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Dive into the research topics where Yohei Kayukawa is active.

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Featured researches published by Yohei Kayukawa.


Measurement Science and Technology | 2007

A new method for correcting a force transmission error due to magnetic effects in a magnetic levitation densimeter

Yuya Kano; Yohei Kayukawa; Kenichi Fujii; Haruki Sato

The magnetic levitation densimeter is one of the most accurate methods to measure fluid density in a wide range of temperature and pressure. For the existing commercially available densimeter, a relative measurement uncertainty of density is about 0.03%. One of the largest parts of the uncertainty is caused by magnetism of materials around the magnetic coupling in the densimeter, such as a sample fluid under test and a pressure cell. These magnetic effects cause a force transmission error in the magnetic coupling, which is composed of a permanent magnet in the sample fluid and an electromagnet suspended from an electronic balance placed under ambient temperature and pressure. For the existing densimeter, the force transmission error induces an uncertainty of around 0.01% in density. In the present study, the force transmission error is quantitatively investigated by the finite element method (FEM). Reliability of the FEM analysis was confirmed through a comparison with the experimental data measured by using the densimeter established at the National Metrology Institute of Japan (NMIJ). It is found from the FEM results that the density measurement error caused by the force transmission error can be reduced by controlling the permanent magnet at the same vertical position in every measurement state. In addition, the force transmission error linearly changes with the magnetic force acting on the electromagnet when the vertical position of the permanent magnet is constant. On the basis of these FEM results, the authors propose a correction method for the force transmission error by using a dual-sinker type of densimeter.


Journal of Chemical & Engineering Data | 2005

Liquid-Phase Thermodynamic Properties for Propane (1), n-Butane (2), and Isobutane (3)

Yohei Kayukawa; Masaya Hasumoto; Yuya Kano; Koichi Watanabe


Journal of Chemical & Engineering Data | 2005

Vapor−Liquid Equilibrium (VLE) Properties for the Binary Systems Propane (1) + n-Butane (2) and Propane (1) + Isobutane (3)

Yohei Kayukawa; and Kenichi Fujii; Yukihiro Higashi


International Journal of Thermophysics | 2010

Ideal-gas heat capacity for 2,3,3,3-tetrafluoropropene (HFO-1234yf) determined from speed-of-sound measurements

Yuya Kano; Yohei Kayukawa; Kenichi Fujii; Haruki Sato


Journal of Chemical & Engineering Data | 2005

Liquid-phase thermodynamic properties for the binary and ternary systems of propane (1), n-butane (2), and isobutane (3)

Yohei Kayukawa; Masaya Hasumoto; Yuya Kano; Koichi Watanabe


Journal of Chemical & Engineering Data | 2013

Ideal Gas Heat Capacity Derived from Speed of Sound Measurements in the Gaseous Phase for trans-1,3,3,3-Tetrafluoropropene

Yuya Kano; Yohei Kayukawa; Kenichi Fujii; Haruki Sato


Journal of Chemical & Engineering Data | 2003

Thermodynamic Property Measurements for Trifluoromethyl Methyl Ether and Pentafluoroethyl Methyl Ether

Yohei Kayukawa; Masaya Hasumoto; Takashi Hondo; Yuya Kano; Koichi Watanabe


Fluid Phase Equilibria | 2007

Vapor-liquid equilibrium measurements and correlations for the binary mixture of difluoromethane + isobutane and the ternary mixture of propane + isobutane + difluoromethane

Ryo Akasaka; Yukihiro Higashi; Katsuyuki Tanaka; Yohei Kayukawa; Kenichi Fujii


International Journal of Refrigeration-revue Internationale Du Froid | 2012

A fundamental equation of state for trifluoromethyl methyl ether (HFE-143m) and its application to refrigeration cycle analysis

Ryo Akasaka; Yohei Kayukawa


Journal of Chemical & Engineering Data | 2009

Measurements of the Vapor−Liquid Equilibrium for the CO2 + R290 Mixture

Katsuyuki Tanaka; Yukihiro Higashi; Ryo Akasaka; Yohei Kayukawa; Kenich Fujii

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Yuya Kano

National Institute of Advanced Industrial Science and Technology

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Kenichi Fujii

National Institute of Advanced Industrial Science and Technology

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Haruki Sato

National Institute of Advanced Industrial Science and Technology

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