow parameters and subsequent selection of the optimal means for increasing flow stability.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Frozen - Blu-Ray + DVD
Blu-ray disc R344 Discovery Miles 3 440
Scruffs Tramps Thermal Lounger Cat Bed…
R609 Discovery Miles 6 090
Swiss Miele Vacuum Bags (4 x Bags | 2 x…
 (8)
R199 R166 Discovery Miles 1 660
Tenet
John David Washington, Robert Pattinson Blu-ray disc  (1)
R54 Discovery Miles 540
Dig & Discover: Dinosaurs - Excavate 2…
Hinkler Pty Ltd Kit R304 R267 Discovery Miles 2 670
Bestway Beach Ball (51cm)
 (2)
R26 Discovery Miles 260
Givenchy Xeryus Rouge Eau De Toilette…
R1,996 R1,198 Discovery Miles 11 980
Monami 401 Tile Grout Coating Marker + 2…
R111 Discovery Miles 1 110
Gloria
Sam Smith CD R407 Discovery Miles 4 070
The End, So Far
Slipknot CD R498 Discovery Miles 4 980

 

Partners