| Literature DB >> 29757284 |
Naoto Kakuta1, Keisuke Nishijima2, Van Cuong Han2, Yuki Arakawa2, Katsuya Kondo3, Yukio Yamada4.
Abstract
A technique to measure the temperature of water and non-turbid aqueous media surrounding an induction-heated small magnetic sphere is presented. This technique utilizes wavelengths of 1150 and 1412 nm, at which the absorption coefficient of water is dependent on temperature. Water or a non-turbid aqueous gel containing a 2.0-mm- or 0.5-mm-diameter magnetic sphere is irradiated with 1150 nm or 1412 nm incident light, as selected using a narrow bandpass filter; additionally, two-dimensional absorbance images, which are the transverse projections of the absorption coefficient, are acquired via a near-infrared camera. When the three-dimensional distributions of temperature can be assumed to be spherically symmetric, they are estimated by applying inverse Abel transforms to the absorbance profiles. The temperatures were observed to consistently change according to time and the induction heating power.Entities:
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Year: 2018 PMID: 29757284 PMCID: PMC6101042 DOI: 10.3791/57407
Source DB: PubMed Journal: J Vis Exp ISSN: 1940-087X Impact factor: 1.355