BE645687A - - Google Patents

Info

Publication number
BE645687A
BE645687A BE645687DA BE645687A BE 645687 A BE645687 A BE 645687A BE 645687D A BE645687D A BE 645687DA BE 645687 A BE645687 A BE 645687A
Authority
BE
Belgium
Prior art keywords
emi
roof
dress
seal
liquid
Prior art date
Application number
Other languages
French (fr)
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed filed Critical
Publication of BE645687A publication Critical patent/BE645687A/fr

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D88/00Large containers
    • B65D88/34Large containers having floating covers, e.g. floating roofs or blankets

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Building Environments (AREA)

Description

  

   <EMI ID=1.1> 

  
 <EMI ID=2.1>   <EMI ID=3.1> 

  
 <EMI ID=4.1> 

  
 <EMI ID=5.1> 

  
 <EMI ID=6.1> 

  
 <EMI ID=7.1> 

  
 <EMI ID=8.1> 

  
 <EMI ID=9.1> 

  
 <EMI ID=10.1> 

  
fondations" aux tolérances de fabrication ou de montage, \ ' 

  
 <EMI ID=11.1> 

  
violenta, neige, verglas êtes$*

  
 <EMI ID=12.1> 

  
 <EMI ID=13.1> 

  
 <EMI ID=14.1> 

  
On trouve aussi des systèmes composée d'anneaux 

  
 <EMI ID=15.1> 

  
D'autres joints sont constituée par des feuillet métalliques et , 

  
 <EMI ID=16.1> 

  
 <EMI ID=17.1>  

  
 <EMI ID=18.1> 

  
 <EMI ID=19.1> 

  
 <EMI ID=20.1> 

  
 <EMI ID=21.1> 

  
 <EMI ID=22.1> 

  
 <EMI ID=23.1> 

  
 <EMI ID=24.1> 

  
 <EMI ID=25.1> 

  
est constitué par une cuvette à fond légèrement incline vers le centre$ cuvette pouvant être compartimentée en secteurs par des cloisons sans face supérieure.

  
Suivant une autre caractéristique de l'invention, les différents secteurs communiquent indépendamment les uns des autres avec un joint hydraulique muni ou non de clapets, dispositif permettant l'évacuation des eaux de  pluie.. ; 

  
Suivant une autre caractéristique de l'invention*

  
 <EMI ID=26.1> 

  
pour réservoirs de stockage, est constitué dans une subi*

  
 <EMI ID=27.1> 

  
 <EMI ID=28.1> 

  
de canaux internes formant labyrinthe, de dimensions adaptées et communiquant entre eux dans le sens horizontal et vertical dans lesquels est placé un liquide inconsolable et si   <EMI ID=29.1> 

  
 <EMI ID=30.1> 

  
 <EMI ID=31.1> 

  
Nation de la poussés hydraulique du liquide stocké agissant

  
 <EMI ID=32.1> 

  
pression flottant sur le liquide; cet élément transmettant 

  
sa poussée verticalement vers le haut, toit directement, 

  
soit par l'intermédiaire d'un élément creux déformable placé* -  lui, en dehors du liquide, son mouvement vers le haut étant limité par une butée horizontale fixée sur le toit lui" 

  
même, la poussée verticale qu'il reçoit de l'élément flottant étant transformée en une force horizontale qui applique le  joint sur la robe. 

  
Suivant un autre mode de réalisation, le  solide recevant la poussée hydraulique verticale est aussi

  
 <EMI ID=33.1> 

  
 <EMI ID=34.1> 

  
 <EMI ID=35.1> 

  
 <EMI ID=36.1> 

  
force verticale en une force horizontale utilisant ou non une butés portée par le toit selon les cas.

  
 <EMI ID=37.1> 

  
vention, l'application du joint d'étanchéité contre la robe est créée par la pression hydrostatique du liquide stocké contre le joint immergé dans le liquide développant

  
 <EMI ID=38.1> 

  
directement utilisable. 

  
Suivant un autre mode de réalisation, la

  
 <EMI ID=39.1> 

  
déformble rempli de gaz ou de liquide sous faible pression, Immergé dans le liquide (figures 13 et 14 ) et transmettant  <EMI ID=40.1> 

  
 <EMI ID=41.1> 

  
appuyant sur le joint d'étanchéité proprement dit qui, / ;

  
 <EMI ID=42.1> 

  
 <EMI ID=43.1> 

  
 <EMI ID=44.1> 

  
 <EMI ID=45.1> 

  
 <EMI ID=46.1> 

  
 <EMI ID=47.1> 

  
dans lesquels  <EMI ID=48.1> 

  
 <EMI ID=49.1>  la figure 2 est une vue en coupe du joint  hydraulique de protection,  <EMI ID=50.1> 

  
 <EMI ID=51.1> 
- la figure 4 est une vue de dessus du toit,  <EMI ID=52.1>  <EMI ID=53.1>  <EMI ID=54.1> 

  
d'une partie du joint a labyrinthe,  <EMI ID=55.1> 

  
 <EMI ID=56.1> 

  
 <EMI ID=57.1> 

  
utilisant la poussée hydraulique sur un flotteur ; 

  
 <EMI ID=58.1> 

  
 <EMI ID=59.1>  <EMI ID=60.1> 

  
de joints utilisant l'action de la poussée hydraulique, <EMI ID=61.1> 

  
 <EMI ID=62.1>   <EMI ID=63.1> 

  
tant des dispositifs utilisant la pression hydrostatique, le

  
 <EMI ID=64.1> 

  
 <EMI ID=65.1> 

  
 <EMI ID=66.1> 

  
 <EMI ID=67.1> 

  
sur le liquide" ou en ôtro éloigné par l'emploi des flotteur. 

  
 <EMI ID=68.1> 

  
flotteurs du toit pouvant être réglable" ce dispositif  augmente , en outre la stabilité du toit.

  
D'autre part, il) faut considérer les incidence$;

  
 <EMI ID=69.1> 

  
 <EMI ID=70.1> 

  
l'immersion du toit 

  
 <EMI ID=71.1> 

  
 <EMI ID=72.1> 

  
il faut tenir compte de l'autre phénomène qui la complique* ; 

  
 <EMI ID=73.1> 

  
 <EMI ID=74.1> 

  
constituant, sans frein et sans/limite, risque d'entraîner son immersion* 

  
 <EMI ID=75.1> 

  
 <EMI ID=76.1>   <EMI ID=77.1> 

  
 <EMI ID=78.1> 

  
 <EMI ID=79.1> 

  
chambre du joint hydraulique à débit égal au débit de

  
 <EMI ID=80.1> 

  
 <EMI ID=81.1> 

  
 <EMI ID=82.1> 

  
 <EMI ID=83.1> 

  
 <EMI ID=84.1> 

  
 <EMI ID=85.1> 

  
poutres.

  
 <EMI ID=86.1> 

  
 <EMI ID=87.1> 

  
 <EMI ID=88.1>   <EMI ID=89.1> 

  
 <EMI ID=90.1> 

  
 <EMI ID=91.1> 

  
 <EMI ID=92.1> 

  
 <EMI ID=93.1> 

  
 <EMI ID=94.1> 

  
 <EMI ID=95.1> 

  
 <EMI ID=96.1> 

  
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 <EMI ID=98.1> 

  
 <EMI ID=99.1> 

  
 <EMI ID=100.1> 

  
 <EMI ID=101.1> 

  
renforcement)* Ils mont loti suivants s

  
la simplicité et une Meilleure construction" la soudure des tôles do caissons classiques n'étant exécutée

  
 <EMI ID=102.1> 

  
 <EMI ID=103.1> 

  
 <EMI ID=104.1> 

  
 <EMI ID=105.1> 

  
accessoires spécifiques ( trous d'homue) mont supprimés*
- le poids total du toit diminue. 

  
 <EMI ID=106.1> 

  
surveillance des fuites do toit est considérablement facilitât

  
 <EMI ID=107.1> 

  
 <EMI ID=108.1>  

  
 <EMI ID=109.1> 

  
 <EMI ID=110.1> 

  
 <EMI ID=111.1> 

  
,ceci en raison do la rigidité do l'ensemble* 

  
 <EMI ID=112.1> 

  
 <EMI ID=113.1> 

  
 <EMI ID=114.1> 

  
réglables , do façon à pouvoir faire varier la hauteur du toit

  
 <EMI ID=115.1> 

  
 <EMI ID=116.1> 

  
une surface variable. 

  
 <EMI ID=117.1> 

  
 <EMI ID=118.1> 

  
toit permet de diriger les vapeurs formées vers la périphérie * 

  
 <EMI ID=119.1> 

  
 <EMI ID=120.1> 

  
 <EMI ID=121.1> 

  
 <EMI ID=122.1>   <EMI ID=123.1> 

  
action de la "haleur extérieure', employer des dispositif* d'isolatien ou de ventilation de la face supérieure du toit.

  
 <EMI ID=124.1> 

  
isolant de la couche de vapeur étendue et d'épaisseur variables que l'on peut créer entre le toit et le liquide*

  
 <EMI ID=125.1> 

  
avec leur réglage variable de hauteur, dont il a été parle  ci-dessus.

  
La forme des flotteurs est déterminé" d'une part pour obtenir une poussée constante aux environs de la sons d'équilibre du toit, mais d'autre part pour s'opposer aux  mouvements tendant à éloigner de façon importante le toit de  sa position d'équilibre de façon à rétablir sa stabilité.

  
 <EMI ID=126.1> 

  
Bans un mode de réalisation 

  
 <EMI ID=127.1> 

  
 <EMI ID=128.1> 

  
dans le réservoir (fig.7). Il comprend toute une série de

  
 <EMI ID=129.1> 

  
 <EMI ID=130.1> 

  
et vertical. Ces canaux sont remplît d'un liquide incongelable

  
 <EMI ID=131.1> 

  
 <EMI ID=132.1> 

  
 <EMI ID=133.1> 

  
 <EMI ID=134.1> 

  
pour permettre une bonne transmission de la force d'appui  au joint lui-même. Un dispositif quelconque mécanique, 

  
hydraulique ou pneumatique permet l'application du  joint contre la robe du réservoir* Selon la conception de   <EMI ID=135.1> 

  
 <EMI ID=136.1> 

  
 <EMI ID=137.1>  <EMI ID=138.1> 

  
 <EMI ID=139.1> 

  
 <EMI ID=140.1> 

  
 <EMI ID=141.1> 

  
 <EMI ID=142.1> 

  
 <EMI ID=143.1> 

  
par la propre pression du liquide remplissant le jointe soit par une combinaison; des deux. 

  
Enfin, il est facile de voir également que les 

  
 <EMI ID=144.1> 

  
ou de descente du toit flottant peuvent se tire sans 

  
 <EMI ID=145.1> 

  
 <EMI ID=146.1> 

  
 <EMI ID=147.1> 

  
 <EMI ID=148.1> 

  
Une autre caractéristique de ce brevet est le dispositif de jonction toit-joint assurant l'étanchéité  <EMI ID=149.1> 

  
 <EMI ID=150.1> 

  
 <EMI ID=151.1> 

  
 <EMI ID=152.1> 

  
d'application du joint sur la paroi interne du réservoir"  Mais cotte force cet verticale et dirigée vers le haut* 

  
Il faut donc la transformer au moins partiellement en foret

  
 <EMI ID=153.1> 

  
peut être obtenue en obligeant la partie immergée à tourner 

  
 <EMI ID=154.1> 

  
 <EMI ID=155.1> 

  
tous autres facteurs négligés, 

  
 <EMI ID=156.1> 

  
 <EMI ID=157.1> 

  
 <EMI ID=158.1> 

  
 <EMI ID=159.1> 

  
 <EMI ID=160.1> 

  
 <EMI ID=161.1> 

  
 <EMI ID=162.1> 

  
 <EMI ID=163.1> 

  
 <EMI ID=164.1>  

  
 <EMI ID=165.1> 

  
d'étanohéité peut, dans oe cas, faire oorps avec le dispositif 

  
 <EMI ID=166.1>  <EMI ID=167.1>  .

  
 <EMI ID=168.1> 

  
autre, flottant sur le liquide et stabilisé. Il transmet ..1 -\

  
 <EMI ID=169.1> 

  
 <EMI ID=170.1> 

  
 <EMI ID=171.1>  <EMI ID=172.1> 

  
 <EMI ID=173.1> 

  
Ces diverses solutions permettent le cas échéant '/ 

  
 <EMI ID=174.1> 

  
 <EMI ID=175.1>   <EMI ID=176.1> 

  
 <EMI ID=177.1> 

  
 <EMI ID=178.1> 

  
 <EMI ID=179.1> 

  
 <EMI ID=180.1> 

  
 <EMI ID=181.1> 

  
 <EMI ID=182.1> 

  
de sur le joint directement ou par l'intermédiaire d'un, 

  
 <EMI ID=183.1> 

  
 <EMI ID=184.1> 

  
 <EMI ID=185.1> 

  
 <EMI ID=186.1> 

  
 <EMI ID=187.1> 

  
 <EMI ID=188.1> 

  
 <EMI ID=189.1> 

  
 <EMI ID=190.1>  

  
 <EMI ID=191.1> 

  
 <EMI ID=192.1> 

  
 <EMI ID=193.1> 

  
 <EMI ID=194.1> 

  
 <EMI ID=195.1> 

  
 <EMI ID=196.1> 

  
 <EMI ID=197.1> 

  
 <EMI ID=198.1> 

  
 <EMI ID=199.1>  

  
 <EMI ID=200.1>  <EMI ID=201.1> 

  
 <EMI ID=202.1> 

  
 <EMI ID=203.1> 

  
 <EMI ID=204.1> 

  
 <EMI ID=205.1> 

  
 <EMI ID=206.1> 

  
 <EMI ID=207.1> 

  
 <EMI ID=208.1> 

  
 <EMI ID=209.1> 

  
 <EMI ID=210.1>  . $ ..&#65533;&#65533;,..

  
 <EMI ID=211.1> 

  
toit repose sur des peints fixes, bloquant ainsi le joint

  
 <EMI ID=212.1>  

  
 <EMI ID=213.1> 

  
 <EMI ID=214.1> 

  
l'immersion du joint dans le liquide, ce qui est souvent - . '' 

  
 <EMI ID=215.1> 

  
De marne plus particulièrement dons le cas d'emploi

  
 <EMI ID=216.1> 

  
 <EMI ID=217.1> 

  
 <EMI ID=218.1> 

  
 <EMI ID=219.1> 

  
 <EMI ID=220.1> 

  
 <EMI ID=221.1> 

  
 <EMI ID=222.1> 

  
 <EMI ID=223.1>  

  
 <EMI ID=224.1> 

  
 <EMI ID=225.1> 

  
Ces considérations mènent à quelquea conclusions

  
 <EMI ID=226.1> 

  
 <EMI ID=227.1> 

  
 <EMI ID=228.1> 

  
 <EMI ID=229.1> 

  
avec la force d'application horizontale engendrée par la 

  
 <EMI ID=230.1> 

  
 <EMI ID=231.1> 

  
Il est bien évident que la présente invention .,

  
 <EMI ID=232.1> 

  
 <EMI ID=233.1> 



   <EMI ID = 1.1>

  
 <EMI ID = 2.1> <EMI ID = 3.1>

  
 <EMI ID = 4.1>

  
 <EMI ID = 5.1>

  
 <EMI ID = 6.1>

  
 <EMI ID = 7.1>

  
 <EMI ID = 8.1>

  
 <EMI ID = 9.1>

  
 <EMI ID = 10.1>

  
foundations "to manufacturing or assembly tolerances, \ '

  
 <EMI ID = 11.1>

  
violenta, snow, ice are $ *

  
 <EMI ID = 12.1>

  
 <EMI ID = 13.1>

  
 <EMI ID = 14.1>

  
There are also systems composed of rings

  
 <EMI ID = 15.1>

  
Other joints are formed by metal sheets and,

  
 <EMI ID = 16.1>

  
 <EMI ID = 17.1>

  
 <EMI ID = 18.1>

  
 <EMI ID = 19.1>

  
 <EMI ID = 20.1>

  
 <EMI ID = 21.1>

  
 <EMI ID = 22.1>

  
 <EMI ID = 23.1>

  
 <EMI ID = 24.1>

  
 <EMI ID = 25.1>

  
consists of a bowl with a base slightly inclined towards the center $ bowl which can be compartmentalized into sectors by partitions without a top face.

  
According to another characteristic of the invention, the different sectors communicate independently of each other with a hydraulic seal provided or not with valves, a device allowing the evacuation of rainwater ..;

  
According to another characteristic of the invention *

  
 <EMI ID = 26.1>

  
for storage tanks, is formed in a sub *

  
 <EMI ID = 27.1>

  
 <EMI ID = 28.1>

  
internal channels forming a labyrinth, of suitable dimensions and communicating with each other in the horizontal and vertical direction in which an inconsolable liquid is placed and if <EMI ID = 29.1>

  
 <EMI ID = 30.1>

  
 <EMI ID = 31.1>

  
Nation of the hydraulic thrust of the stored liquid acting

  
 <EMI ID = 32.1>

  
pressure floating on the liquid; this transmitting element

  
its thrust vertically upwards, roof directly,

  
either by means of a deformable hollow element placed * - him, outside the liquid, its upward movement being limited by a horizontal stop fixed on the roof him "

  
even, the vertical thrust which it receives from the floating element being transformed into a horizontal force which applies the seal to the dress.

  
According to another embodiment, the solid receiving the vertical hydraulic thrust is also

  
 <EMI ID = 33.1>

  
 <EMI ID = 34.1>

  
 <EMI ID = 35.1>

  
 <EMI ID = 36.1>

  
vertical force in a horizontal force using or not a stop carried by the roof according to the cases.

  
 <EMI ID = 37.1>

  
vention, the application of the seal against the jacket is created by the hydrostatic pressure of the liquid stored against the seal immersed in the developing liquid

  
 <EMI ID = 38.1>

  
directly usable.

  
According to another embodiment, the

  
 <EMI ID = 39.1>

  
deformable filled with gas or liquid under low pressure, Immersed in the liquid (figures 13 and 14) and transmitting <EMI ID = 40.1>

  
 <EMI ID = 41.1>

  
pressing on the seal itself which, /;

  
 <EMI ID = 42.1>

  
 <EMI ID = 43.1>

  
 <EMI ID = 44.1>

  
 <EMI ID = 45.1>

  
 <EMI ID = 46.1>

  
 <EMI ID = 47.1>

  
where <EMI ID = 48.1>

  
 <EMI ID = 49.1> figure 2 is a sectional view of the protective hydraulic seal, <EMI ID = 50.1>

  
 <EMI ID = 51.1>
- figure 4 is a top view of the roof, <EMI ID = 52.1> <EMI ID = 53.1> <EMI ID = 54.1>

  
part of the labyrinth seal, <EMI ID = 55.1>

  
 <EMI ID = 56.1>

  
 <EMI ID = 57.1>

  
using hydraulic thrust on a float;

  
 <EMI ID = 58.1>

  
 <EMI ID = 59.1> <EMI ID = 60.1>

  
of seals using the action of hydraulic thrust, <EMI ID = 61.1>

  
 <EMI ID = 62.1> <EMI ID = 63.1>

  
both devices using hydrostatic pressure, the

  
 <EMI ID = 64.1>

  
 <EMI ID = 65.1>

  
 <EMI ID = 66.1>

  
 <EMI ID = 67.1>

  
on the liquid "or in ôtro removed by the use of the float.

  
 <EMI ID = 68.1>

  
roof floats can be adjustable "this device additionally increases the stability of the roof.

  
On the other hand, we) must consider the incidence $;

  
 <EMI ID = 69.1>

  
 <EMI ID = 70.1>

  
immersion of the roof

  
 <EMI ID = 71.1>

  
 <EMI ID = 72.1>

  
it is necessary to take into account the other phenomenon which complicates it *;

  
 <EMI ID = 73.1>

  
 <EMI ID = 74.1>

  
component, without brake and without / limit, risks causing it to be submerged *

  
 <EMI ID = 75.1>

  
 <EMI ID = 76.1> <EMI ID = 77.1>

  
 <EMI ID = 78.1>

  
 <EMI ID = 79.1>

  
hydraulic seal chamber at flow rate equal to the flow rate of

  
 <EMI ID = 80.1>

  
 <EMI ID = 81.1>

  
 <EMI ID = 82.1>

  
 <EMI ID = 83.1>

  
 <EMI ID = 84.1>

  
 <EMI ID = 85.1>

  
beams.

  
 <EMI ID = 86.1>

  
 <EMI ID = 87.1>

  
 <EMI ID = 88.1> <EMI ID = 89.1>

  
 <EMI ID = 90.1>

  
 <EMI ID = 91.1>

  
 <EMI ID = 92.1>

  
 <EMI ID = 93.1>

  
 <EMI ID = 94.1>

  
 <EMI ID = 95.1>

  
 <EMI ID = 96.1>

  
 <EMI ID = 97.1>

  
 <EMI ID = 98.1>

  
 <EMI ID = 99.1>

  
 <EMI ID = 100.1>

  
 <EMI ID = 101.1>

  
reinforcement) * They mont loti following s

  
simplicity and Better construction "the welding of conventional box plates not being performed

  
 <EMI ID = 102.1>

  
 <EMI ID = 103.1>

  
 <EMI ID = 104.1>

  
 <EMI ID = 105.1>

  
specific accessories (manholes) mounted removed *
- the total weight of the roof decreases.

  
 <EMI ID = 106.1>

  
monitoring roof leaks is made considerably easier.

  
 <EMI ID = 107.1>

  
 <EMI ID = 108.1>

  
 <EMI ID = 109.1>

  
 <EMI ID = 110.1>

  
 <EMI ID = 111.1>

  
, this because of the rigidity of the whole *

  
 <EMI ID = 112.1>

  
 <EMI ID = 113.1>

  
 <EMI ID = 114.1>

  
adjustable, so that the height of the roof can be varied

  
 <EMI ID = 115.1>

  
 <EMI ID = 116.1>

  
a variable surface.

  
 <EMI ID = 117.1>

  
 <EMI ID = 118.1>

  
roof allows the vapors formed to be directed towards the periphery *

  
 <EMI ID = 119.1>

  
 <EMI ID = 120.1>

  
 <EMI ID = 121.1>

  
 <EMI ID = 122.1> <EMI ID = 123.1>

  
action of the "exterior hauler", use devices * for isolating or ventilating the upper face of the roof.

  
 <EMI ID = 124.1>

  
insulating the extensive vapor layer of varying thickness that can be created between the roof and the liquid *

  
 <EMI ID = 125.1>

  
with their variable height adjustment, which was discussed above.

  
The shape of the floats is determined "on the one hand to obtain a constant thrust in the vicinity of the equilibrium sound of the roof, but on the other hand to oppose the movements tending to move the roof significantly away from its position. balance so as to restore its stability.

  
 <EMI ID = 126.1>

  
In one embodiment

  
 <EMI ID = 127.1>

  
 <EMI ID = 128.1>

  
in the tank (fig. 7). It includes a whole series of

  
 <EMI ID = 129.1>

  
 <EMI ID = 130.1>

  
and vertical. These channels are filled with a non-freezing liquid

  
 <EMI ID = 131.1>

  
 <EMI ID = 132.1>

  
 <EMI ID = 133.1>

  
 <EMI ID = 134.1>

  
to allow good transmission of the contact force to the joint itself. Any mechanical device,

  
hydraulic or pneumatic allows the application of the seal against the tank jacket * According to the design of <EMI ID = 135.1>

  
 <EMI ID = 136.1>

  
 <EMI ID = 137.1> <EMI ID = 138.1>

  
 <EMI ID = 139.1>

  
 <EMI ID = 140.1>

  
 <EMI ID = 141.1>

  
 <EMI ID = 142.1>

  
 <EMI ID = 143.1>

  
by the own pressure of the liquid filling the joint or by a combination; both.

  
Finally, it is also easy to see that the

  
 <EMI ID = 144.1>

  
or lowering of the floating roof can be pulled without

  
 <EMI ID = 145.1>

  
 <EMI ID = 146.1>

  
 <EMI ID = 147.1>

  
 <EMI ID = 148.1>

  
Another feature of this patent is the roof-seal junction device ensuring watertightness <EMI ID = 149.1>

  
 <EMI ID = 150.1>

  
 <EMI ID = 151.1>

  
 <EMI ID = 152.1>

  
application of the seal on the internal wall of the tank "But cotte forces this vertical and directed upwards *

  
It must therefore be transformed at least partially into a drill

  
 <EMI ID = 153.1>

  
can be obtained by forcing the submerged part to rotate

  
 <EMI ID = 154.1>

  
 <EMI ID = 155.1>

  
all other neglected factors,

  
 <EMI ID = 156.1>

  
 <EMI ID = 157.1>

  
 <EMI ID = 158.1>

  
 <EMI ID = 159.1>

  
 <EMI ID = 160.1>

  
 <EMI ID = 161.1>

  
 <EMI ID = 162.1>

  
 <EMI ID = 163.1>

  
 <EMI ID = 164.1>

  
 <EMI ID = 165.1>

  
etanoheity can, in this case, form part of the device

  
 <EMI ID = 166.1> <EMI ID = 167.1>.

  
 <EMI ID = 168.1>

  
other, floating on the liquid and stabilized. It transmits. 1 - \

  
 <EMI ID = 169.1>

  
 <EMI ID = 170.1>

  
 <EMI ID = 171.1> <EMI ID = 172.1>

  
 <EMI ID = 173.1>

  
These various solutions allow where appropriate '/

  
 <EMI ID = 174.1>

  
 <EMI ID = 175.1> <EMI ID = 176.1>

  
 <EMI ID = 177.1>

  
 <EMI ID = 178.1>

  
 <EMI ID = 179.1>

  
 <EMI ID = 180.1>

  
 <EMI ID = 181.1>

  
 <EMI ID = 182.1>

  
from on the joint directly or through a,

  
 <EMI ID = 183.1>

  
 <EMI ID = 184.1>

  
 <EMI ID = 185.1>

  
 <EMI ID = 186.1>

  
 <EMI ID = 187.1>

  
 <EMI ID = 188.1>

  
 <EMI ID = 189.1>

  
 <EMI ID = 190.1>

  
 <EMI ID = 191.1>

  
 <EMI ID = 192.1>

  
 <EMI ID = 193.1>

  
 <EMI ID = 194.1>

  
 <EMI ID = 195.1>

  
 <EMI ID = 196.1>

  
 <EMI ID = 197.1>

  
 <EMI ID = 198.1>

  
 <EMI ID = 199.1>

  
 <EMI ID = 200.1> <EMI ID = 201.1>

  
 <EMI ID = 202.1>

  
 <EMI ID = 203.1>

  
 <EMI ID = 204.1>

  
 <EMI ID = 205.1>

  
 <EMI ID = 206.1>

  
 <EMI ID = 207.1>

  
 <EMI ID = 208.1>

  
 <EMI ID = 209.1>

  
 <EMI ID = 210.1>. $ .. &#65533; &#65533;, ..

  
 <EMI ID = 211.1>

  
roof rests on fixed painted, thus blocking the joint

  
 <EMI ID = 212.1>

  
 <EMI ID = 213.1>

  
 <EMI ID = 214.1>

  
the immersion of the seal in the liquid, which is often -. ''

  
 <EMI ID = 215.1>

  
Of marl more particularly in the use case

  
 <EMI ID = 216.1>

  
 <EMI ID = 217.1>

  
 <EMI ID = 218.1>

  
 <EMI ID = 219.1>

  
 <EMI ID = 220.1>

  
 <EMI ID = 221.1>

  
 <EMI ID = 222.1>

  
 <EMI ID = 223.1>

  
 <EMI ID = 224.1>

  
 <EMI ID = 225.1>

  
These considerations lead to some conclusions

  
 <EMI ID = 226.1>

  
 <EMI ID = 227.1>

  
 <EMI ID = 228.1>

  
 <EMI ID = 229.1>

  
with the horizontal application force generated by the

  
 <EMI ID = 230.1>

  
 <EMI ID = 231.1>

  
It is obvious that the present invention.

  
 <EMI ID = 232.1>

  
 <EMI ID = 233.1>

 

Claims (1)

<EMI ID=234.1> <EMI ID = 234.1> <EMI ID=235.1> <EMI ID = 235.1> <EMI ID=236.1> <EMI ID=237.1> <EMI ID = 236.1> <EMI ID = 237.1> <EMI ID=238.1> <EMI ID = 238.1> <EMI ID=239.1> <EMI ID = 239.1> <EMI ID=240.1> <EMI ID = 240.1> <EMI ID=241.1> <EMI ID = 241.1> <EMI ID=242.1> <EMI ID = 242.1> grâce aux clapets" thanks to the valves " <EMI ID=243.1> <EMI ID = 243.1> <EMI ID=244.1> <EMI ID=245.1> <EMI ID = 244.1> <EMI ID = 245.1> et circulaire$* and circular $ * <EMI ID=246.1> <EMI ID = 246.1> <EMI ID=247.1> <EMI ID = 247.1> entre le toit et la robe est soumis presque directement . between the roof and the dress is submitted almost directly. <EMI ID=248.1> <EMI ID = 248.1> l'intermédiaire du dispositif de liaison toit-robe, de sorte . through the roof-dress connecting device, so. <EMI ID=249.1> <EMI ID = 249.1> par des goussets ou équerres quelconques. by any gussets or brackets. <EMI ID=250.1> <EMI ID = 250.1> <EMI ID=251.1> <EMI ID = 251.1> (vies 5) vert le centre est plus tort. due la partit (lives 5) green the center is more wrong. due left <EMI ID=252.1> <EMI ID = 252.1> stabilité. stability. <EMI ID=253.1> <EMI ID = 253.1> <EMI ID=254.1> <EMI ID = 254.1> <EMI ID=255.1> <EMI ID = 255.1> 1 à 9 ot caractérisé par ce que le toit est constituée d'une cuvette légèrement inclinée vers le centre, cette 1 to 9 ot characterized by that the roof consists of a bowl slightly inclined towards the center, this <EMI ID=256.1> <EMI ID = 256.1> <EMI ID=257.1> <EMI ID = 257.1> <EMI ID=258.1> <EMI ID = 258.1> <EMI ID=259.1> <EMI ID = 259.1> une tôle fixée au toit de façon à ménager entra le toit a sheet fixed to the roof so as to spare entered the roof <EMI ID=260.1> <EMI ID = 260.1> <EMI ID=261.1> <EMI ID = 261.1> la robe* <EMI ID=262.1> <EMI ID=263.1> the dress * <EMI ID = 262.1> <EMI ID = 263.1> <EMI ID=264.1> <EMI ID = 264.1> <EMI ID=265.1> <EMI ID = 265.1> <EMI ID=266.1> <EMI ID = 266.1> <EMI ID=267.1> <EMI ID = 267.1> <EMI ID=268.1> <EMI ID = 268.1> <EMI ID=269.1> <EMI ID = 269.1> <EMI ID=270.1> <EMI ID = 270.1> <EMI ID=271.1> <EMI ID = 271.1> <EMI ID=272.1> <EMI ID = 272.1> <EMI ID=273.1> <EMI ID = 273.1> <EMI ID=274.1> <EMI ID = 274.1> <EMI ID=275.1> <EMI ID = 275.1> <EMI ID=276.1> <EMI ID = 276.1> <EMI ID=277.1> <EMI ID = 277.1> <EMI ID=278.1> <EMI ID = 278.1> <EMI ID=279.1> <EMI ID = 279.1> <EMI ID=280.1> <EMI ID = 280.1> <EMI ID=281.1> <EMI ID = 281.1> <EMI ID=282.1> <EMI ID = 282.1> <EMI ID=283.1> <EMI ID = 283.1> <EMI ID=284.1> <EMI ID = 284.1> <EMI ID=285.1> <EMI ID = 285.1> <EMI ID=286.1> <EMI ID = 286.1> <EMI ID=287.1> <EMI ID = 287.1> <EMI ID=288.1> <EMI ID = 288.1> <EMI ID=289.1> <EMI ID=290.1> <EMI ID = 289.1> <EMI ID = 290.1> <EMI ID=291.1> <EMI ID = 291.1> <EMI ID=292.1> <EMI ID = 292.1> <EMI ID=293.1> <EMI ID = 293.1> <EMI ID=294.1> <EMI ID = 294.1> <EMI ID=295.1> <EMI ID = 295.1> <EMI ID=296.1> <EMI ID = 296.1> <EMI ID=297.1> <EMI ID = 297.1> <EMI ID=298.1> <EMI ID = 298.1> solide, fixée au support du joint d'une part, au toit' d'autre part. solid, fixed to the support of the joint on the one hand, to the roof on the other hand. <EMI ID=299.1> <EMI ID = 299.1> <EMI ID=300.1> <EMI ID = 300.1> d'application du joint contre la robe* application of the seal against the dress * <EMI ID=301.1> <EMI ID=302.1> <EMI ID = 301.1> <EMI ID = 302.1> <EMI ID=303.1> <EMI ID = 303.1> <EMI ID=304.1> <EMI ID = 304.1> <EMI ID=305.1> <EMI ID = 305.1> <EMI ID=306.1> <EMI ID = 306.1> maintenu en plaoo par rapport au toit, et appuyant sur maintained in plaoo in relation to the roof, and pressing <EMI ID=307.1> <EMI ID = 307.1> <EMI ID=308.1> <EMI ID = 308.1> alors la pression hydrostatique supportée par l'élément inférieur du joint et l'appliquant contre la paroi* then the hydrostatic pressure supported by the lower element of the seal and applying it against the wall * <EMI ID=309.1> <EMI ID = 309.1> 1 à 26 et caractérisé par ce que la combinaison 1 to 26 and characterized in that the combination do la pression hydrostatique et do la poussée hydraulique do the hydrostatic pressure and do the hydraulic thrust <EMI ID=310.1> <EMI ID = 310.1> <EMI ID=311.1> <EMI ID = 311.1>
BE645687D 1963-03-28 1964-03-25 BE645687A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR929666A FR1352436A (en) 1963-03-28 1963-03-28 Floating roof for tank

Publications (1)

Publication Number Publication Date
BE645687A true BE645687A (en) 1964-07-16

Family

ID=8800391

Family Applications (1)

Application Number Title Priority Date Filing Date
BE645687D BE645687A (en) 1963-03-28 1964-03-25

Country Status (3)

Country Link
BE (1) BE645687A (en)
FR (1) FR1352436A (en)
NL (1) NL6403325A (en)

Also Published As

Publication number Publication date
FR1352436A (en) 1964-02-14
NL6403325A (en) 1964-09-29

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