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Information Journal Paper

Title

SECOND LAW ANALYSIS OF NANOFUID LAMINAR FLOW IN A COUNTER-FLOW HEAT EXCHANGER

Pages

  47-57

Abstract

 In this paper the results of numerical simulations for heat transfer of a NANOFLUID flow inside a counter flow heat exchanger is presented. Effects of addition of the Al2O3 nanoparticles on the entropy generation of the system are investigated. Single fluid model is used for simulation of the NANOFLUID flow. Analytical and experimental formulations are used for density, specific heat, viscosity and conductivity of NANOFLUID. Finite volume method (FVM) has been used for numrerical simulation and SIMPLE algorithm is applied for pressure velocity coupling. It is found that adding nano particles in annulus, causes a little incerement in entropy generation which can be overlooked. On the other hand, the increasing of volume fraction of nanoparticles leads to ascend heat transfer coefficient (U ) and total heat transfer (Q) significantly, and it results in decreased entropy number (Ns).

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  • Cite

    APA: Copy

    KAMANI, KAMYAR, & RAFEE, ROHOLLAH. (2015). SECOND LAW ANALYSIS OF NANOFUID LAMINAR FLOW IN A COUNTER-FLOW HEAT EXCHANGER. JOURNAL OF MODELING IN ENGINEERING, 13(41), 47-57. SID. https://sid.ir/paper/173836/en

    Vancouver: Copy

    KAMANI KAMYAR, RAFEE ROHOLLAH. SECOND LAW ANALYSIS OF NANOFUID LAMINAR FLOW IN A COUNTER-FLOW HEAT EXCHANGER. JOURNAL OF MODELING IN ENGINEERING[Internet]. 2015;13(41):47-57. Available from: https://sid.ir/paper/173836/en

    IEEE: Copy

    KAMYAR KAMANI, and ROHOLLAH RAFEE, “SECOND LAW ANALYSIS OF NANOFUID LAMINAR FLOW IN A COUNTER-FLOW HEAT EXCHANGER,” JOURNAL OF MODELING IN ENGINEERING, vol. 13, no. 41, pp. 47–57, 2015, [Online]. Available: https://sid.ir/paper/173836/en

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