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Dive into the research topics where John Joseph Lynch is active.

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Featured researches published by John Joseph Lynch.


Problems Involving Thermal Hydraulics, Liquid Sloshing, and Extreme Loads on Structures | 2003

Pressure Oscillations From Acoustic Standing Waves Interacting With Steam Flow Instability in Vessel Equipment and Piping

John Joseph Lynch; Frederick J. Moody

The mechanism causing a fatigue failure of an in-vessel mechanical component has been identified through fundamental thermal-hydraulic analysis, and verified by experiments at several scales. It was found that pressure oscillations, caused by acoustic standing wave interaction with flow-instabilities, similar to vortex shedding, created the oscillatory driving force that initiated the failure. It was necessary to determine the dominant scaling laws in order to design scale models, which would result in time-dependent behavior that was representative of full size systems. The scaling laws showed, and it was confirmed experimentally, that room temperature air could be used in place of steam in small-scale testing, to provide representative behavior of the interactive acoustics and the flow instabilities. Tests of the scale models showed that minor changes in geometry and edge sharpness caused significant changes in the pressure oscillations at a given flow rate. It was also found that the piping configuration attached to a vessel may significantly alter acoustic pressure oscillations within the vessel. The study of interactive acoustic and flow instability phenomena in small scale models makes it possible to study the effect of parameter changes on the magnitude of thermal-hydraulic forces, which can play a role in fatigue failures.Copyright


Archive | 2009

Methods and systems for combustion dynamics reduction

Gilbert Otto Kraemer; Balachandar Varatharajan; Shiva Srinivasan; John Joseph Lynch; Ertan Yilmaz; Kwanwoo Kim; Benjamin Paul Lacy; Sarah Lori Crothers; Kapil Kumar Singh


Archive | 2012

Methods and apparatus for assembling a low noise ejector motive nozzle

Carl Gerard Schott; Kevin W. Kinzie; John Joseph Lynch; David Wesley Ball; Gunnar Leif Siden; Kenneth Neil Whaling


Archive | 2006

Methods and systems for analysis of combustion dynamics in the time domain

John Joseph Lynch; John Charles Intile; Kevin Weston McMahan; Mark William Pinson; Tapie Rohm


Archive | 2009

Method and system for reducing combustion dynamics

Sarah Lori Crothers; Kwanwoo Kim; Gilbert Otto Kraemer; Benjamin Paul Lacy; John Joseph Lynch; Kapil Kumar Singh; Shiva Srinivasan; Balachandar Varatharajan; Ertan Yilmaz; アータン・イルマズ; カピル・クマール・シン; ギルバート・オットー・クレイマー; クワァンウー・キム; サラ・クローザース; シヴァ・スリニヴァサン; ジョン・ジョセフ・リンチ; バラチャンダー・バラサラジャン; ベンジャミン・レーシー


Archive | 2007

Low noise ejector motive nozzle

Carl Gerard Schott; Kevin W. Kinzie; John Joseph Lynch; David Wesley Ball; Gunnar Leif Siden; Kenneth Neil Whaling


Archive | 2003

Apparatus and methods for controlling flow in BWR steam dryers

Johnathan D. Lazarus; John Joseph Lynch; Alfred Stanley Nelson


Archive | 2005

System and method for testing the steam system of a boiling water reactor

Daniel C. Pappone; Daniel V. Sommerville; Teddy Earl Mcdowell; John Joseph Lynch; David Galbally; Venkat Arunachalam Ramani; Jeffrey H. Sanders; Matthew Christopher O'Connor


Archive | 2006

SWIRLER ASSEMBLY AND METHOD FOR OPERATING SWIRLER

John Joseph Lynch; Kevin Weston McMahan; Mark William Pinson; ケビン・マックマハン; ジョン・ジョセフ・リンチ; マーク・ピンソン


Archive | 2009

Verfahren und Systeme zur Verminderung von Verbrennungsdynamik

Gilbert Otto Kraemer; Balachandar Varatharajan; Shiva Srinivasan; John Joseph Lynch; Ertan Yilmaz; Kwanwoo Kim; Benjamin Paul Lacy; Sarah Lori Crothers; Kapil Kumar Singh

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