Impacting Effects of Seismic Loading in Feeder Pipes of PHWR Power PlantsSource: Journal of Pressure Vessel Technology:;1996:;volume( 118 ):;issue: 003::page 351Author:R. Kumar
DOI: 10.1115/1.2842199Publisher: The American Society of Mechanical Engineers (ASME)
Abstract: The core of a pressurized heavy water reactor (PHWR) consists of a large number of fuel channels. These fuel channels are connected to the feeder pipes through which the heavy water flows and transports heat from the reactor core to the steam generators. The feeder pipes are several hundreds in number. They run close to each other with small gaps and have several bends. Thus they represent a complex piping system. Under seismic loading, the adjacent feeder pipes may impact each other. In this paper a simplified procedure has been established to assess such impacting effects. The results of the proposed analysis include bending moment and impact force, which provide the stresses due to impacting effects. These results are plotted in nondimensional form so that they could be utilized for any set of feeder pipes. The procedure used for studying the impacting effects includes seismic analysis of individual feeder pipes without impacting effects, selection of pipes for impact analysis, and estimating their maximum impact velocity. Based on the static and dynamic characteristics of the selected feeder pipes, the maximum bending moment, impact force, and stresses are obtained. The results of this study are useful for quick evaluation of the impacting effects in feeder pipes.
keyword(s): Pipes , Power stations , Heavy water reactors , Force , Channels (Hydraulic engineering) , Fuels , Stress , Boilers , Seismic analysis , Piping systems , Water , Flow (Dynamics) AND Heat ,
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contributor author | R. Kumar | |
date accessioned | 2017-05-08T23:51:22Z | |
date available | 2017-05-08T23:51:22Z | |
date copyright | August, 1996 | |
date issued | 1996 | |
identifier issn | 0094-9930 | |
identifier other | JPVTAS-28369#351_1.pdf | |
identifier uri | http://yetl.yabesh.ir/yetl/handle/yetl/117544 | |
description abstract | The core of a pressurized heavy water reactor (PHWR) consists of a large number of fuel channels. These fuel channels are connected to the feeder pipes through which the heavy water flows and transports heat from the reactor core to the steam generators. The feeder pipes are several hundreds in number. They run close to each other with small gaps and have several bends. Thus they represent a complex piping system. Under seismic loading, the adjacent feeder pipes may impact each other. In this paper a simplified procedure has been established to assess such impacting effects. The results of the proposed analysis include bending moment and impact force, which provide the stresses due to impacting effects. These results are plotted in nondimensional form so that they could be utilized for any set of feeder pipes. The procedure used for studying the impacting effects includes seismic analysis of individual feeder pipes without impacting effects, selection of pipes for impact analysis, and estimating their maximum impact velocity. Based on the static and dynamic characteristics of the selected feeder pipes, the maximum bending moment, impact force, and stresses are obtained. The results of this study are useful for quick evaluation of the impacting effects in feeder pipes. | |
publisher | The American Society of Mechanical Engineers (ASME) | |
title | Impacting Effects of Seismic Loading in Feeder Pipes of PHWR Power Plants | |
type | Journal Paper | |
journal volume | 118 | |
journal issue | 3 | |
journal title | Journal of Pressure Vessel Technology | |
identifier doi | 10.1115/1.2842199 | |
journal fristpage | 351 | |
journal lastpage | 356 | |
identifier eissn | 1528-8978 | |
keywords | Pipes | |
keywords | Power stations | |
keywords | Heavy water reactors | |
keywords | Force | |
keywords | Channels (Hydraulic engineering) | |
keywords | Fuels | |
keywords | Stress | |
keywords | Boilers | |
keywords | Seismic analysis | |
keywords | Piping systems | |
keywords | Water | |
keywords | Flow (Dynamics) AND Heat | |
tree | Journal of Pressure Vessel Technology:;1996:;volume( 118 ):;issue: 003 | |
contenttype | Fulltext |