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Evaluation Of Temperature Gradient In Advanced Automated Directional Solidification Furnace (aadsf) By Numerical Simulation by Andris V. Bune

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1NASA Technical Reports Server (NTRS) 19970021273: Evaluation Of Temperature Gradient In Advanced Automated Directional Solidification Furnace (AADSF) By Numerical Simulation

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A numerical model of heat transfer using combined conduction, radiation and convection in AADSF was used to evaluate temperature gradients in the vicinity of the crystal/melt interface for variety of hot and cold zone set point temperatures specifically for the growth of mercury cadmium telluride (MCT). Reverse usage of hot and cold zones was simulated to aid the choice of proper orientation of crystal/melt interface regarding residual acceleration vector without actual change of furnace location on board the orbiter. It appears that an additional booster heater will be extremely helpful to ensure desired temperature gradient when hot and cold zones are reversed. Further efforts are required to investigate advantages/disadvantages of symmetrical furnace design (i.e. with similar length of hot and cold zones).

“NASA Technical Reports Server (NTRS) 19970021273: Evaluation Of Temperature Gradient In Advanced Automated Directional Solidification Furnace (AADSF) By Numerical Simulation” Metadata:

  • Title: ➤  NASA Technical Reports Server (NTRS) 19970021273: Evaluation Of Temperature Gradient In Advanced Automated Directional Solidification Furnace (AADSF) By Numerical Simulation
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  • Language: English

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The book is available for download in "texts" format, the size of the file-s is: 10.59 Mbs, the file-s for this book were downloaded 49 times, the file-s went public at Thu Oct 13 2016.

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2Evaluation Of Temperature Gradient In Advanced Automated Directional Solidification Furnace (AADSF) By Numerical Simulation

By

A numerical model of heat transfer using combined conduction, radiation and convection in AADSF was used to evaluate temperature gradients in the vicinity of the crystal/melt interface for variety of hot and cold zone set point temperatures specifically for the growth of mercury cadmium telluride (MCT). Reverse usage of hot and cold zones was simulated to aid the choice of proper orientation of crystal/melt interface regarding residual acceleration vector without actual change of furnace location on board the orbiter. It appears that an additional booster heater will be extremely helpful to ensure desired temperature gradient when hot and cold zones are reversed. Further efforts are required to investigate advantages/disadvantages of symmetrical furnace design (i.e. with similar length of hot and cold zones).

“Evaluation Of Temperature Gradient In Advanced Automated Directional Solidification Furnace (AADSF) By Numerical Simulation” Metadata:

  • Title: ➤  Evaluation Of Temperature Gradient In Advanced Automated Directional Solidification Furnace (AADSF) By Numerical Simulation
  • Authors:
  • Language: English

“Evaluation Of Temperature Gradient In Advanced Automated Directional Solidification Furnace (AADSF) By Numerical Simulation” Subjects and Themes:

Edition Identifiers:

Downloads Information:

The book is available for download in "texts" format, the size of the file-s is: 2.26 Mbs, the file-s for this book were downloaded 300 times, the file-s went public at Mon May 23 2011.

Available formats:
Abbyy GZ - Animated GIF - Archive BitTorrent - DjVu - DjVuTXT - Djvu XML - Item Tile - Metadata - Scandata - Single Page Processed JP2 ZIP - Text PDF -

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