Search Results - "Buschmann, M. H."

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  1. 1

    Analysis of flow in a cone-and-plate apparatus with respect to spatial and temporal effects on endothelial cells by Buschmann, M. H., Dieterich, P., Adams, N. A., Schnittler, H.-J.

    Published in Biotechnology and bioengineering (05-03-2005)
    “…Endothelial cells, covering the inner surface of vessels and the heart, are permanently exposed to fluid flow, which affects the endothelial structure and the…”
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    Journal Article
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  4. 4

    Modelling mixed convection in laminar pipe flow by Buschmann, M.H., Colla, L., Fedele, L.

    “…Laminar pipe flow is becoming an important experimental test case for new high efficiency heat carriers like nano- and ferrofluids. Here, a new scaling…”
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  5. 5

    Impact of particles on thermal performance of closed-loop oscillating heat pipe by Riehl, R.R., Buschmann, M.H.

    Published in Applied thermal engineering (05-01-2024)
    “…[Display omitted] •In-situ evaporator coating improves thermal performance of oscillating heat pipes.•Evaporator coating suppresses start-up and allows…”
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  6. 6

    Drying silica-nanofluid droplets by Mulka, R., Kujawska, A., Zajączkowski, B., Mancin, S., Buschmann, M.H.

    “…Exsiccation of suspension droplets generates characteristic ring-like stains. The homogeneity of such coffee rings is disturbed by subsequent cracking. Placing…”
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  7. 7

    Geyser boiling in a thermosyphon with nanofluids and surfactant solution by Kujawska, A., Zajaczkowski, B., Wilde, L.M., Buschmann, M.H.

    Published in International journal of thermal sciences (01-05-2019)
    “…Experiments with a two-phase closed thermosyphon are carried out with the aim of investigating the influence of different working fluids on geysering. The…”
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    Journal Article
  8. 8

    Laminar mixed convection of TiO2–water nanofluid in horizontal uniformly heated pipe flow by Colla, L., Fedele, L., Buschmann, M.H.

    Published in International journal of thermal sciences (01-11-2015)
    “…Nanofluids – suspensions of nanometer-sized particles dispersed in basefluids like water and ethanol – are a new option to increase heat transfer. However,…”
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  9. 9

    Correct interpretation of nanofluid convective heat transfer by Buschmann, M.H., Azizian, R., Kempe, T., Juliá, J.E., Martínez-Cuenca, R., Sundén, B., Wu, Z., Seppälä, A., Ala-Nissila, T.

    Published in International journal of thermal sciences (01-07-2018)
    “…Engineers and scientist have a long tradition in trying to improve the thermophysical properties of convective heat carriers such as water and transformer oil…”
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    Journal Article
  10. 10

    Laminar mixed convection of TiO sub(2)-water nanofluid in horizontal uniformly heated pipe flow by Colla, L, Fedele, L, Buschmann, M H

    Published in International journal of thermal sciences (01-11-2015)
    “…Nanofluids - suspensions of nanometer-sized particles dispersed in basefluids like water and ethanol - are a new option to increase heat transfer. However,…”
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    Journal Article
  11. 11

    Numerical analysis of performance uncertainty of heat exchangers operated with nanofluids by Kamenik, B., Elcioglu, E. Begum, Turgut, A., Mondragón, R., Hernandez Lopez, L., Vallejo, J.P., Lugo, L., Buschmann, M.H., Ravnik, J.

    Published in International Journal of Thermofluids (01-05-2022)
    “…In this paper, we analyse the performance of two types of heat exchangers with nanofluid as the working fluid in turbulent flow regime (Re≈ 4,000–180,000)…”
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  12. 12

    Novel injectable neutral solutions of chitosan form biodegradable gels in situ by CHENITE, A, CHAPUT, C, WANG, D, COMBES, C, BUSCHMANN, M. D, HOEMANN, C. D, LEROUX, J. C, ATKINSON, B. L, BINETTE, F, SELMANI, A

    Published in Biomaterials (01-11-2000)
    “…A novel approach to provide, thermally sensitive neutral solutions based on chitosan/polyol salt combinations is described. These formulations possess a…”
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  13. 13

    Computational model for adaptive fiber-strengthened endothelial cell layers under flow induced shear-stress by Buschmann, M. H., Schnittler, H. J., Adams, N. A.

    “…Endothelial cells, covering the inner surface of human vessels and the heart are permanently exposed to fluid shear stress which strongly affects endothelial…”
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    Journal Article