Search Results - "Arimilli, Rao V"

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  1. 1

    Counter cross-flow evaporator geometries for supercritical organic Rankine cycles by Nejad, Ali H., Ekici, Kivanc, Sabau, Adrian S., Bejan, Adrian, Arimilli, Rao V.

    “…•A new Constructal law-based design is presented for cross-flow heat exchangers.•Compared to cross-flow design, the thermal performance is increased as much as…”
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    Journal Article
  2. 2

    A new three-dimensional heat flux–temperature integral relationship for half-space transient diffusion by Frankel, Jay I., Keyhani, Majid, Arimilli, Rao V.

    Published in Journal of the Franklin Institute (01-11-2010)
    “…This paper derives a new integral relationship between heat flux and temperature in a transient, three-dimensional heat conducting Cartesian half space ( x > 0…”
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    Journal Article
  3. 3

    Inferring convective and radiative heating loads from transient surface temperature measurements in the half-space by Frankel, Jay I, Arimilli, Rao V

    “…The classical, one-dimensional, transient half-space heat conduction problem in an opaque material is revisited in order to highlight several important…”
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    Journal Article
  4. 4

    A new multidimensional integral relationship between heat flux and temperature for direct internal assessment of heat flux by Frankel, Jay I., Keyhani, Majid, Arimilli, Rao V., Wu, Jayne

    “… This paper derives a new integral relationship between heat flux and temperature in a transient, two-dimensional heat conducting half space. A unified…”
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    Journal Article
  5. 5

    Feasibility study of a 55-kW air-cooled automotive inverter by Chinthavali, M., Christopher, J. F., Arimilli, R. V.

    “…The purpose of this study is to determine the thermal feasibility of an air-cooled 55-kW power inverter with SiC devices. Air flow rate, ambient air…”
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    Conference Proceeding
  6. 6

    Design and analysis of a 55-kW air-cooled automotive traction drive inverter by Chinthavali, M., Tawfik, J. A., Arimilli, R. V.

    “…The purpose of this study is to determine the thermal feasibility of an air-cooled 55-kW power inverter with SiC devices. Air flow rate, ambient air…”
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    Conference Proceeding