Local heat flux measurement in an ice thermal storage capsule pack using magnetic resonance imaging

2002 ◽  
Author(s):  
Kuniyasu Ogawa ◽  
Mitsuhiro Beck ◽  
Hiromi Hasegawa ◽  
Katsumi Hashimoto ◽  
Shuichiro Hirai
2013 ◽  
Vol 60 (11) ◽  
pp. 4852-4860 ◽  
Author(s):  
Hanne K. Jussila ◽  
Andrey V. Mityakov ◽  
Sergey Z. Sapozhnikov ◽  
Vladimir Y. Mityakov ◽  
Juha Pyrhonen

2011 ◽  
Vol 32 (3) ◽  
pp. 103-116 ◽  
Author(s):  
Jan Taler ◽  
Dawid Taler ◽  
Tomasz Sobota ◽  
Piotr Dzierwa

New technique of the local heat flux measurement in combustion chambers of steam boilers A new method for measurement of local heat flux to water-walls of steam boilers was developed. A flux meter tube was made from an eccentric tube of short length to which two longitudinal fins were attached. These two fins prevent the boiler setting from heating by a thermal radiation from the combustion chamber. The fins are not welded to the adjacent water-wall tubes, so that the temperature distribution in the heat flux meter is not influenced by neighbouring water-wall tubes. The thickness of the heat flux tube wall is larger on the fireside to obtain a greater distance between the thermocouples located inside the wall which increases the accuracy of heat flux determination. Based on the temperature measurements at selected points inside the heat flux meter, the heat flux absorbed by the water-wall, heat transfer coefficient on the inner tube surface and temperature of the water-steam mixture was determined.


1989 ◽  
Vol 111 (2) ◽  
pp. 552-557 ◽  
Author(s):  
D. S. Campbell ◽  
M. Gundappa ◽  
T. E. Diller

A local heat–flux measurement system was built, calibrated, and tested for use in unsteady flows. The system was designed to maintain constant-wall-temperature boundary conditions. The measuring element is a thin-film heat flux gage made by sputter-coating gold onto a substrate. A constant-temperature anemometer is used to maintain the thin-film gage at a specified temperature under fluctuating conditions. A separate temperature control system maintains the surrounding boundary at the gage temperature. The system was calibrated for both steady and unsteady flows using a specially designed calibrator for local heat flux gages. The steady calibration was done with predominantly convective heat transfer. The unsteady calibration was achieved by adding oscillating radiant energy to the surface. Consequently, quantitative results can be obtained for both the mean and fluctuating components of the heat transfer. The frequency response was good to over 90 Hz. Sample results are presented of the unsteady heat transfer over a circular cylinder caused by natural vortex shedding at 70 to 80 Hz.


2019 ◽  
Vol 140 ◽  
pp. 06006
Author(s):  
Sergey Sapozhnikov ◽  
Vladimir Mityakov ◽  
Alexander Babich ◽  
Elza Zainullina

Gradient heat flux measurement was used to study steam condensation at the inner and outer surfaces of pipes. Experimental setups were developed, manufactured and tested. The setups were able to incline the pipes for different angles relative to vertical and to rotate them around their main axes. Local heat transfer coefficients (HTC) along the pipe length and perimeter were determined. Formation and motion of condensate film were studied. The results are corresponding to classical ideas and give us some new information.


2001 ◽  
Vol 21 (2) ◽  
pp. 24-30
Author(s):  
Kuniyasu Ogawa ◽  
Mitsuhiro Beck ◽  
Hiromi Hasegawa ◽  
Katsumi Hashimoto ◽  
Shuichiro Hirai

Nanomaterials ◽  
2020 ◽  
Vol 10 (11) ◽  
pp. 2182
Author(s):  
Sumera Khizar ◽  
Nasir M. Ahmad ◽  
Naveed Ahmed ◽  
Sadia Manzoor ◽  
Muhammad A. Hamayun ◽  
...  

Aminodextran (AMD) coated magnetic cobalt ferrite nanoparticles are synthesized via electrostatic adsorption of aminodextran onto magnetic nanoparticles and their potential theranostic application is evaluated. The uncoated and aminodextran-coated nanoparticles are characterized to determine their hydrodynamic size, morphology, chemical composition, zeta potential and magnetization. The aminodextran containing cobalt ferrite nanoparticles of nanometer size are positively charged in the pH range from 3 to 9 and exhibit saturation magnetization of 50 emu/g. The magnetic resonance imaging (MRI) indicates capability for diagnostics and a reduction in intensity with an increase in nanoparticle amount. The hyperthermia capability of the prepared particles shows their potential to generate suitable local heat for therapeutic purposes. There is a rise of 7 °C and 9 °C at 327 kHz and 981 kHz respectively and specific absorption rates (SAR) of aminodextran-coated nanoparticles are calculated to be 259 W/g and 518 W/g at the given frequencies larger than uncoated nanoparticles (0.02 W/g). The development of novel aminodextran coated magnetic cobalt ferrite nanoparticles has significant potential to enable and improve personalized therapy regimens, targeted cancer therapies and ultimately to overcome the prevalence of nonessential and overdosing of healthy tissues and organs.


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