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  • Heat Dissipation from the Power Cable in the Casing Pipe

    Publication

    - IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS - Year 2024

    The current carrying capacity of a power cable determines its ability to carry a specific current and is related to the efficiency of dissipation of heat generated in the cable laid in a specific environment. The studies were conducted in order to determine how the characteristics of the medium around the cable affected its temperature, and thus the ability of the cable to transmit electricity. The experimentation in the lab and...

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  • Experiment-Based Study of Heat Dissipation from the Power Cable in a Casing Pipe

    Publication

    - ENERGIES - Year 2022

    The paper deals with the important challenges in terms of electricity transmission by means of underground cable lines. The power cable’s performance is characterized by an ampacity that represents its maximum electric current-carrying capacity. The ampacity of power cables depends on their ability to diffuse the heat generated by the current flow into the environment. In the performed research, the analysis of the efficiency of...

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  • The Laboratory Stand for the Evaluation of Heat Dissipation from the Power Cable in a Casing Pipe

    Publication

    - Year 2022

    The current carrying capacity of a power cable determines its efficiency, which depends on its capability to dissipate heat produced inside the cable, as a result of current flow, into the surrounding. The studies were conducted to determine how the characteristics of the medium around the cable affected its temperature and, as a result, its ability to transport electricity. The experimentation in the lab and real measurements...

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  • A simplified energy dissipation based model of heat transfer for subcooled flow boiling

    Publication

    In the paper a model is presented based on energetic considerations for subcooled flow boiling heat transfer. The model is the extension of authors own model developed earlier for saturated flow boiling and condensation. In the former version of the model we used the heat transfer coefficient for the liquid single-phase as a reference level, due to the lack of the appropriate model for heat transfer coefficient for the subcooled...

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  • A simplified energy dissipation based model of heat transfer for post-dryout flow boiling

    Publication

    model for post dryout mist flow heat transfer is presented based on considerations of energy dissipation in the flow. The model is an extension of authors own model developed earlier for saturated and subcooled flow boiling. In the former version of the model the heat transfer coefficient for the liquid singlephase convection as a reference was used, due to the lack of the appropriate model for heat transfer coefficient for the...

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