Experimental Study of Heat Flux Partitioning in Pressurized Subcooled Flow Boiling

Experimental Study of Heat Flux Partitioning in Pressurized Subcooled Flow Boiling
Author :
Publisher :
Total Pages : 182
Release :
ISBN-10 : OCLC:1059513397
ISBN-13 :
Rating : 4/5 (97 Downloads)

Book Synopsis Experimental Study of Heat Flux Partitioning in Pressurized Subcooled Flow Boiling by : Andrew Jonathan Richenderfer

Download or read book Experimental Study of Heat Flux Partitioning in Pressurized Subcooled Flow Boiling written by Andrew Jonathan Richenderfer and published by . This book was released on 2018 with total page 182 pages. Available in PDF, EPUB and Kindle. Book excerpt: Understanding of subcooled flow boiling and the critical heat flux (CHF) is of the utmost importance for both safety and profitability of pressurized water nuclear reactors since they are major factors in the determination of the reactor power rating. Motivated by the emergence of a new wall boiling model by Gilman [3] and previous experimental insights from Phillips [12], a first-of-a-kind experimental investigation of pressurized steady-state subcooled flow boiling was conducted using state-ofthe- art diagnostics to gain a unique insight of the relevant mechanisms, including the partitioning of the wall heat flux. Conditions up to 10 bar pressure, 2000 kg/m2s mass flux and 20 K subcooling were explored. High-speed infrared thermometry tools were developed and used to measure the local time-dependent 2-D temperature and heat flux distributions on the boiling surface. These distributions were analyzed to determine fundamental boiling heat transfer parameters such as the nucleation site density, growth and wait times, nucleation frequency, departure diameter as well as the partitioning of the wall heat flux. While established mechanistic models can capture the trends of growth time and wait time with relatively good accuracy, this work reveals current models do not accurately predict the activation and interaction of nucleation sites on the boiling surface. This is a major roadblock, since boiling curves and CHF values obtained in nominally identical environments can be significantly different depending upon the nucleation site density which in turn is determined by the surface properties. The role of evaporation in the partitioning of the heat flux increases monotonically as the average heat flux increases, up to a maximum value of 70%, and is the dominant mechanism at high heat fluxes. At low and intermediate heat fluxes single-phase heat transfer is the dominant mechanism. Traditional heat partitioning models fail to capture these physics, but newer models with a comprehensive and physically consistent framework show promise in predicting the wall heat transfer. The data and understanding produced by this work will be essential for the development and validation of these modeling tools.


Experimental Study of Heat Flux Partitioning in Pressurized Subcooled Flow Boiling Related Books

Experimental Study of Heat Flux Partitioning in Pressurized Subcooled Flow Boiling
Language: en
Pages: 182
Authors: Andrew Jonathan Richenderfer
Categories:
Type: BOOK - Published: 2018 - Publisher:

DOWNLOAD EBOOK

Understanding of subcooled flow boiling and the critical heat flux (CHF) is of the utmost importance for both safety and profitability of pressurized water nucl
An Experimental Study of Subcooled Flow Boiling at Elevated Pressure in an Annular Flow Channel
Language: en
Pages: 106
Authors: Pervej Rahman
Categories:
Type: BOOK - Published: 2015 - Publisher:

DOWNLOAD EBOOK

An experimental setup was developed to study the region of subcooled flow boiling. Multiple studies were carried out to investigate the effects of liquid veloci
Modeling and experiments for wall heat flux partitioning during subcooled flow boiling of water at low pressures
Language: en
Pages: 388
Experimental Study on Subcooled Flow Boiling on Heating Surfaces with Different Thermal Conductivities
Language: en
Pages:
Authors: Ling Zou
Categories:
Type: BOOK - Published: 2011 - Publisher:

DOWNLOAD EBOOK

Subcooled flow boiling is generally characterized by high heat transfer capacity and low wall superheat, which is essential for cooling applications requiring h
Modeling and Experiments for Wall Heat Flux Partitioning During Subcooled Flow Boiling of Water at Low Pressures
Language: en
Pages: 194