EP3928330B1 - Anlage umfassend einen behälter zur lagerung von radioaktivem material und zugehöriges befestigungssystem - Google Patents
Anlage umfassend einen behälter zur lagerung von radioaktivem material und zugehöriges befestigungssystem Download PDFInfo
- Publication number
- EP3928330B1 EP3928330B1 EP20725883.1A EP20725883A EP3928330B1 EP 3928330 B1 EP3928330 B1 EP 3928330B1 EP 20725883 A EP20725883 A EP 20725883A EP 3928330 B1 EP3928330 B1 EP 3928330B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- package
- elements
- support system
- assembly according
- support
- Prior art date
- Legal status (The legal status 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 status listed.)
- Active
Links
- 239000012857 radioactive material Substances 0.000 title claims description 6
- 238000001816 cooling Methods 0.000 claims description 26
- 230000002787 reinforcement Effects 0.000 claims description 10
- 238000009413 insulation Methods 0.000 claims description 6
- 238000000034 method Methods 0.000 claims description 4
- 230000002441 reversible effect Effects 0.000 claims description 4
- 238000004891 communication Methods 0.000 claims description 3
- 230000001186 cumulative effect Effects 0.000 claims description 2
- 238000004806 packaging method and process Methods 0.000 description 68
- 230000005855 radiation Effects 0.000 description 18
- 230000000694 effects Effects 0.000 description 6
- 240000008042 Zea mays Species 0.000 description 2
- 230000000712 assembly Effects 0.000 description 1
- 238000000429 assembly Methods 0.000 description 1
- 230000004888 barrier function Effects 0.000 description 1
- 238000013461 design Methods 0.000 description 1
- 229940082150 encore Drugs 0.000 description 1
- 210000003041 ligament Anatomy 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 239000003758 nuclear fuel Substances 0.000 description 1
- 239000002901 radioactive waste Substances 0.000 description 1
- 230000000284 resting effect Effects 0.000 description 1
- 238000012546 transfer Methods 0.000 description 1
Images
Classifications
-
- G—PHYSICS
- G21—NUCLEAR PHYSICS; NUCLEAR ENGINEERING
- G21F—PROTECTION AGAINST X-RADIATION, GAMMA RADIATION, CORPUSCULAR RADIATION OR PARTICLE BOMBARDMENT; TREATING RADIOACTIVELY CONTAMINATED MATERIAL; DECONTAMINATION ARRANGEMENTS THEREFOR
- G21F5/00—Transportable or portable shielded containers
- G21F5/005—Containers for solid radioactive wastes, e.g. for ultimate disposal
-
- G—PHYSICS
- G21—NUCLEAR PHYSICS; NUCLEAR ENGINEERING
- G21F—PROTECTION AGAINST X-RADIATION, GAMMA RADIATION, CORPUSCULAR RADIATION OR PARTICLE BOMBARDMENT; TREATING RADIOACTIVELY CONTAMINATED MATERIAL; DECONTAMINATION ARRANGEMENTS THEREFOR
- G21F5/00—Transportable or portable shielded containers
- G21F5/005—Containers for solid radioactive wastes, e.g. for ultimate disposal
- G21F5/008—Containers for fuel elements
-
- G—PHYSICS
- G21—NUCLEAR PHYSICS; NUCLEAR ENGINEERING
- G21F—PROTECTION AGAINST X-RADIATION, GAMMA RADIATION, CORPUSCULAR RADIATION OR PARTICLE BOMBARDMENT; TREATING RADIOACTIVELY CONTAMINATED MATERIAL; DECONTAMINATION ARRANGEMENTS THEREFOR
- G21F5/00—Transportable or portable shielded containers
- G21F5/06—Details of, or accessories to, the containers
- G21F5/10—Heat-removal systems, e.g. using circulating fluid or cooling fins
Definitions
- the present invention relates to the field of packaging for storing radioactive materials, for example radioactive waste placed in drums, or even nuclear fuel assemblies.
- the invention relates more particularly to an assembly formed by such a packaging with its support system, the latter ensuring the interface between the bottom of the packaging in the vertical storage position, and the floor of the storage site.
- packages are stored in an upright position in a storage site, also referred to as a storage hall or building. These packages are generally placed on the floor in the storage building, involving direct contact between the bottom of the package and the ground. Consequently, the part of the floor facing the bottom of the packaging can reach high temperatures, likely to exceed the average and maximum tolerated floor temperatures.
- WO 2016/151094 teaches horizontal positioning of the packaging for transport and the use of a shroud to obtain cooling by natural convection.
- the subject of the invention is an assembly comprising a storage package for radioactive materials as well as a package support system intended, in a packaging storage configuration, to be arranged between a bottom of the packaging and a floor of a storage building.
- the support system comprises a radiative shield for thermal protection of the ground having a first lower face as well as a second upper face opposite the first, the radiative shield comprising a central part provided with at least one passage of air providing communication between a zone of floor cooling air circulation defined under the first face of the radiation screen, and a packaging bottom cooling air circulation zone defined between the second face of the radiation screen and the packaging bottom .
- the support system further comprises a plurality of spaced apart package bottom support members, each support member protruding from the second face of the radiation shield and extending through the cooling air circulation zone of the bottom of the packaging until it comes into contact with the latter.
- the support system also comprises a plurality of support elements projecting into the floor cooling air circulation zone, from the first face of the radiation screen.
- the invention thus makes it possible to reduce the average and maximum temperatures of the part of the ground located opposite the assembly, thanks first of all to the support system whose radiative screen limits the radiation of the packaging towards the ground.
- the support system makes it possible to cool the floor by means of air suction within the floor cooling air circulation zone defined under the first face of the radiative screen. , this suction taking place radially from the outside towards the inside until this air passes through the central air passage(s), then until it is discharged by the bottom cooling air circulation zone packaging.
- the invention provides in a simple way to combine the effects of heat shielding and cooling by natural convection, to limit the rise in temperature of the ground and the bottom of the packaging.
- the invention may provide for the implementation of one of the following optional characteristics, taken individually or in combination.
- the central part of the radiation screen, in which each air passage is circumscribed, has a first diameter D1 smaller than the largest transverse dimension D2 of the packaging, so as to satisfy the following relationship: D1 ⁇ 0, 5 . D2
- This dimensioning further improves the cooling efficiency of the bottom of the packaging and of the floor, by combining the two effects of heat shielding and cooling by natural convection.
- Said at least one air passage has a cumulative surface S1 for air circulation
- the packaging in storage configuration has a longitudinal central axis orthogonal to the ground and to the radiation screen and centered with respect to the latter
- the package has a surface S2 projected onto the ground, along the central longitudinal axis
- the surfaces S1 and S2 correspond to the following relationship: S1 ⁇ 0.25.
- this dimensioning contributes to improving the cooling efficiency of the bottom of the packaging and of the floor, by combining the two effects of heat shielding and cooling by natural convection.
- the support elements of the bottom of the packaging and the support elements form, two by two, feet passing through the radiation shield for thermal protection.
- Each foot is then preferably made in one piece, except possibly to integrate a thermal insulation layer at its end in contact with the bottom of the packaging.
- the support elements of the bottom of the packaging and the support elements could be produced by elements independent of each other, aligned or not aligned two by two according to the direction of the central longitudinal axis of the packaging. in storage configuration.
- the support system comprises an envelope carried at the periphery of the radiation screen, the envelope defining an air suction channel around the packaging.
- This envelope promotes cooling by natural convection, and provides a chimney effect for the air coming from the cooling air circulation zone of the bottom of the packaging.
- the support elements and/or the support elements are oriented radially or substantially radially with respect to the longitudinal central axis of the packaging on which the support system is also centered.
- This feature provides better circulation of fresh air towards the air passage(s), as well as better evacuation of heated air after the latter has passed through this/these passage(s).
- the particular orientation of the support and support elements limits the physical barriers generated by the presence of these elements, vis-à-vis the flow of air within the support system.
- the support elements and/or the support elements are arranged radially outwards with respect to the central part of the radiation screen.
- the radiative screen is equipped with a plurality of mechanical reinforcement elements interconnecting at least a part of the bottom support elements and/or the support elements.
- the mechanical reinforcement elements have radially inner ends connected together at the level of a central connecting member around which are delimited radially inwardly several air passages, each of them also being delimited circumferentially by two reinforcement elements directly consecutive mechanics.
- Each mechanical reinforcement element is secured, at its radially outer end, to one of the support elements and/or to one of the bottom support elements.
- the assembly comprises hooking means allowing reversible hooking of the support system on the packaging, the hooking means preferably comprising fixing elements intended to cooperate with handling pins provided on the packaging.
- Each support element has one end in contact with the bottom of the packaging taking the form of a layer of thermal insulation.
- the subject of the invention is a method for storing a packaging belonging to an assembly as described above, the method comprising the positioning of the packaging on the support system arranged on the ground, so as to reveal the cooling air circulation zone of the bottom of the packaging.
- an assembly 100 comprising a packaging 1 for the storage of radioactive materials, and its support system 3 on the floor 5 of a storage building 7 .
- the packaging 1 is shown in a vertical storage position, in which its longitudinal central axis 2 is oriented vertically, namely orthogonally to the ground 5. Conventionally, it comprises a packaging bottom 4 opposite a removable cover 6 according to the direction of the height 8, parallel to the longitudinal central axis 2. extending around this axis 2. The bottom 4 and the cover 6 axially delimit a housing cavity 12 within which the radioactive materials (not shown) are received.
- the assembly 100 also includes the support system 3 which, in the packaging storage configuration as shown in the figure 1 , is located between the bottom 4 of the packaging and the ground 5.
- This support system 3 can reside in a movable system placed on the ground 5, or, alternatively, in a system secured to the ground. The latter case proves to be particularly advantageous for responding to seismic constraints.
- the support system 3 comprises a radiative screen 20 serving for the thermal protection of the ground 7.
- This screen 20 has the shape of a plate, of identical or homothetic geometry to that of the bottom of the packaging 4. Here, it is of an overall disc shape centered on the longitudinal central axis 2 of the packaging, this axis 2 also corresponding to the longitudinal central axis of the system 3 and of the assembly 100.
- the screen 20 has a central part 22 centered on the axis 2, and of diameter D1 smaller than an outer diameter D2 of the side body of the packaging.
- the ratio between the two diameters D1 and D2 is preferably less than 0.5.
- the outer diameter D3 of the screen 20 is for its part greater than or equal to the external diameter D2 of the lateral packaging body, the ratio between D3 and D2 preferably being between 1 and 1.3.
- the central part 22 mentioned above corresponds to the part of the screen 20 through which is made one or more air passages 24.
- a single air passage 24 of circular shape and centered on axis 2.
- This passage 24 has a diameter D4 generating a surface S1.
- the projected surface S2 of the packaging on the ground 5, along the axis 2 is such that the ratio between the surfaces S1 and S2 is preferably less than 0.25.
- This projected surface S2 can also be considered as the projected surface of the packaging on the radiation screen 20, still along the axis 2, but without taking into account the opening formed by the air passage 24.
- the screen 20 has a first lower face 28, as well as a second upper face 30 opposite the first face.
- the air passage 24 connects these two faces 28, 30.
- the first lower face 28 is located parallel to and at a distance from the ground 5, so as to delimit axially between them a zone 32 for air circulation for cooling the ground.
- the second upper face 30 is located parallel and at a distance from the bottom of the packaging 4, so as to delimit axially between them a zone 34 for the circulation of air for cooling the bottom of the packaging.
- the air passage 24 thus provides communication between the two zones 32, 34, each open radially outwards.
- the support system 3 also comprises, in the zone 34, a plurality of support elements 36 of the bottom of the packaging, spaced from one another.
- These support elements 36 are for example provided four in number, even if a different number can be adopted, without departing from the scope of the invention.
- each support element 36 projects vertically from the second face 30 of the screen 20, extending upwards through the area 34 until it contacts the bottom of the packaging 4.
- each support element 36 is oriented radially or substantially radially in relation to the axis 2, so as to better channel the flow of air within the zone 34 of circulation of air for cooling the bottom of the packaging.
- these support elements 36 are arranged radially towards the outside with respect to the central part 22 of the screen 20.
- each support element 36 can incorporate a thermal insulation layer so as to limit the direct heat transfer from bottom 4 to floor 7.
- the support system 3 comprises in the area 32 a plurality of support elements 38 on the ground 5, spaced from each other.
- These support elements 38 are for example provided four in number, even if a different number can be adopted, without departing from the scope of the invention.
- each support element 38 projects vertically from the first face 28 of the screen 20, extending downwards through the zone 32 until it contacts the ground 5.
- the contact can be direct, or a layer of thermal insulation can be interposed between the support elements and the ground.
- the support elements 38 can be connected to a plate at their lower end, which plate would then be in contact with the ground to further standardize the temperature. Indeed, this plate makes it possible to limit the risks of hot spots on the ground, opposite the support elements 38.
- each support element 38 is oriented radially or substantially radially in relation to the axis 2, so as to better channel the flow of air within the zone 32 of air circulation for cooling the ground.
- these support elements 38 are arranged radially outwards with respect to the central part 22 of the screen 20.
- the support elements 36 and the support elements 38 are grouped together two by two so as to form feet 40 passing through the radiation screen 20, and extending vertically between the bottom of the packaging 4 and ground 5.
- the outside fresh air is sucked into the zone 32 in which it circulates radially inwards, in the direction of the passage 24 and being channeled between the feet 40.
- the air cools the floor 5 which thus sees its temperature decrease, this decrease being accentuated by the effect of limiting the heat radiation procured by the radiative screen 20 arranged between the bottom of the packaging 4 and the floor 5.
- the air enters the zone 34 in which it circulates radially outwards, also being channeled by the feet 40.
- This air circulation occurs by natural convection.
- this circulation of air in the zone 34 contributes to the cooling of the bottom of the packaging 4 taken on by this same moving air.
- the support system 3 may also comprise, at the periphery of the screen 20, an envelope 46 surrounding the side body 10 of the packaging.
- This envelope 46 is visible on the figure 4 , and here adopts a cylindrical shape. It defines with the side body 10 an annular air suction channel 48 around the package.
- This envelope 46 centered on the axis 2 and of a shape homothetic to that of the side body 10, can extend over a length greater than the height of the support elements 36 of the bottom of the packaging, that is to say say be longer than the height of the zone 34.
- this length of the envelope 46 is less than a quarter of the total length of this package in the storage configuration.
- the envelope 46 may not be cylindrical in shape, but take on a conical shape widening towards the top of the packaging, still being centered on the axis 2. This solution is particularly preferred in the case where the ratio between the aforementioned diameters D3 and D2 tends towards 1.
- the support system may also comprise, at the outer periphery of the casing 46, an annular ring for radiological protection, the height of which is at least greater than that of the support elements 36 of the bottom of the packaging.
- this crown which can extend over all or part of the height of the casing 46, also makes it possible to thermally insulate the casing 46 vis-à-vis the outside, to improve the draft due to the increase in internal/external temperature difference.
- the radiation screen 20 is traversed by a single circular air passage.
- several passages 24 can be provided within the central part 22 of the screen 20, such as for example several circular passages 24 regularly distributed around the axis 2 as shown on the figure 5 .
- the air passages 24 may correspond to angular sectors of rings, separated from each other by material ligaments 50.
- a support structure 3 according to another preferred embodiment of the invention.
- six feet 40 are provided, all arranged radially and regularly distributed around the axis 2. These feet can rest directly on the ground, or else be covered with a layer of thermal insulation 52 intended to form the interface with the ground.
- the radiation screen 20 is made by alternating, in the circumferential direction, angular screen sectors 54 and mechanical reinforcement elements 56. More specifically, the angular sectors 54 are ring sections, while that the mechanical reinforcement elements 56 are beams oriented radially and arranged at the interface between two directly consecutive ring sections 54, so as to secure them.
- the beams 56 also perform the connecting function between the feet 40, since each of the latter is secured to the radially outer end of one of the beams.
- each beam 56 is secured to a central connecting member 58 forming an integral part of the screen 20, this member 58 being cylindrical and centered on the axis 2.
- passages of air 24 are distributed in a manner similar to that shown on the screen of the figure 6 , each being delimited radially inwardly by the central member 58, radially outwardly by a ring section 54, and circumferentially by the radially inner ends of two directly consecutive beams 56.
- FIG 10 schematically represents a step in a process for storing the packaging 1 in the building 7, aimed at putting this packaging in place on the support system 3 already placed on the floor 5.
- the package 1 is released from its shock-absorbing covers which usually equip its axial ends during its transport.
- the packaging 1 is preferably fixed temporarily to the support system 3, so that these two entities can be moved simultaneously during the handling operations carried out during the storage period in building 7.
- the packaging 1 and the system 3 can be equipped with reversible attachment means comprising fixing elements 64 intended to enclose pins 62 of the packaging.
- fixing elements 64 intended to enclose pins 62 of the packaging.
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- Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- High Energy & Nuclear Physics (AREA)
- Packages (AREA)
- Buildings Adapted To Withstand Abnormal External Influences (AREA)
Claims (13)
- Anlage (100), umfassend einen Behälter (1) zur Lagerung von radioaktivem Material sowie ein Befestigungssystem (3) des Behälters, das bestimmt ist, in einer Lagerungskonfiguration des Behälters zwischen einem Boden (4) des Behälters und einem Fußboden (5) eines Lagerungsgebäudes (7) eingerichtet zu sein,dadurch gekennzeichnet, dass das Befestigungssystem (3) eine Wärmeschutzstrahlungsabschirmung (20) des Fußbodens umfasst, die eine erste untere Fläche (28) sowie eine zweite obere Fläche (30) gegenüber der ersten aufweist, wobei die Strahlungsabschirmung (20) einen Mittelteil (22) aufweist, der mit mindestens einem Luftdurchgang (24) versehen ist, der die Kommunikation zwischen einer Kühlluftzirkulationszone (32) des Fußbodens, die unter der ersten Fläche (28) der Strahlungsabschirmung definiert ist, und einer Kühlluftzirkulationszone (34) des Behälterbodens, die zwischen der zweiten Fläche (30) der Strahlungsabschirmung (20) und dem Behälterboden (4) definiert ist, sichert,wobei das Befestigungssystem (3) ferner eine Vielzahl von Befestigungselementen (36) des Behälterbodens umfasst, die voneinander beabstandet sind, wobei jedes Befestigungselement (3) aus der zweiten Fläche (30) der Strahlungsabschirmung (20) hervorsteht und sich durch die Kühlluftzirkulationszone (34) des Behälterbodens (4) erstreckt, bis es diesen kontaktiert,wobei das Befestigungssystem (3) ebenfalls eine Vielzahl von Stützelementen (38) umfasst, die in die Kühlluftzirkulationszone (32) des Fußbodens ausgehend von der ersten Fläche (28) der Strahlungsabschirmung (20) hervorstehen.
- Anlage nach Anspruch 1, dadurch gekennzeichnet, dass der Mittelteil (22) der Strahlungsabschirmung, in dem jeder Luftdurchgang (24) eingegrenzt ist, einen ersten Durchmesser D1 aufweist, der kleiner als die größte transversale Abmessung D2 des Behälters (1) ist, so dass er dem folgenden Verhältnis entspricht:
D1 < 0,5 . D2 - Anlage nach Anspruch 1 oder Anspruch 2, dadurch gekennzeichnet, dass der mindestens eine Luftdurchgang (24) eine kumulierte Luftzirkulationsoberfläche S1 aufweist, dass der Behälter (1) in Lagerungskonfiguration eine zentrale Längsachse (2) orthogonal zum Fußboden (5) und zu der Strahlungsabschirmung (20) und zentriert im Verhältnis zu dieser aufweist, dass der Behälter eine projizierte Oberfläche S2 auf den Fußboden (5) gemäß der zentralen Längsachse (2) aufweist und dass die Oberflächen S1 und S2 dem folgenden Verhältnis entsprechen:
S1 < 0,25 . S2 - Anlage nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, dass die Befestigungselemente (36) des Behälterbodens und die Stützelemente (38) paarweise Füße (40) bilden, die die Wärmeschutzstrahlungsabschirmung (20) durchqueren.
- Anlage nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, dass in Lagerungskonfiguration das Befestigungssystem (3) einen Mantel (46) aufweist, der an der Peripherie der Strahlungsabschirmung (20) getragen wird, wobei der Mantel einen Luftansaugkanal (48) um den Behälter (1) definiert.
- Anlage nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, dass die Stützelemente (38) und/oder die Befestigungselemente (36) radial oder etwa radial in Bezug auf die zentrale Längsachse (2) des Behälters ausgerichtet sind, auf der ebenfalls das Befestigungssystem (3) zentriert ist.
- Anlage nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, dass die Stützelemente (38) und/oder die Befestigungselemente (36) radial nach außen im Verhältnis zum Mittelteil (22) der Strahlungsabschirmung (20) eingerichtet sind.
- Anlage nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, dass die Strahlungsabschirmung mit einer Vielzahl mechanischer Verstärkungselemente (56) ausgestattet ist, die zwischen sich mindestens einen Teil der Befestigungselemente (36) des Bodens und oder der Stützelemente (38) verbinden.
- Anlage nach vorangehendem Anspruch, dadurch gekennzeichnet, dass die mechanischen Verstärkungselemente (56) radial innere Enden aufweisen, die im Bereich eines zentralen Verbindungsorgans (58) miteinander verbunden sind, um das radial nach innen mehrere Luftdurchgänge (24) begrenzt sind, wobei jeder von ihnen ebenfalls umfangmäßig von zwei direkt aufeinanderfolgenden mechanischen Verstärkungselementen (56) begrenzt ist.
- Anlage nach Anspruch 8 oder 9, dadurch gekennzeichnet, dass jedes mechanische Verstärkungselement (56) an seinem radial äußeren Ende mit einem der Stützelemente (38) und/oder mit einem der Befestigungselemente (36) des Bodens (4) fest verbunden ist.
- Anlage nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, dass sie Verankerungsmittel umfasst, die eine reversible Verankerung des Befestigungssystems (3) auf dem Behälter (1) erlaubt, wobei die Verankerungsmittel vorzugsweise Fixiermittel (64) umfasst, die zum Zusammenwirken mit Handhabungszapfen (62) bestimmt sind, die auf dem Behälter (1) vorgesehen sind.
- Anlage nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, dass jedes Befestigungselement (36) ein Kontaktende mit dem Behälterboden aufweist, das die Form einer Wärmeisolationsschicht annimmt.
- Verfahren zur Lagerung eines Behälters (1), der zu einer Anlage (100) nach einem der vorangehenden Ansprüche gehört, dadurch gekennzeichnet, dass es die Platzierung des Behälters (1) auf dem Befestigungssystem (3) umfasst, das auf dem Fußboden (5) derart eingerichtet ist, dass die Kühlluftzirkulationszone (34) des Behälterbodens (4) entsteht.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
FR1903249A FR3094549B1 (fr) | 2019-03-28 | 2019-03-28 | Ensemble comprenant un emballage pour l’entreposage de matieres radioactives, et son systeme de support |
PCT/FR2020/050516 WO2020193901A1 (fr) | 2019-03-28 | 2020-03-12 | Ensemble comprenant un emballage pour l'entreposage de matieres radioactives, et son systeme de support |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3928330A1 EP3928330A1 (de) | 2021-12-29 |
EP3928330B1 true EP3928330B1 (de) | 2023-05-24 |
Family
ID=67875540
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP20725883.1A Active EP3928330B1 (de) | 2019-03-28 | 2020-03-12 | Anlage umfassend einen behälter zur lagerung von radioaktivem material und zugehöriges befestigungssystem |
Country Status (4)
Country | Link |
---|---|
EP (1) | EP3928330B1 (de) |
KR (1) | KR20210141967A (de) |
FR (1) | FR3094549B1 (de) |
WO (1) | WO2020193901A1 (de) |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113077917B (zh) * | 2021-03-23 | 2024-03-22 | 中国原子能科学研究院 | 放射性样品转运装置和转运系统 |
Family Cites Families (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5661695A (en) * | 1979-10-11 | 1981-05-27 | British Nuclear Fuels Ltd | Material transporting vessel |
FR3006098B1 (fr) * | 2013-05-22 | 2015-06-26 | Tn Int | Emballage d'entreposage de combustible irradie comprenant des rails amortis de guidage d'etui |
FR3034246B1 (fr) * | 2015-03-25 | 2017-04-28 | Tn Int | Dispositif de support d'un emballage de transport / entreposage de matieres radioactives, comprenant un carenage de guidage d'air de refroidissement de l'emballage par convection naturelle |
-
2019
- 2019-03-28 FR FR1903249A patent/FR3094549B1/fr active Active
-
2020
- 2020-03-12 WO PCT/FR2020/050516 patent/WO2020193901A1/fr unknown
- 2020-03-12 KR KR1020217032358A patent/KR20210141967A/ko not_active Application Discontinuation
- 2020-03-12 EP EP20725883.1A patent/EP3928330B1/de active Active
Also Published As
Publication number | Publication date |
---|---|
WO2020193901A1 (fr) | 2020-10-01 |
FR3094549B1 (fr) | 2021-04-16 |
EP3928330A1 (de) | 2021-12-29 |
KR20210141967A (ko) | 2021-11-23 |
FR3094549A1 (fr) | 2020-10-02 |
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