Chul H. Kim, Ph.D.

Affiliations: 
2005 University of Michigan, Ann Arbor, Ann Arbor, MI 
Area:
Mechanical Engineering, Aerospace Engineering
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"Chul Kim"

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Margaret S. Wooldridge grad student 2005 University of Michigan
 (Effects of pressure on the mechanisms of soot formation and oxidation in laminar diffusion flames.)
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Publications

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Cheetham P, Al-Taie A, Telikapalli S, et al. (2020) Development of a High-Temperature Superconducting Gas-Insulated Power Cable Ieee Transactions On Applied Superconductivity. 30: 1-7
Stamm T, Cheetham P, Park C, et al. (2020) Novel gases as electrical insulation and a new design for gas-cooled superconducting power cables Ieee Electrical Insulation Magazine. 36: 32-42
Stamm T, Cheetham P, Kim CH, et al. (2020) Superconducting Power Cable Design with Hybrid Cryogenic Media - Gaseous Helium for Cooling and Liquid Nitrogen for Dielectric Insulation Essays in Criticism
Cheetham P, Stamm T, Telikapalli S, et al. (2020) Gas Insulated Medium Voltage Power Distribution Networks Essays in Criticism
Cheetham P, Kim CH, Pamidi S, et al. (2019) Optimization of a superconducting gas-insulated transmission line Ieee Transactions On Dielectrics and Electrical Insulation. 26: 930-938
Al-Taie A, Cheetham P, Satyanarayana S, et al. (2019) Understanding Surface Flashover Strength in Cryogenic Helium Gas for Superconducting Devices Ieee Transactions On Applied Superconductivity. 29: 1-5
Cheetham P, Park C, Satyanarayana S, et al. (2019) Gas-Insulated High Temperature Superconducting Coaxial Dipole for MVDC Power Systems Essays in Criticism. 485-488
Cheetham P, Viquez J, Kim W, et al. (2018) High-Temperature Superconducting Cable Design Based on Individual Insulated Conductors Advances in Materials Science and Engineering. 2018: 1-10
Laan DCvd, Weiss JD, Kim CH, et al. (2018) Development of CORC® cables for helium gas cooled power transmission and fault current limiting applications Superconductor Science and Technology. 31: 85011
Suttell NG, Vargas JVC, Ordonez JC, et al. (2018) Modeling and optimization of gaseous helium (GHe) cooled high temperature superconducting (HTS) DC cables for high power density transmission Applied Thermal Engineering. 143: 922-934
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