Thermal energy balance model of a fiber-optic cable; data from a shallow urban pond, Delft
Datacite citation style:
Hilgersom, Koen; Berghuijs, W. R. (Wouter); Solcerova, Anna; van Emmerik, T.H.M. (Tim) (2015): Thermal energy balance model of a fiber-optic cable; data from a shallow urban pond, Delft. Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/uuid:a946eca5-0901-4a09-a95a-0c028a6b1853
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11 July 2014 - 24 July 2014
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Model results for the heating of a fiber-optic cable, to study the heating effect of the PVC tube around which the cable is wrapped to a coil.
Input data:
- incoming short-wave radiation;
- air temperatures (to compute outgoing long-wave radiation and direct heat transfer to the air);
- wind speed (to compute heat transport by the hot wire anemometer principle).
Output data:
- temperatures of the glass fiber inside the cable.
Glass fiber temperatures are modeled for a cable that is adhered to a PVC tube and a cable in free air. The differences between both temperatures are compared to actual measurements of the glass fiber temperatures obtained by fiber-optic Distributed Temperature Sensing.
history
- 2015-12-22 first online, published, posted
publisher
TU Delft
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organizations
TU Delft, Faculty of Civil Engineering and Geosciences, Dept. of Water Management
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