EP1820914B1 - Irrigation device - Google Patents
Irrigation device Download PDFInfo
- Publication number
- EP1820914B1 EP1820914B1 EP06003472A EP06003472A EP1820914B1 EP 1820914 B1 EP1820914 B1 EP 1820914B1 EP 06003472 A EP06003472 A EP 06003472A EP 06003472 A EP06003472 A EP 06003472A EP 1820914 B1 EP1820914 B1 EP 1820914B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- inspection
- irrigation device
- central
- side walls
- guide gutter
- 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.)
- Not-in-force
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03F—SEWERS; CESSPOOLS
- E03F1/00—Methods, systems, or installations for draining-off sewage or storm water
- E03F1/002—Methods, systems, or installations for draining-off sewage or storm water with disposal into the ground, e.g. via dry wells
- E03F1/005—Methods, systems, or installations for draining-off sewage or storm water with disposal into the ground, e.g. via dry wells via box-shaped elements
Definitions
- the invention relates to a Sickerblock for placement in the ground.
- the inspection channel is designed as a continuous tunnel channel.
- the invention has for its object to provide a Sickerblock that is easy to manufacture and inspectable.
- the object is solved by the features of claim 1.
- the essence of the invention consists in inserting into a per se known percolator block an opposing inspection openings connecting, upwardly open guide channel, wherein the original symmetrical column geometry is maintained. Such a guide channel allows for easy inspection. At the same time, the stability of the Sickerblocks is not affected.
- Rigolen hypothalamic valve block 1 Also known as Rigolen hypothalamic valve 1 is used for rainwater management in the soil. Frequently, several leach blocks 1 are connected to each other, arranged side by side, one above the other or in alignment. For this purpose, specific fasteners are used, which are not shown.
- the Sickerblock 1 is known in its basic structure and available on the market. It has a substantially cuboidal housing 2, consisting of a rectangular base plate 3, from this upwardly projecting, mutually parallel, opposite longitudinal side walls 4, 5 and end-side walls 6, 7, and one with the side walls 4, 5, 6 and 7 connected cover plate 8.
- the base plate 3, the cover plate 8 and the side walls 4, 5, 6 and 7 have distributed over its entire surface numerous slot-shaped passage openings 9, the passage of water into and out allow the housing 2.
- the columns 10 are arranged mirror-symmetrically with respect to a centrally between the side walls 4, 5 and perpendicular to the base plate 3 extending central longitudinal plane 11, wherein the central columns 12 are located centrally in the central longitudinal plane 11.
- two longitudinal rows of columns 10 are arranged next to the longitudinal row of central columns 12 on both sides of the central longitudinal plane 11.
- the columns 10 are also mirror-symmetrical with respect to a center between the side walls 6, 7 and perpendicular to the base plate 3 extending center-transverse plane 13 is arranged.
- the central columns 10, which are of medium-transverse plane 13, are not located in the plane 13, but immediately adjacent to both sides thereof.
- four more transverse rows of columns 10 are provided on both sides of the plane.
- the columns 10, 12 are on five parallel to the plane 11 extending longitudinal rows and ten parallel to the plane 13 extending transverse rows.
- the columns 10 can also be arranged in a different form, wherein a symmetrical arrangement, optionally with a different symmetry, is particularly stable.
- the circumferentially outer columns 10, ie the next columns 10, which are adjacent to the side walls 4, 5, 6 and 7, are formed as part of the side walls 4, 5, 6 and 7.
- the side walls 4, 5, 6 and 7 are thus formed by the outer pillars 10 and intermediate wall elements 14 connected thereto, in which the above-mentioned through openings 9 are arranged.
- an inspection opening 15 opening provided for connection of a drainage pipe.
- a circular cover 17 which can be broken open to form an opening corresponding to the inspection opening 15.
- the Sickerblock 1 is an upwardly open, the opposite inspection openings 15 connecting, flat, trough-shaped, one on closed guide surface forming guide groove 18 is used.
- the guide channel 18, starting from the respective inspection opening 15, consists of a connection section 19, a transition section 20 adjoining thereto and a central section 21 located between the transition sections 20.
- the guide channel 18 is mirror-symmetrical with respect to the central longitudinal plane 11 is formed. It is pushed from above onto the longitudinal row of the central columns 12, the guide channel 18 having for this purpose central openings 22 which receive the associated columns 12. In the region of the openings 22, the guide channel 18 upwardly projecting, resting against the columns 12 annular webs 23.
- the openings 22 are provided primarily in the region of the middle section 21, but not in the region of the connection sections 19.
- connection sections 19 In the area of the connection sections 19, the otherwise corresponding to the grid column 10 is recessed.
- the guide channel 18 has on its underside a base 24 which is supported relative to the base plate 3.
- the guide groove 18 is pulled higher in the region of the connecting portion 19 than in the region of the central portion 21.
- the connecting portion 19 has the shape of a semicircle substantially in cross section.
- the central portion 21 is also on a circular arc, but has only 20 to 25% of the height of the terminal portion 19.
- the channel of the connection portion 19 In the region of the transition portion 20, the channel of the connection portion 19 is continuous in the central portion 21 on.
- the guide channel 18 delimits in the lower region an inspection channel 25 which connects the inspection openings 15 and, apart from the guide channel 18, has no direct longitudinal boundary.
- the inspection channel 25 can be regarded as a mental connection of the edges of the opposing inspection openings 15. Centered in the inspection channel 25 are the middle columns 12.
- the guide channel 18 is symmetrical with respect to the central longitudinal plane 11 apertures 26 which allow with an inspection probe 27 an inspection of the area behind the guide channel 18 perpendicular to the central longitudinal plane 11. Through these openings 26, if necessary, the Sickerblock 1 can also be rinsed.
- the openings 26 are arranged at regular intervals, in particular in pairs.
- an inspection probe 27 and, if appropriate, a flushing lance are inserted through an inspection opening 15 into the bead block 1.
- the guide channel 18 guides the probe 27 along a longitudinal direction 28 when the inspection probe 27 is displaced.
- the width of the guide channel 18 is selected such that the probe 27 is pushed either to the left or to the right of the central columns 12 can.
- the connection of the connection portion 19 to the inspection opening 15 is continuously formed, so that both the entry of the inspection probe 27 into the percolation block 1 and the exit from the percolation block 1 is step-free and thus smoothly possible.
- the openings 26 allow inspection of the areas behind the guide channel 18 and, where appropriate, a cleaning of the same with a Spüllanze.
- the inspection channel 25 does not affect the stability of the bead block 1.
- Several seepage blocks 1 arranged in alignment one behind the other and connected by pipes or percolation block connectors can be inspected with an inspection probe 27 in succession.
- FIG. 5 and 6 A second embodiment of the invention described.
- Structurally identical parts receive the same reference numerals as in the first embodiment, to the description of which reference is hereby made.
- Structurally different, but functionally similar parts receive the same reference numerals with a trailing a.
- the essential difference with respect to the first exemplary embodiment lies in the design and in particular in the positioning of the guide groove 18a.
- the terminal portion 19a is centered and aligned with the center longitudinal plane 11 behind the inspection openings 15.
- the center portion 21a is not mirror-symmetrical with respect to the central longitudinal axis 11, but eccentric. in the present in Fig.
- the central portion 21a extends between the central longitudinal row of the columns 12 and the left adjoining the next longitudinal row of columns 10. On the center longitudinal plane 11th opposite side of the central portion 21a extends linearly. On the side facing the central longitudinal plane 11, the central portion 21 a has a semi-cylindrical recesses 22 a, which nestle against the central pillars 12. In this way, the space between the central longitudinal row and the adjoining next row of columns 10, 12 can be optimally utilized.
- the transition portions 20a provide a continuous, smooth connection between the terminal portion 19a and the central portion 21a, so that the inspection probe 27 is smoothly conducted from the terminal portion 19a into the central portion 21a. As in the first embodiment, apertures 26 are provided which have the same function.
- the terminal portion 19a is only slightly higher than the middle portion 21a, as shown in FIG Fig. 6 is apparent. An advantage of the arrangement of the channel 18a is that it has no obstacles in the form of columns 12.
- FIG. 7 and 8th A third embodiment of the invention described. Identical parts are given the same reference numerals as in the first embodiment, on the Description is hereby incorporated. Structurally different, but functionally similar parts receive the same reference numerals with a trailing b.
- the essential difference from the first embodiment is the design of the central portion 21b.
- the guide groove 18b with its portions 19b, 20b and 21b is formed mirror-symmetrically with respect to the central longitudinal plane 11.
- the terminal portions 19b have the same shape as in the first embodiment.
- the middle section 21b is not single-barreled as in the first or second embodiment, but double-barreled.
- the central section 21b has openings 22b, which are led through the columns 12.
- the central portion 21b extends from the central longitudinal plane 11 perpendicular to it in both directions to the adjacent adjacent longitudinal row of columns 10. It is advantageous in this arrangement that the inspection probe 27 is left or right of the columns 12 can be guided past them.
- the shape of a lying number 3 ensures that there are no collisions between the inspection probe 27 and the pillars 12.
- a further advantage of the symmetrical configuration of the guide channel 18b is that, in the case of the connection of a plurality of bead blocks 1b in succession, a straight channel always results for the inspection probe 27.
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- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Hydrology & Water Resources (AREA)
- Public Health (AREA)
- Water Supply & Treatment (AREA)
- Orthopedics, Nursing, And Contraception (AREA)
- Manufacturing Of Micro-Capsules (AREA)
- Revetment (AREA)
- Prostheses (AREA)
- Control Of Eletrric Generators (AREA)
- Medicines That Contain Protein Lipid Enzymes And Other Medicines (AREA)
- Gyroscopes (AREA)
- Fluid-Driven Valves (AREA)
- Massaging Devices (AREA)
- Nozzles (AREA)
Abstract
Description
Die Erfindung betrifft einen Sickerblock zur Anordnung im Erdreich.The invention relates to a Sickerblock for placement in the ground.
Sickerblöcke bzw. Rigolenfüllkörper, die u. a. bei der Regenwasserbewirtschaftung eingesetzt werden, sind seit langem, beispielsweise aus der
Aus der
Der Erfindung liegt die Aufgabe zugrunde, einen Sickerblock zu schaffen, der einfach herstellbar und inspizierbar ist. Die Aufgabe wird durch die Merkmale des Anspruchs 1 gelöst. Der Kern der Erfindung besteht darin, in einen an sich bekannten Sickerblock eine gegenüberliegende Inspektionsöffnungen verbindende, nach oben offene Führungsrinne einzusetzen, wobei die ursprüngliche symmetrische Säulengeometrie erhalten bleibt. Eine derartige Führungsrinne lässt eine einfache Inspektion zu. Gleichzeitig wird die Stabilität des Sickerblocks nicht beeinträchtigt.The invention has for its object to provide a Sickerblock that is easy to manufacture and inspectable. The object is solved by the features of
Weitere vorteilhafte Ausgestaltungen ergeben sich aus den Unteransprüchen.Further advantageous embodiments will be apparent from the dependent claims.
Zusätzliche Merkmale und Einzelheiten der Erfindung ergeben sich aus der Beschreibung dreier Ausführungsbeispiele anhand der Zeichnung.Additional features and details of the invention will become apparent from the description of three embodiments with reference to the drawing.
Es zeigen
- Fig. 1
- eine Außenansicht eines erfindungsgemäßen Sickerblocks gemäß einem ersten Ausführungsbeispiel,
- Fig. 2
- einen Teil eines Mittel-Längs-Schnitts durch die untere Hälfte eines Sickerblocks gemäß
Fig. 1 , - Fig. 3
- einen mittigen Horizontalschnitt durch den Sickerblock gemäß
Fig. 1 , - Fig. 4
- einen Teil-Querschnitt gemäß der Schnittlinie IV-IV in
Fig. 3 , - Fig. 5
- einen
Fig. 3 entsprechenden Schnitt eines Sickerblocks gemäß einem zweiten Ausführungsbeispiel, - Fig. 6
- einen Teil-Querschnitt gemäß der Schnittlinie VI-VI in
Fig. 5 , - Fig. 7
- einen
Fig. 3 entsprechenden Schnitt eines Sickerblocks gemäß einem dritten Ausführungsbeispiel und - Fig. 8
- einen Teil-Querschnitt gemäß der Schnittlinie VIII-VIII in
Fig. 7 .
- Fig. 1
- an external view of a filter block according to the invention according to a first embodiment,
- Fig. 2
- a portion of a central longitudinal section through the lower half of a percolating block according to
Fig. 1 . - Fig. 3
- a central horizontal section through the Sickerblock according to
Fig. 1 . - Fig. 4
- a partial cross-section along the section line IV-IV in
Fig. 3 . - Fig. 5
- one
Fig. 3 corresponding section of a percolation block according to a second embodiment, - Fig. 6
- a partial cross section according to the section line VI-VI in
Fig. 5 . - Fig. 7
- one
Fig. 3 corresponding section of a Sickerblocks according to a third embodiment and - Fig. 8
- a partial cross section according to the section line VIII-VIII in
Fig. 7 ,
Im Folgenden wird unter Bezugnahme auf die
Der Sickerblock 1 ist in seiner Grundstruktur bekannt und am Markt verfügbar. Er weist ein im Wesentlichen quaderförmiges Gehäuse 2 auf, bestehend aus einer rechteckigen Grundplatte 3, von dieser nach oben vorstehenden, jeweils zueinander parallelen, einander gegenüberliegenden Längs-Seitenwänden 4, 5 und Stirn-Seitenwänden 6, 7, sowie einer mit den Seitenwänden 4, 5, 6 und 7 verbundenen Deckplatte 8. Die Grundplatte 3, die Deckplatte 8 sowie die Seitenwände 4, 5, 6 und 7 weisen über ihre ganze Oberfläche verteilt zahlreiche schlitzförmige Durchtritts-Öffnungen 9 auf, die einen Durchtritt von Wasser in das bzw. aus dem Gehäuse 2 ermöglichen.The Sickerblock 1 is known in its basic structure and available on the market. It has a substantially
Zwischen der Grundplatte 3 und der Deckplatte 8 sind zahlreiche vertikale, hohlzylinderförmige, zur Abstützung dienende Säulen 10 angeordnet. Diese sind auf den Kreuzungspunkten eines rechtwinkligen kartesischen Gitters angeordnet. Die Säulen 10 sind bezüglich einer mittig zwischen den Seitenwänden 4, 5 und senkrecht zur Grundplatte 3 verlaufenden Mittel-Längs-Ebene 11 spiegelsymmetrisch angeordnet, wobei die mittleren Säulen 12 mittig in der Mittel-Längs-Ebene 11 liegen. Im vorliegenden Fall sind neben der Längs-Reihe mittlerer Säulen 12 auf beiden Seiten der Mittel-Längs-Ebene 11 noch zwei Längs-Reihen von Säulen 10 angeordnet. Die Säulen 10 sind auch spiegelsymmetrisch bezüglich einer mittig zwischen den Seitenwänden 6, 7 und senkrecht zur Grundplatte 3 verlaufenden Mittel-Quer-Ebene 13 angeordnet. Die bezüglich der Mittel-Quer-Ebene 13 mittleren Säulen 10 liegen nicht in der Ebene 13, sondern unmittelbar benachbart zu beiden Seiten derselben. Zusätzlich sind auf beiden Seiten der Ebene vier weitere Quer-Reihen von Säulen 10 vorgesehen. Insgesamt befinden sich die Säulen 10, 12 auf fünf parallel zur Ebene 11 verlaufenden Längs-Reihen und auf zehn parallel zur Ebene 13 verlaufenden Quer-Reihen. Grundsätzlich ist auch eine andere Zahl von Säulen 10 bzw. von Quer-Reihen oder Längs-Reihen möglich. Die Säulen 10 können auch in anderer Form angeordnet sein, wobei eine symmetrische Anordnung, gegebenenfalls mit einer anderen Symmetrie, besonders stabil ist. Die umfangsseitig äußeren Säulen 10, d. h. die den Seitenwänden 4, 5, 6 und 7 nächsten Säulen 10 sind als Teil der Seitenwände 4, 5, 6 und 7 ausgebildet. Die Seitenwände 4, 5, 6 und 7 werden also durch die außenliegenden Säulen 10 sowie dazwischenliegende, mit diesen verbundene Wand-Elemente 14 gebildet, in denen die oben erwähnten Durchtritts-Öffnungen 9 angeordnet sind.Between the
In der jeweils unteren Hälfte der Seitenwände 6, 7 ist mittig bezüglich der Ebene 11 eine im Folgenden als Inspektions-Öffnung 15 bezeichnete Öffnung zum Anschluss eines Entwässerungs-Rohrs vorgesehen. Über den jeweiligen Inspektions-Öffnungen 15 befindet sich umgeben von einem Ringsteg 16 ein kreisförmiger Deckel 17, der zur Bildung einer der Inspektions-Öffnung 15 entsprechenden Öffnung ausgebrochen werden kann. Der Sickerblock 1 entspricht, soweit bisher beschrieben, dem Stand der Technik.In the respective lower half of the
In den Sickerblock 1 ist eine nach oben offene, die gegenüberliegenden Inspektions-Öffnungen 15 verbindende, flache, muldenförmige, eine an sich geschlossene Führungsfläche bildende Führungs-Rinne 18 eingesetzt. Die Führungs-Rinne 18 besteht ausgehend von der jeweiligen Inspektions-Öffnung 15 aus einem Anschluss-Abschnitt 19, einem sich daran anschlie-ßenden Übergangs-Abschnitt 20 sowie einem zwischen den Übergangs-Abschnitten 20 liegenden Mittel-Abschnitt 21. Die Führungs-Rinne 18 ist spiegelsymmetrisch bezüglich der Mittel-Längs-Ebene 11 ausgebildet. Sie ist von oben auf die Längs-Reihe der mittleren Säulen 12 aufgeschoben, wobei die Führungs-Rinne 18 hierzu mittige Öffnungen 22 aufweist, die die zugehörigen Säulen 12 aufnehmen. Im Bereich der Öffnungen 22 weist die Führungs-Rinne 18 nach oben vorstehende, an den Säulen 12 anliegende Ringstege 23 auf. Die Öffnungen 22 sind primär im Bereich des Mittel-Abschnitts 21, jedoch nicht im Bereich der Anschluss-Abschnitte 19 vorgesehen. Im Bereich der Anschluss-Abschnitte 19 ist die ansonsten dem Gitter entsprechende Säule 10 ausgespart. Die Führungs-Rinne 18 weist auf ihrer Unterseite einen Sockel 24 auf, der gegenüber der Grundplatte 3 abgestützt ist. Die Führungs-Rinne 18 ist im Bereich des Anschluss-Abschnitts 19 höher gezogen als im Bereich des Mittel-Abschnitts 21. Der Anschluss-Abschnitt 19 hat im Wesentlichen im Querschnitt die Form eines Halbkreises. Der Mittel-Abschnitt 21 liegt ebenfalls auf einem Kreisbogen, besitzt jedoch nur 20 bis 25% der Höhe des Anschluss-Abschnitts 19. Im Bereich des Übergangs-Abschnitts 20 geht die Rinne vom Anschluss-Abschnitt 19 kontinuierlich in den Mittel-Abschnitt 21 über. Die Führungs-Rinne 18 begrenzt im unteren Bereich einen die Inspektions-Öffnungen 15 verbindenden Inspektions-Kanal 25, der abgesehen von der Führungs-Rinne 18 keine unmittelbare Längs-Begrenzung besitzt. Der Inspektions-Kanal 25 kann als gedankliche Verbindung der Ränder der einander gegenüberliegenden Inspektions-Öffnungen 15 angesehen werden. Mittig in dem Inspektions-Kanal 25 befinden sich die mittleren Säulen 12. Die Führungs-Rinne 18 weist symmetrisch bezüglich der Mittel-Längs-Ebene 11 Durchbrüche 26 auf, die mit einer Inspektions-Sonde 27 eine Inspektion des hinter der Führungs-Rinne 18 befindlichen Bereichs senkrecht zur Mittel-Längs-Ebene 11 ermöglichen. Durch diese Durchbrüche 26 kann im Bedarfsfall der Sickerblock 1 auch gespült werden. Die Durchbrüche 26 sind in regelmäßigen Abständen, insbesondere paarweise, angeordnet.In the
Bei einer Inspektion wird eine Inspektions-Sonde 27 und danach gegebenenfalls eine Spüllanze durch eine Inspektions-Öffnung 15 in den Sickerblock 1 eingeschoben. Die Führungs-Rinne 18 führt bei einer Verschiebung der Inspektions-Sonde 27 entlang einer Längs-Richtung 28 die Sonde 27. Die Breite der Führungs-Rinne 18 ist so gewählt, dass die Sonde 27 entweder links oder rechts von den mittleren Säulen 12 vorbeigeschoben werden kann. Der Anschluss des Anschluss-Abschnitts 19 an die Inspektions-Öffnung 15 ist stufenlos ausgebildet, so dass sowohl der Eintritt der Inspektions-Sonde 27 in den Sickerblock 1 als auch der Austritt aus dem Sickerblock 1 stufenfrei und damit reibungslos möglich ist. Die Durchbrüche 26 ermöglichen eine Inspektion der hinter der Führungs-Rinne 18 liegenden Bereiche und gegebenenfalls eine Reinigung derselben mit einer Spüllanze. Durch die Beibehaltung der symmetrischen Geometrie der Säulen 10 beeinträchtigt der Inspektions-Kanal 25 die Stabilität des Sickerblocks 1 nicht. Es können mehrere fluchtend hintereinander angeordnete, durch Rohre bzw. Sickerblockverbinder miteinander verbundene Sickerblöcke 1 mit einer Inspektions-Sonde 27 in Folge inspiziert werden.During an inspection, an
Im Folgenden wird unter Bezugnahme auf die
Im Folgenden wird unter Bezugnahme auf die
Claims (9)
- Irrigation device for arrangement in the ground, the irrigation device comprisinga. a substantially cuboidal housing (2) which comprisesi. a base plate (3);ii. two first side walls (6, 7) opposite to each other which project from the base plate (3) and are joined thereto;iii. two second opposite side walls (4, 5) opposite to each other which project from the base plate (3) and are joined thereto;iv. a cover plate (8) which is joined to the first and second side walls (6, 7; 4, 5);b. columns (10) which are arranged between the cover plate (8) and the base plate (3) for supporting them against each other;c. at least one first inspection opening (15) which is arranged in one of the first side walls (6);d. at least one second inspection opening (15) which is arranged in the other one of the first side walls (7);e. an inspection channel (25; 25a; 25b) which interconnects the first and second inspection openings (15); andf. an upwardly open guide gutter (18; 18a; 18b) which interconnects the first and second inspection openings (15) and is inserted in the inspection channel (25; 25a; 25b) for guiding an inspection probe (27) through the inspection channel (25; 25a; 25b),
characterized in thatg. the guide gutter (18; 18a; 18b) is provided with perforations (26). - Irrigation device according to claim 1, characterized in that the housing (2) has a central longitudinal plane (11) and a central transversal plane (13) which is perpendicular thereto.
- Irrigation device according to claim 2, characterized in that the columns (10) are arranged symmetrically relative to the central longitudinal plane (11) and/or relative to the central transversal plane (13).
- Irrigation device according to one of the preceding claims, characterized in that the guide gutter (18; 18a; 18b) has connection portions (19; 19a; 19b) which are in each case arranged in the region of the inspection openings (15), and a central portion (21; 21 a; 21b) which is disposed therebetween.
- Irrigation device according to claim 4, characterized in that the connection portions (19; 19a; 19b) of the guide gutter (18; 18a; 18b) are arranged symmetrically relative to the central longitudinal plane (11).
- Irrigation device according to claim 5, characterized in that the central portion (21; 21a; 21b) of the guide gutter (18; 18a; 18b) is arranged symmetrically or asymmetrically relative to the central longitudinal plane (11).
- Irrigation device according to claim 6, characterized in that the guide gutter (18; 18a; 18b) is on a higher level in the region of the connection portions (19; 19a; 19b) than in the region of the central portion (21; 21a; 21b).
- Irrigation device according to claim 4, characterized in that the guide gutter (18; 18a; 18b) comprises a single passage or a double passage in the region of the central portion (21; 21a; 21b).
- Irrigation device according to one of the preceding claims, characterized in that the guide gutter (18; 18a; 18b) is supported on the base plate (3).
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
AT06003472T ATE428830T1 (en) | 2006-02-21 | 2006-02-21 | LEAKAGE BLOCK |
EP06003472A EP1820914B1 (en) | 2006-02-21 | 2006-02-21 | Irrigation device |
PL06003472T PL1820914T3 (en) | 2006-02-21 | 2006-02-21 | Irrigation device |
DE502006003436T DE502006003436D1 (en) | 2006-02-21 | 2006-02-21 | Sickerblock |
DK06003472T DK1820914T3 (en) | 2006-02-21 | 2006-02-21 | Irrigation |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP06003472A EP1820914B1 (en) | 2006-02-21 | 2006-02-21 | Irrigation device |
Publications (2)
Publication Number | Publication Date |
---|---|
EP1820914A1 EP1820914A1 (en) | 2007-08-22 |
EP1820914B1 true EP1820914B1 (en) | 2009-04-15 |
Family
ID=36808602
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP06003472A Not-in-force EP1820914B1 (en) | 2006-02-21 | 2006-02-21 | Irrigation device |
Country Status (5)
Country | Link |
---|---|
EP (1) | EP1820914B1 (en) |
AT (1) | ATE428830T1 (en) |
DE (1) | DE502006003436D1 (en) |
DK (1) | DK1820914T3 (en) |
PL (1) | PL1820914T3 (en) |
Families Citing this family (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR2929630B1 (en) | 2008-04-02 | 2011-11-25 | Aliaxis Participations | WATER RETENTION BIN FOR CONSTITUTING BY ASSEMBLY OF BINS A DEVICE FOR RETENTION OF WATER BURIED IN THE SOIL |
EP2148016B1 (en) | 2008-07-25 | 2013-09-25 | Ralph-Peter Dr.-Ing. Hegler | Triple-dig unit |
DE102009004914A1 (en) * | 2009-01-16 | 2010-07-22 | Rehau Ag + Co. | Versickerbox for a rigging system |
ITVR20110177A1 (en) * | 2011-09-09 | 2013-03-10 | Dakota Italia S P A | MONOLITHIC COCKPIT 600X600. |
CZ2011575A3 (en) | 2011-09-16 | 2013-04-10 | Voda Cz S.R.O. | Infiltration arrangement |
CN107366341A (en) * | 2016-05-13 | 2017-11-21 | 蔡宜真 | Water resource integrates construction method |
NL2016991B1 (en) * | 2016-06-17 | 2018-01-16 | Pipelife Nederland Bv | Box for water storage having lamellar panels |
DE202018105335U1 (en) * | 2018-09-18 | 2019-09-19 | Philipp Heitker | Rigolenkörper for the production of underground rainwater storage rigs |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE202005010090U1 (en) * | 2005-06-24 | 2005-09-22 | Hauraton Betonwarenfabrik Gmbh & Co Kg | Drainage element for percolating surface water comprises column elements spaced and arranged in rows |
-
2006
- 2006-02-21 PL PL06003472T patent/PL1820914T3/en unknown
- 2006-02-21 EP EP06003472A patent/EP1820914B1/en not_active Not-in-force
- 2006-02-21 DK DK06003472T patent/DK1820914T3/en active
- 2006-02-21 DE DE502006003436T patent/DE502006003436D1/en active Active
- 2006-02-21 AT AT06003472T patent/ATE428830T1/en active
Also Published As
Publication number | Publication date |
---|---|
DE502006003436D1 (en) | 2009-05-28 |
DK1820914T3 (en) | 2009-08-10 |
PL1820914T3 (en) | 2009-07-31 |
ATE428830T1 (en) | 2009-05-15 |
EP1820914A1 (en) | 2007-08-22 |
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