Search Results - "Peterson, G.P."

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  1. 1

    A comprehensive investigation of natural convection inside a partially differentially heated cavity with a thin fin using two-set lattice Boltzmann distribution functions by Torabi, Mohsen, Keyhani, Amirreza, Peterson, G.P.

    “…Average Nusselt number with different fin positions for Hh=0.2 and Hc=0.2. [Display omitted] •Heat transfer is analyzed for partially differentially heated…”
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  2. 2

    Hydrogen production by methanol steam reforming in a disc microreactor with tree-shaped flow architectures by Yao, Feng, Chen, Yongping, Peterson, G.P.

    “…A disc microreactor with constructal tree-shaped flow architecture is introduced for methanol steam reforming. For this design, a three-dimensional model is…”
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  3. 3

    Experimental study of the thermal performance of a neon cryogenic loop heat pipe by Guo, Yuandong, Lin, Guiping, Bai, Lizhan, Miao, Jianyin, Peterson, G.P.

    “…•A neon CLHP integrated with a G-M cryocooler has been developed and studied.•The CLHP can realize the supercritical startup with an auxiliary heat load of…”
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  4. 4

    Comparison and optimization of single-phase liquid cooling devices for the heat dissipation of high-power LED arrays by Ramos-Alvarado, Bladimir, Feng, Bo, Peterson, G.P.

    Published in Applied thermal engineering (25-09-2013)
    “…The thermal and hydrodynamic performance of liquid active cooling devices was investigated for possible applications in the thermal management of high-power…”
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    An experimental investigation of the CO2 adsorption performance of graphene oxide forms by Shrivastava, Shashank, Thomas, Shijo, Sobhan, C.B., Peterson, G.P.

    Published in International journal of refrigeration (01-12-2018)
    “…•Quantifies CO2 adsorption capacity of nitrogen doped graphene oxide.•Adsoprtion characteristics estimated using volumetric method with 5% uncertainty.•Higher…”
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  7. 7

    Comparison study of liquid replenishing impacts on critical heat flux and heat transfer coefficient of nucleate pool boiling on multiscale modulated porous structures by Li, Calvin H., Li, T., Hodgins, Paul, Hunter, Chad N., Voevodin, Andrey A., Jones, John G., Peterson, G.P.

    “…The critical heat flux (CHF) and heat transfer coefficient of de-ionized (DI) water pool boiling have been experimentally studied on a plain surface, one…”
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  8. 8

    Ti3C2Tx MXene nanofluids with enhanced thermal conductivity by Mao, Mingyang, Lou, Ding, Wang, Danling, Younes, Hammad, Hong, Haiping, Chen, Hang, Peterson, G.P.

    “…Recent advances in nanotechnology have led researchers to investigate various approaches to the development of nanofluids with enhanced thermal conductivities…”
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  9. 9

    Functional polymer–polymer/carbon nanotube bi-component fibers by Chien, An-Ting, Gulgunje, Prabhakar V., Chae, Han Gi, Joshi, Aniruddha S., Moon, Jaeyun, Feng, Bo, Peterson, G.P., Kumar, Satish

    Published in Polymer (Guilford) (18-10-2013)
    “…Bi-component fibers typically combine multiple functions that arise from at least two distinct components. As a result, these fibers can incorporate carbon…”
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  10. 10

    A spatio-temporal cluster analysis of structurally deficient bridges in the contiguous USA by Amin, R.W., Kocak, S., Sevil, H.E., Peterson, G.P., Hamilton, J.T., Rivera, B., Barraco, T.

    Published in Developments in the built environment (01-11-2020)
    “…The disease surveillance software SaTScan™ is used to identify spatial and space-time clusters of counties with unusually high counts or rates of SD bridges…”
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  11. 11

    Convective heat transfer and flow friction for water flow in microchannel structures by Peng, X.F., Peterson, G.P.

    “…The single-phase forced convective heat transfer and flow characteristics of water in microchannel structures/plates with small rectangular channels having…”
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  12. 12

    Dynamic characteristics of transient boiling on a square platinum microheater under millisecond pulsed heating by Li, J., Peterson, G.P., Cheng, P.

    “…A series of experimental investigations of boiling incipience and bubble dynamics of water under pulsed heating conditions for various pulse durations ranging…”
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  13. 13

    Numerical simulation for steady annular condensation flow in triangular microchannels by Chen, Yongping, Wu, Jiafeng, Shi, Mingheng, Peterson, G.P.

    “…A steady one-dimensional model for annular condensation flow in triangular microchannels is developed. The curvature radius distribution of the condensate…”
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    Reexamination of the Statistical Derivations of Fourier's Law and Cattaneo's Equation by Zhang, Z.M., Bright, T.J., Peterson, G.P.

    “…The derivation of Fourier's law from the Boltzmann transport equation (BTE) under the assumptions: (1) the relaxation time approximation with a…”
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    Challenges and progress on the modelling of entropy generation in porous media: A review by Torabi, Mohsen, Karimi, Nader, Peterson, G.P., Yee, Shannon

    “…•Recent developments of the second law investigations in porous media have been reviewed.•Effects of various parameters on the entropy generation in porous…”
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  18. 18

    Polymer nanocomposites with improved mechanical and thermal properties by magnetically aligned carbon nanotubes by Liu, Mingrui, Younes, Hammad, Hong, Haiping, Peterson, G.P.

    Published in Polymer (Guilford) (12-03-2019)
    “…A procedure to successfully tether iron oxide nanoparticles to Single Wall Carbon Nanotubes (SWNTs) in a water solution containing a sodium…”
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  19. 19

    Nanofluids: Key parameters to enhance thermal conductivity and its applications by Younes, Hammad, Mao, Mingyang, Sohel Murshed, S.M., Lou, Ding, Hong, Haiping, Peterson, G.P.

    Published in Applied thermal engineering (05-05-2022)
    “…•The number of commercialized applications of nanofluids is somewhat limited.•Stability of fluids limits commercialization efforts.•There is a need for an…”
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  20. 20

    Effects of velocity slip and temperature jump on the heat transfer and entropy generation in micro porous channels under magnetic field by Torabi, Mohsen, Peterson, G.P.

    “…•Heat transfer and entropy generation in a porous microchannel are investigated.•Lower and upper walls’ thicknesses are included into the analyses.•Velocity…”
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