English

Thermal and hydrodynamic studies for micro-channel cooling for large area silicon sensors in high energy physics experiments

Instrumentation and Detectors 2017-05-31 v3 High Energy Physics - Experiment

Abstract

Micro-channel cooling initially aiming at small-sized high-power integrated circuits is being transferred to the field of high energy physics. Today`s prospects of micro-fabricating silicon opens a door to a more direct cooling of detector modules. The challenge in high energy physics is to save material in the detector construction and to cool large areas. In this paper, we are investigating micro-channel cooling as a candidate for a future cooling system for silicon detectors in a generic research and development approach. The work presented in this paper includes the production and the hydrodynamic and thermal testing of a micro-channel equipped prototype optimized to achieve a homogeneous flow distribution. Furthermore, the device was simulated using finite element methods.

Keywords

Cite

@article{arxiv.1611.05306,
  title  = {Thermal and hydrodynamic studies for micro-channel cooling for large area silicon sensors in high energy physics experiments},
  author = {Nils Flaschel and Dario Ariza and Sergio Diez and Marta Gerboles and Ingrid-Maria Gregor and Xavier Jorda and Roser Mas and David Quirion and Kerstin Tackmann and Miguel Ullan},
  journal= {arXiv preprint arXiv:1611.05306},
  year   = {2017}
}

Comments

10 pages, submitted to NIMA (accepted)