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ITER task T48 (1994); low-inventory cryogenic distillation tests

Abstract

Previous work at Ontario Hydro Technologies (OHT) had shown that small cryogenic columns could be stably controlled and designed to much lower inventories than had been previously thought possible. Among the results were measurements of Height-of-Equivalent-Theoretical-Plate (HETP) versus holdup for Heli-Pak A and B in columns up to 20 mm diameter. ITER cryogenic distillation column designs suggest that the final high-tritium columns could be 30-70 mm diameter. The objective of this ITER task was to design and construct a column section for demonstration of scale-up of low inventory cryogenic distillation. The experiments were to be carried out in an upgraded Cryogenics Distillation Laboratory at OHT, in the facility used for previous low-inventory column tests. The ITER scaled-up test system as the following characteristics: 55 W condenser capacity; 30 mm diameter column loaded with Helipak B; 1500 mm packed height. The first task was to design and build the scaled-up test facility. In order to reduce costs, it was necessary to use existing 30-35 W helium refrigerators. Therefore, to provide 60-W duty to the scaled-up column, the two refrigerators had to be well coupled thermally, but not mechanically, since the refrigerator cold heads have very thin shells. The solution was to  More>>
Authors:
Woodall, K; Robins, J; Bellamy, D; [1]  Sood, S; Fong, C [2] 
  1. Ontario Hydro, Toronto, ON (Canada). Research Div.
  2. Ontario Hydro, Toronto, ON (Canada)
Publication Date:
Jan 01, 1995
Product Type:
Technical Report
Report Number:
CFFTP-G-9504
Reference Number:
SCA: 700460; 070100; PA: AIX-27:018289; EDB-96:042878; NTS-96:014879; SN: 96001547399
Resource Relation:
Other Information: PBD: Jan 1995
Subject:
70 PLASMA PHYSICS AND FUSION; 07 ISOTOPE AND RADIATION SOURCE TECHNOLOGY; DISTILLATION EQUIPMENT; CONSTRUCTION; DESIGN; TRITIUM; COLUMN PACKING; CRYOGENICS; DISTILLATION; F CODES; HELIUM; HELIUM DILUTION REFRIGERATORS; INTERAGENCY COOPERATION; ITER TOKAMAK; TEST FACILITIES
OSTI ID:
186016
Research Organizations:
Canadian Fusion Fuels Technology Project, Mississauga, ON (Canada)
Country of Origin:
Canada
Language:
English
Other Identifying Numbers:
Other: ON: DE96615576; TRN: CA9500430018289
Availability:
INIS; OSTI as DE96615576
Submitting Site:
INIS
Size:
22 p.
Announcement Date:
Feb 28, 1996

Citation Formats

Woodall, K, Robins, J, Bellamy, D, Sood, S, and Fong, C. ITER task T48 (1994); low-inventory cryogenic distillation tests. Canada: N. p., 1995. Web.
Woodall, K, Robins, J, Bellamy, D, Sood, S, & Fong, C. ITER task T48 (1994); low-inventory cryogenic distillation tests. Canada.
Woodall, K, Robins, J, Bellamy, D, Sood, S, and Fong, C. 1995. "ITER task T48 (1994); low-inventory cryogenic distillation tests." Canada.
@misc{etde_186016,
title = {ITER task T48 (1994); low-inventory cryogenic distillation tests}
author = {Woodall, K, Robins, J, Bellamy, D, Sood, S, and Fong, C}
abstractNote = {Previous work at Ontario Hydro Technologies (OHT) had shown that small cryogenic columns could be stably controlled and designed to much lower inventories than had been previously thought possible. Among the results were measurements of Height-of-Equivalent-Theoretical-Plate (HETP) versus holdup for Heli-Pak A and B in columns up to 20 mm diameter. ITER cryogenic distillation column designs suggest that the final high-tritium columns could be 30-70 mm diameter. The objective of this ITER task was to design and construct a column section for demonstration of scale-up of low inventory cryogenic distillation. The experiments were to be carried out in an upgraded Cryogenics Distillation Laboratory at OHT, in the facility used for previous low-inventory column tests. The ITER scaled-up test system as the following characteristics: 55 W condenser capacity; 30 mm diameter column loaded with Helipak B; 1500 mm packed height. The first task was to design and build the scaled-up test facility. In order to reduce costs, it was necessary to use existing 30-35 W helium refrigerators. Therefore, to provide 60-W duty to the scaled-up column, the two refrigerators had to be well coupled thermally, but not mechanically, since the refrigerator cold heads have very thin shells. The solution was to attach the column firmly to one cold head and indirectly to an adjacent cold head through flexible copper braid. Several iterations were required to obtain the desired good heat transfer with flexible mechanical connection. This facility is now operational and ready to begin measurements on the 30 mm column. Also during 1994, the Princeton Tritium Processing System (TPS) was installed and commissioned. The results from this experience are relevant to the ITER distillation system. 2 refs., 10 figs.}
place = {Canada}
year = {1995}
month = {Jan}
}