.
Engineers Edge. Retrieved 20 April 2009.
13. Incropera, Frank P.; et al. (2012). Fundamentals of heat and mass transfer (7th ed.). Wiley. p. 603.
ISBN
978-0-470-64615-1
.
14.
"Radiation" (https://www.thermalfluidscentral.org/encyclopedia/index.php/Radiation)
. Thermal-
FluidsPedia. Thermal Fluids Central.
15. Howell, John R.; Menguc, M.P.; Siegel, Robert (2015). Thermal Radiation Heat Transfer. Taylor and
Francis.
1 . Mojiri, A (2013). "Spectral beam splitting for efficient conversion of solar energy—A review".
Renewable and Sustainable Energy Reviews. 28: 654–663.
doi
:
10.1016/j.rser.2013.08.026 (https://d
oi.org/10.1016%2Fj.rser.2013.08.026)
.
17. Taylor, Robert A.; Phelan, Patrick E.; Otanicar, Todd P.; Walker, Chad A.; Nguyen, Monica; Trimble,
Steven; Prasher, Ravi (March 2011).
"Applicability of nanofluids in high flux solar collectors" (http://d
igitalcommons.lmu.edu/cgi/viewcontent.cgi?article=1019&context=mech_fac)
. Journal of
Renewable and Sustainable Energy. 3 (2): 023104.
doi
:
10.1063/1.3571565 (https://doi.org/10.106
3%2F1.3571565)
.
1 .
"Solar thermal power plants - U.S. Energy Information Administration (EIA)" (https://www.eia.gov/en
ergyexplained/solar/solar-thermal-power-plants.php)
. www.eia.gov. Retrieved 28 January 2022.
19. Megan Crouse:
This Gigantic Solar Furnace Can Melt Steel (https://www.manufacturing.net/news/2
016/07/gigantic-solar-furnace-can-melt-steel)
manufacturing.net, 28 July 2016, retrieved 14 April
2019.
20. See
Flashes in the Sky: Earth's Gamma-Ray Bursts Triggered by Lightning (http://www.nasa.gov/visi
on/universe/solarsystem/rhessi_tgf.html)
21. David.E. Goldberg (1988). 3,000 Solved Problems in Chemistry (1st ed.). McGraw-Hill. Section 17.43,
page 321.
ISBN
0-07-023684-4
.
22. Louis Theodore, R. Ryan Dupont and Kumar Ganesan (Editors) (1999). Pollution Prevention: The
Waste Management Approach to the 21st Century. CRC Press. Section 27, page 15.
ISBN
1-56670-
495-2
.
{{
cite book
}}
:
|author=
has generic name (
help
)
23. Tro, Nivaldo (2008). Chemistry: A Molecular Approach. Upper Saddle River, New Jersey: Prentice
Hall. p. 479. "When a substance condenses from a gas to a liquid, the same amount of heat is
involved, but the heat is emitted rather than absorbed."
24. C. Michael Hogan (2011) Sulfur, Encyclopedia of Earth, eds. A. Jorgensen and C. J. Cleveland,
National Council for Science and the environment, Washington DC
25. Wendl, M. C. (2012).
Theoretical Foundations of Conduction and Convection Heat Transfer (http://w
endl.weebly.com/textbook.html)
. Wendl Foundation.
2 . Peng, Z.; Doroodchi, E.; Moghtaderi, B. (2020). "Heat transfer modelling in Discrete Element Method
(DEM)-based simulations of thermal processes: Theory and model development". Progress in Energy
and Combustion Science. 79, 100847: 100847.
doi
:
10.1016/j.pecs.2020.100847 (https://doi.org/10.
1016%2Fj.pecs.2020.100847)
.
S2CID
218967044 (https://api.semanticscholar.org/CorpusID:2189
67044)
.
27.
"How to simplify for small Biot numbers" (http://www.pirobloc.com/en/blog-en/how-to-simplify-for-s
mall-biot-numbers)
. 9 November 2016. Retrieved 21 December 2016.
2 . Bonan, Gordon (2019). Climate Change and Terrestrial Ecosystem Modeling. Cambridge University
Press. p. 2.
ISBN
9781107043787
.
29. Fundamentals of Classical Thermodynamics, 3rd ed. p. 159, (1985) by G. J. Van Wylen and R. E.
Sonntag: "A heat engine may be defined as a device that operates in a thermodynamic cycle and
does a certain amount of net positive work as a result of heat transfer from a high-temperature
body and to a low-temperature body. Often the term heat engine is used in a broader sense to
include all devices that produce work, either through heat transfer or combustion, even though the
device does not operate in a thermodynamic cycle. The internal-combustion engine and the gas
turbine are examples of such devices, and calling these heat engines is an acceptable use of the
term."
30. Mechanical efficiency of heat engines, p. 1 (2007) by James R. Senf: "Heat engines are made to
provide mechanical energy from thermal energy."
31.
"What is a Heat Exchanger?" (https://www.lytron.com/Tools-and-Technical-Reference/Application-No
tes/What-is-a-Heat-Exchanger)
. Lytron Total Thermal Solutions. Retrieved 12 December 2018.
32.
"EnergySavers: Tips on Saving Money & Energy at Home" (http://www.energysavers.gov/pdfs/energy
_savers.pdf)
(PDF)
. U.S. Department of Energy. Retrieved 2 March 2012.
33.
"Greenhouse gases" (https://public.wmo.int/en/our-mandate/focus-areas/environment/greenhous
e%20gases)
. World Meteorological Organization. 30 August 2017. Retrieved 10 January 2022.
34. Hartman, Carl; Bibb, Lewis. (1913). "The Human Body and Its Enemies". World Book Co., p. 232.
35. Cengel, Yunus A. and Ghajar, Afshin J. "Heat and Mass Transfer: Fundamentals and Applications",
McGraw-Hill, 4th Edition, 2010.
3 . Tao, Xiaoming. "Smart fibres, fabrics, and clothing", Woodhead Publishing, 2001
37. Wilmore, Jack H.; Costill, David L.; Kenney, Larry (2008). Physiology of Sport and Exercise (6th ed.).
Human Kinetics. p. 256.
ISBN
9781450477673
.
3 . The global infrared energy budget of the thermosphere from 1947 to 2016 and implications for
solar variability Martin G. Mlynczak Linda A. Hunt James M. Russell III B. Thomas Marshall
Christopher J. Mertens R. Earl Thompson
https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2016GL070965
Tashqi havolalar
Do'stlaringiz bilan baham: |