Results 261 to 270 of about 5,147,890 (313)
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International Journal of Heat and Mass Transfer, 1995
It is known that heat transfer between two liquid-reservoirs maintained at different temperatures and connected to each other by a capillary bundle is markedly enhanced by oscillatory flow in the bundle. In this paper, first, the effects of physical properties of the working liquid on the enhanced heat flow rate are investigated.
Shigefumi Nishio +2 more
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It is known that heat transfer between two liquid-reservoirs maintained at different temperatures and connected to each other by a capillary bundle is markedly enhanced by oscillatory flow in the bundle. In this paper, first, the effects of physical properties of the working liquid on the enhanced heat flow rate are investigated.
Shigefumi Nishio +2 more
openaire +1 more source
AIP Conference Proceedings, 2020
The lattice thermal conductivity of silicon nanowires is reported on the basis of modified Callaway model. In the present formulation, the relaxation times of various participating processes have been evaluated in terms of lifetime (linewidths) via a comprehensive Hamiltonian which includes the contribution due to electrons, phonons, impurities ...
Richa Saini, Ankita R. Chauhan
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The lattice thermal conductivity of silicon nanowires is reported on the basis of modified Callaway model. In the present formulation, the relaxation times of various participating processes have been evaluated in terms of lifetime (linewidths) via a comprehensive Hamiltonian which includes the contribution due to electrons, phonons, impurities ...
Richa Saini, Ankita R. Chauhan
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Decoupling charge and heat transport
Science, 2017Solid-State Physics In metals, electrons carry both charge and heat. As a consequence, electrical conductivity and the electronic contribution to the thermal conductivity are typically proportional to each other. Lee et al.
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1996
In this chapter, we shall take a closer look at the transport of entropy. Simple aspects will be introduced that go beyond what we already studied in Chapter 4 (Section 4.6). This extends the treatment of thermal processes into the realm of phenomena which are missing from the theory of the thermodynamics of ideal fluids (Chapter 5).
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In this chapter, we shall take a closer look at the transport of entropy. Simple aspects will be introduced that go beyond what we already studied in Chapter 4 (Section 4.6). This extends the treatment of thermal processes into the realm of phenomena which are missing from the theory of the thermodynamics of ideal fluids (Chapter 5).
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1990
In this chapter, our primary objective is to construct models of heat transport in porous media. However, since advection (with a fluid moving through the void space), is one of the transport modes, any heat transport model must treat, simultaneously, also the transport of fluid(s) mass.
Jacob Bear, Yehuda Bachmat
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In this chapter, our primary objective is to construct models of heat transport in porous media. However, since advection (with a fluid moving through the void space), is one of the transport modes, any heat transport model must treat, simultaneously, also the transport of fluid(s) mass.
Jacob Bear, Yehuda Bachmat
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Journal of Thermal Analysis and Calorimetry, 2020
B. Mahanthesh +3 more
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B. Mahanthesh +3 more
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Heat of transport and heat of solution
Scripta Metallurgica, 1979J. Mathuni, R. Kirchheim, E. Fromm
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Increased ocean heat transport into the Nordic Seas and Arctic Ocean over the period 1993–2016
Nature Climate Change, 2020Takamasa Tsubouchi +7 more
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Enhanced upward heat transport at deep submesoscale ocean fronts
Nature Geoscience, 2019L. Siegelman +6 more
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