AT69079B - Removal device for reservoirs. - Google Patents

Removal device for reservoirs.

Info

Publication number
AT69079B
AT69079B AT69079DA AT69079B AT 69079 B AT69079 B AT 69079B AT 69079D A AT69079D A AT 69079DA AT 69079 B AT69079 B AT 69079B
Authority
AT
Austria
Prior art keywords
reservoir
reservoirs
water
extraction
removal device
Prior art date
Application number
Other languages
German (de)
Inventor
Ottokar Schwarz
Original Assignee
Ottokar Schwarz
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 by Ottokar Schwarz filed Critical Ottokar Schwarz
Application granted granted Critical
Publication of AT69079B publication Critical patent/AT69079B/en

Links

Landscapes

  • Investigation Of Foundation Soil And Reinforcement Of Foundation Soil By Compacting Or Drainage (AREA)

Description

  

   <Desc/Clms Page number 1> 
 



  Entnahmevorrichtung für Stauweiher. 



   In jenen Fällen, wo   der undurchlässige Untergrund eines Stauweibers   von genügend mächtigen durchlässigen Bodenschichten überlagert ist, wird es möglich sein, das in diesen Schichten eingedrungene Wasser mittels eines (mehrerer voneinander   unabhängiger)   Drainagesystemes (Drainagesysteme) oder Sickerstollen zu sammeln und zu einem Entnahmeturme, der gleichzeitig auch als sogenannter   Reinwasserbeh 1ter   dient, zu leiten, von wo aus die Entnahmeleitung das Wasser seiner Bestimmung zuführt. Die Drainrohre bzw. die Sickerstollen werden in solcher Tiefe angelegt, dass die darüberlagernden   Bodenschichten   ihre Aufgabe, als Filter zu wirken, nachkommen können.

   Der Wasserzufluss zum Entnahmeturm jedes der einzelnen Drainagesysteme bzw. der   Sickerstollen   kann mittels Absperrvorrichtungen 
 EMI1.1 
 und dadurch die sogenannte Filtergeschwindigkeit geregelt werden. Mittels Umleitungen können unter Umgehung des Entnahmeturmes die Drainagesysteme oder die Sickerstollen direkt an die   Entnahmeleitung   angeschlossen werden. In Fig. 1 und 2 ist die Zuleitung dos Drainagesystemes II zum Entnahmeturm in jener Strecke, welche das Gebiet des Systems I schneidet, mit dichten Wandungen ausgeführt gedacht. 



   Die Vorteile diese Art von Wasserentnahme gegenüber den heute gebräuchlichen sind hauptsächlich folgende :
1. Das entnommene Wasser wird mechanisch und chemisch gereinigt, auf eine   kon-   stante Temperatur gebracht und wird in vielen Fällen infolge des langsamen   Dnrchsickerns   der durchlässigen Stauweihersohle eine vorteilhafte Änderung des Härtegrades und der chemischen Eigenschaften erfahren. 



   2. Der nutzbare Staninhalt des Weihers wird durch die Beseitigung des oberirdischen sogenannten toten Raumes und durch die umfangreiche Heranziehung des unterirdischen Staubeckens (durch Wasser   ausfüllbare Haume   in den   durchlässigen Sohlenschichten) ver-   grössert. 



   3. Ohne den Betrieb des   Wasserwerlies einstellen   zu müssen, ist es möglich, den Stauweiher bis auf den durch die Anlage der Entleerungsleitung bedingten Grundwasserstand zu entleeren, um Nachtragsherstellungen oder Ausbesserungen an allen Teilen des Stauweihers, der Stauvorrichtung, des Entnahmevorrichtungen usw.   durchzuführen   ;   z.   B. um   Drainagesystom I auszubessern, wird   es abgesperrt und der Stauweiher entleert. System II liefert das für den Betrieb nötige Wasser (natürliches Grundwasser), während der Überschuss durch die Entleerungsleitung abfliesst. 

**WARNUNG** Ende DESC Feld kannt Anfang CLMS uberlappen**.



   <Desc / Clms Page number 1>
 



  Removal device for reservoirs.



   In those cases where the impermeable subsoil of a dam is covered by sufficiently thick, permeable soil layers, it will be possible to collect the water that has penetrated into these layers by means of one (several independent) drainage systems (drainage systems) or seepage tunnels and to a removal tower that at the same time also serves as a so-called pure water container, from where the extraction line supplies the water to its destination. The drainage pipes or the seepage tunnels are created at such a depth that the overlying soil layers can fulfill their task of acting as a filter.

   The water inflow to the extraction tower of each of the individual drainage systems or the seepage tunnels can be controlled by means of shut-off devices
 EMI1.1
 and thereby the so-called filter speed can be regulated. By means of diversions, the drainage systems or the seepage tunnels can be connected directly to the extraction line while bypassing the extraction tower. In Fig. 1 and 2, the supply line dos drainage system II to the extraction tower in the route that intersects the area of system I, designed with tight walls.



   The advantages of this type of water extraction compared to the ones commonly used today are mainly as follows:
1. The withdrawn water is mechanically and chemically cleaned, brought to a constant temperature and, in many cases, will experience an advantageous change in hardness and chemical properties as a result of the slow seepage of the permeable reservoir bottom.



   2. The usable content of the pond is increased by the elimination of the so-called dead space above ground and by the extensive use of the underground reservoir (water-filled roofs in the permeable bed layers).



   3. Without having to stop the operation of the waterway, it is possible to empty the reservoir down to the groundwater level caused by the installation of the drainage pipe in order to carry out additions or repairs to all parts of the reservoir, the reservoir, the extraction device, etc. z. B. to repair Drainagesystom I, it is shut off and the reservoir emptied. System II supplies the water required for operation (natural groundwater), while the excess flows through the drainage pipe.

** WARNING ** End of DESC field may overlap beginning of CLMS **.

 

Claims (1)

PATENT-ANSPRUCH : Entnahmevorrichtung für Stauweiher, dadurch gekennzeichnet, dass unter der Stauweihersohle in den durchlässigen Schichten Drainages) 0steme oder Sickerstollen eingebaut sind, die zu einem mit den nötigen Absperr- und Umleitungsvorriehtungen versebenen Entnahmeturm führen, zum Zwecke der Filterung des Wassers, der Vergrösserung des nutzbaren Stauinhaltes und der Ermöglichung der Trockenlegung des Stauweihers bei gleichzeitiger Aufrechterbaltang des Wasserwerksbetriebes. **WARNUNG** Ende CLMS Feld Kannt Anfang DESC uberlappen**. PATENT CLAIM: Extraction device for reservoirs, characterized in that drainage systems or seepage tunnels are installed under the reservoir bottom in the permeable layers, which lead to an extraction tower with the necessary shut-off and diversion devices for the purpose of filtering the water, increasing the usable reservoir content and enabling the reservoir to be drained while at the same time maintaining the waterworks. ** WARNING ** End of CLMS field may overlap beginning of DESC **.
AT69079D 1913-12-27 1913-12-27 Removal device for reservoirs. AT69079B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
AT69079T 1913-12-27

Publications (1)

Publication Number Publication Date
AT69079B true AT69079B (en) 1915-06-25

Family

ID=3590955

Family Applications (1)

Application Number Title Priority Date Filing Date
AT69079D AT69079B (en) 1913-12-27 1913-12-27 Removal device for reservoirs.

Country Status (1)

Country Link
AT (1) AT69079B (en)

Similar Documents

Publication Publication Date Title
DE69018644T2 (en) NUCLEAR POWER PLANT AND CONSTRUCTION METHOD THEREFOR.
DD157920A5 (en) POND WITH FILTERED WATER
AT69079B (en) Removal device for reservoirs.
Al-Kharabsheh Ground-water quality deterioration in arid areas: a case study of the Zerqa river basin as influenced by Khirbet Es-Samra waste water (Jordan)
KR101145836B1 (en) Apparatus and method for gathering river bed water
CN105201041B (en) A kind of seasonal shoal river alluvial flat formula intake strucure and water intaking technique
Wiancko Environmental design and operation of Nanticoke thermal generating station
CN207904103U (en) A kind of Water Cube integrated combined type complex ecological dam
CN111635024A (en) Coal mine underground online self-cleaning comprehensive water supply purification station and water supply method
CN218323052U (en) Town road drainage structures
DE340981C (en) Device for generating water power from mountain streams and other smaller watercourses
DE102010026904A1 (en) Water reservoir system for storing fresh water from e.g. continuous rainfall during storm, has piping system interconnected with water power plants to generate renewable energy and flood channels that reaches level over normal water level
Stone Design of Ralph D. Bollman Water‐Treatment Plant
DE2527121A1 (en) Autogenous water pressure producer using mountain lakes - takes pressure from water column in pipe over mountain side for driving hydraulic machine
Morgan Maintenance of Fine Bubble Diffusion
AT307317B (en) Large-capacity container with collecting basin for liquids that damage the groundwater
AT87256B (en) Device for extracting the river bed load.
AT67943B (en) Methods for cleaning iron removal equipment.
AT50954B (en) Equipment for the removal and removal of debris and alluvial sand from running water.
AT29793B (en) Turbine system.
DE653779C (en) Cooling tower
JP4544060B2 (en) Osmotic intake system
AT77576B (en) Process for draining liquids into the earth&#39;s interior.
DE570825C (en) Device for displaying the time of the required desludging of two-story small wastewater treatment plants
AT44865B (en) Device for planting flowers etc. on parapet walls, in particular on window sills.