Michael F. Modest

German-American mechanical engineer From Wikipedia, the free encyclopedia

Michael F. Modest (born 1944) is a German-born American mechanical engineer known for his contributions to radiative heat transfer and thermal sciences. His work has advanced the understanding of radiation in high-temperature and combustion systems.[1]

Born1944 (age 8182)
Berlin, Germany
AlmamaterTechnical University of Munich
University of California, Berkeley
KnownforRadiative heat transfer
AwardsMax Jakob Memorial Award (2021)
ASME Honorary Member (2017)
AIAA Thermophysics Award (2008)
Humboldt Research Award (2007)
Quick facts Born, Alma mater ...
Michael F. Modest
Born1944 (age 8182)
Berlin, Germany
Alma materTechnical University of Munich
University of California, Berkeley
Known forRadiative heat transfer
AwardsMax Jakob Memorial Award (2021)
ASME Honorary Member (2017)
AIAA Thermophysics Award (2008)
Humboldt Research Award (2007)
Scientific career
FieldsMechanical engineering
InstitutionsPennsylvania State University
University of California, Merced
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He is Distinguished Professor Emeritus of Mechanical Engineering at the University of California, Merced and previously served as Distinguished Professor at Pennsylvania State University.[1]

Education

Modest received a Dipl.-Ing. degree in mechanical engineering from the Technical University of Munich in 1968 and completed his M.S. and Ph.D. at the University of California, Berkeley in 1972.[2]

Career

Following a postdoctoral appointment at NASA Johnson Space Center, Modest held academic positions at San Francisco State University, Rensselaer Polytechnic Institute, and the University of Southern California.[citation needed]

In 1987, he joined Pennsylvania State University, where he served for more than two decades and was named Distinguished Professor of Mechanical Engineering. In 2009, he joined the University of California, Merced as the Shaffer and George Distinguished Professor of Engineering, later receiving emeritus status.[2]

Research

Modest’s research focuses on radiative heat transfer, combustion radiation, and laser–material interactions. His work includes experimental measurement of radiative properties of materials and development of numerical methods, including Monte Carlo techniques, for solving radiative transfer problems.[2]

He has made contributions to the modeling of turbulence–radiation interactions in combustion systems and high-temperature gases.[1]

Modest is the author of the textbook Radiative Heat Transfer, first published in 1993 with subsequent editions in 2003, 2013, and 2021, and widely used in graduate engineering education. He is also the author of Introduction to Radiative Heat Transfer (2025), a text covering the fundamentals of thermal radiation and its applications.[3]

According to his faculty profile, he has authored or co-authored more than 350 refereed journal publications.[2]

Honors and awards

Modest has received several major awards in heat transfer and mechanical engineering, including:

  • Max Jakob Memorial Award (2021), awarded jointly by the American Society of Mechanical Engineers and the American Institute of Chemical Engineers for outstanding contributions to heat transfer[4]
  • Honorary Member of the American Society of Mechanical Engineers (2017), one of the highest distinctions of the society[1]
  • AIAA Thermophysics Award (2008), awarded by the American Institute of Aeronautics and Astronautics for contributions to thermophysics, including thermal radiation and laser processing[5]
  • Humboldt Research Award (2007)[2]
  • ASME Heat Transfer Memorial Award (2005)[2]

He is also a Fellow of the American Society of Mechanical Engineers.[2]

His contributions to the field have been recognized through dedicated symposia and special journal issues in his honor.[2]

Publications

  • Modest, M. F. Radiative Heat Transfer (1993; subsequent editions 2003, 2013, 2021)
  • Modest, M. F. Introduction to Radiative Heat Transfer. Academic Press, 2025. ISBN 978-0443266485
  • Modest, M. F.; Haworth, D. C. Radiative Heat Transfer in Turbulent Combustion Systems. Springer, 2015

References

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