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Kr. Llaka Erc.:n Irradiated F 21s 3runch Divisien of Haterials Licensing U. S. Atoc.ic Ecery Cc==issics tischington, D.C.
20545
 
==Dear'31ake:==
The enclosed d::s, including 1) a r.sterial' p;cperties tabic,
: 2) a physical r.cdel of the contnicer with neda lecatic=s,
: 3) the 'results of a cocat'-up analysis, cad 4) a stater::ent explaining the choice of the radini directics for the hect analynis, era cubr_itted in cecordance with the t,elecon botvenn Pc srs. Ocn Bre.r.
Walt Kich and yes;:el::.
If additions 1 d:ta or details cre requirdd, please 1e: =e, know. '
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Walter H. Y.ing Administ ster-Licensins.,,
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0-3=eral Elcetric Shielded Container - Model 100, liuc.ber 104 Cash Te=paraturo cosat-S after Fire Tran=isnt Using the tecporsture distribution at the end of the fi: 2 f = tbc THT fire transient run, the 104 cash ves allowed to equilibrato for forty =inutes, c=ing a, sin the IHT cocputer code. The resultant temperaturas in various parts of the cask versus tir.s are shcun in rigures 1 and 2.
The significant arre=pcion.2 and app cxi=stions are:
1.
Ambient (sink) temperature.
13 0"3 2.
Effective sink emissivity.
O.9 3.
Fire shield surface e=issivity, 0.8 and constant with temperature.
4.
E=issivities of ochar surfaces, 0.8 and ccustent with te=perst= n.
5.
Inti= ate cont:cti between tha lead shisiding and the stainless steel cask shell.
h 6.
Negligible beat transfer by conduction th cugh the 9
pipes used as spacers betveen the cash and the first g
shield and betueen the two shields.
9
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7.
N2;11gibic heat transfer by convection betvenn the evo shields and between the first shield a:d the cack.
C.
Iuterani heat lond of 400 vstts with tecperneure dis::ibutien as calculcted by TJT co_puter codc at the and of the 30 cicuts fire.
Conditicn: 3, 4 and 5 are not conservatice for the coast-up, but th::a conditions-vere imposed and vera con =crvative for the firo transient, since the tc=peraturen' cttsined at the end of the fi:e vould have been consider blf ic4:er with Icuer c=iscivities. Also, naturni eenvectien f rm the cutside fire shield was not ci;cwed but would in fact ccen: to sc=e ext:nt, and is cc.isc:vative.
In c dcr to determine the tacperature distribution in the 10L'esci under nor.eb t :ncycrt ecoditions, a test was run using a CsGGO ccurce. The c.w h vaa. -.
.i instru=ented with 5 chremel-nlur.el stainle:a steci cisd ther.:ecuplos 2.ich dare.
taped to and sprung assinst the surfaces to ha ces:ured.
: t. sixth thermoccepis was used to cessura :=Lient air t.:npersters. A 25.cc^. cs.
~~
Co-60 source was piscad in the cash envity with a lead liner, 4:d thi syzt.:m ' '
uss allowed to equilibrac= for approni=ately 5 days. The te:y ratura ob te.1:.cd vera as follows:
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Entornal shell of ecsk, bottoc
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9 ' '7 Protective j.n het, outside surface, top Protcetive jecket, outside surfsce, side 95 F Imbient te=.seraturs 76 ?
4.
Choice of nadini Direction for liest.d.n..1vois In reply to the question as to why the M fire tr:nsion: acclysis cocaidsred the radial direction r:ther th n the top or botc== of the er:h: This vcs donc principally to allow consideration of the issd liter, which uculd not be included if the es:k vera analy cd throu;h t!m top or bottom. !.lso, the distaccos involved cre ce=ewhat cot:pernble; the n dial distan:o being tha chcreest by cbcut t. o inches.
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Latest revision as of 12:25, 11 December 2024

Submits Matl Properties Table,Physical Model of Container, Results of Coastup Analysis & Statement Exploring Choice of Radial Direction for Heat Analysis,In Response to Telcon
ML20148B109
Person / Time
Site: 07000754, 07105926
Issue date: 11/13/1968
From: King W
GENERAL ELECTRIC CO.
To: Beth Brown
US ATOMIC ENERGY COMMISSION (AEC)
Shared Package
ML20148B086 List:
References
NUDOCS 8001180306
Download: ML20148B109 (7)


Text

,.

=... _.....

>R J%.,

\\

~

1 9

i Novec.ber 13, 1958 9

3

\\

..r.

Kr. Llaka Erc.:n Irradiated F 21s 3runch Divisien of Haterials Licensing U. S. Atoc.ic Ecery Cc==issics tischington, D.C.

20545

Dear'31ake:

The enclosed d::s, including 1) a r.sterial' p;cperties tabic,

2) a physical r.cdel of the contnicer with neda lecatic=s,
3) the 'results of a cocat'-up analysis, cad 4) a stater::ent explaining the choice of the radini directics for the hect analynis, era cubr_itted in cecordance with the t,elecon botvenn Pc srs. Ocn Bre.r.

Walt Kich and yes;:el::.

If additions 1 d:ta or details cre requirdd, please 1e: =e, know. '

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Walter H. Y.ing Administ ster-Licensins.,,

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' ENGINEERING CALCULATION SHEET DATE SHOP ORDER NO.

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0-3=eral Elcetric Shielded Container - Model 100, liuc.ber 104 Cash Te=paraturo cosat-S after Fire Tran=isnt Using the tecporsture distribution at the end of the fi: 2 f = tbc THT fire transient run, the 104 cash ves allowed to equilibrato for forty =inutes, c=ing a, sin the IHT cocputer code. The resultant temperaturas in various parts of the cask versus tir.s are shcun in rigures 1 and 2.

The significant arre=pcion.2 and app cxi=stions are:

1.

Ambient (sink) temperature.

13 0"3 2.

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Fire shield surface e=issivity, 0.8 and constant with temperature.

4.

E=issivities of ochar surfaces, 0.8 and ccustent with te=perst= n.

5.

Inti= ate cont:cti between tha lead shisiding and the stainless steel cask shell.

h 6.

Negligible beat transfer by conduction th cugh the 9

pipes used as spacers betveen the cash and the first g

shield and betueen the two shields.

9

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N2;11gibic heat transfer by convection betvenn the evo shields and between the first shield a:d the cack.

C.

Iuterani heat lond of 400 vstts with tecperneure dis::ibutien as calculcted by TJT co_puter codc at the and of the 30 cicuts fire.

Conditicn: 3, 4 and 5 are not conservatice for the coast-up, but th::a conditions-vere imposed and vera con =crvative for the firo transient, since the tc=peraturen' cttsined at the end of the fi:e vould have been consider blf ic4:er with Icuer c=iscivities. Also, naturni eenvectien f rm the cutside fire shield was not ci;cwed but would in fact ccen: to sc=e ext:nt, and is cc.isc:vative.

In c dcr to determine the tacperature distribution in the 10L'esci under nor.eb t :ncycrt ecoditions, a test was run using a CsGGO ccurce. The c.w h vaa. -.

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taped to and sprung assinst the surfaces to ha ces:ured.

t. sixth thermoccepis was used to cessura :=Lient air t.:npersters. A 25.cc^. cs.

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Co-60 source was piscad in the cash envity with a lead liner, 4:d thi syzt.:m ' '

uss allowed to equilibrac= for approni=ately 5 days. The te:y ratura ob te.1:.cd vera as follows:

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9 ' '7 Protective j.n het, outside surface, top Protcetive jecket, outside surfsce, side 95 F Imbient te=.seraturs 76 ?

4.

Choice of nadini Direction for liest.d.n..1vois In reply to the question as to why the M fire tr:nsion: acclysis cocaidsred the radial direction r:ther th n the top or botc== of the er:h: This vcs donc principally to allow consideration of the issd liter, which uculd not be included if the es:k vera analy cd throu;h t!m top or bottom. !.lso, the distaccos involved cre ce=ewhat cot:pernble; the n dial distan:o being tha chcreest by cbcut t. o inches.

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