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International Communications in Heat and Mass Transfer (ICHMT)

Publisher :

Google Scholar

Scopus Profile
Peer reviewed only
Scopus Profile
Open Access
  • THERMODYNAMICS
  • MECHANICS
e-ISSN :

1879-0178

Issue Frequency :

Bi-Monthly

Impact Factor :

6.4

p-ISSN :

0735-1933

Est. Year :

1983

Mobile :

4401865844640

Country :

United Kingdom

Language :

English

APC :

YES

Impact Factor Assignee :

Elsevier Ltd

Email :

directorders@elsevier.com

Journal Descriptions

The International Communications in Heat and Mass Transfer (ICHMT) serves as a worldwide forum promoting the rapid dissemination of transformative, high-impact research in all areas of heat and mass transfer and related processes, technologies, and systems. The ICHMT is read by research workers, engineers, and scientists throughout the world. Three types of manuscripts will be considered for publication in the Journal. These include COMMUNICATIONS, COMMENTS on papers published by the ICHMT, and REVIEWS on important technological topics. Benefits to authors We also provide many author benefits, such as free PDFs, a liberal copyright policy, special discounts on Elsevier publications and much more. Please click here for more information on our author services. Please see our Guide for Authors for information on article submission. If you require any further information or help, please visit our Support Center.


International Communications in Heat and Mass Transfer (ICHMT) is :

International, Peer-Reviewed, Open Access, Refereed, THERMODYNAMICS, MECHANICS , Online or Print, Bi-Monthly Journal

UGC Approved, ISSN Approved: P-ISSN - 0735-1933, E-ISSN - 1879-0178, Established in - 1983, Impact Factor - 6.4

Not Provide Crossref DOI

Not indexed in Scopus, WoS, DOAJ, PubMed, UGC CARE

Publications of ICHMT

Research Article
  • dott image Dhananjay Kumar Srivastava
  • dott image October, 2011

Time resolved numerical modeling of oil jet cooling of a medium duty diesel engine piston

In medium to heavy duty diesel engines, ever increasing power densities are threatening piston's structural integrity at high engine loads and speeds. This investigation presents the computa...

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