JP3025481U - Mechanism of hydraulic discharge of sludge in the lower part of the reservoir - Google Patents
Mechanism of hydraulic discharge of sludge in the lower part of the reservoirInfo
- Publication number
- JP3025481U JP3025481U JP1995014214U JP1421495U JP3025481U JP 3025481 U JP3025481 U JP 3025481U JP 1995014214 U JP1995014214 U JP 1995014214U JP 1421495 U JP1421495 U JP 1421495U JP 3025481 U JP3025481 U JP 3025481U
- Authority
- JP
- Japan
- Prior art keywords
- sludge
- pipe
- reservoir
- valve
- water
- 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.)
- Expired - Lifetime
Links
Landscapes
- Barrages (AREA)
- Other Liquid Machine Or Engine Such As Wave Power Use (AREA)
Abstract
(57)【要約】
【目 的】現在、ダム低部の汚泥等は回収、処理されず
放棄されている。この現状に対し、本考案は規模の大小
を問わず、一般家庭でも使用できるように基本システム
を構成しようとするものである。
【構 成】貯水部(2)に組み合わせた移動部(8)に
よリ、パイプ(4)を適宜な深さに定置してバルブ
(1)を開くことにより、汚泥部(5)はパイプ(3)
を通って排出し、給水部(7)により継続可能な貯水地
低部の汚泥を水圧で排出するメカニズム。
(57) [Summary] [Objective] Currently, sludge in the lower part of the dam is abandoned without being collected and processed. In contrast to this situation, the present invention intends to configure a basic system so that it can be used in general households regardless of the size. [Structure] The sludge part (5) is connected to the pipe by placing the pipe (4) at an appropriate depth and opening the valve (1) by the moving part (8) combined with the water storage part (2). (3)
A mechanism that hydraulically discharges sludge in the lower part of the reservoir that can be discharged through the water supply section (7).
Description
【0001】[0001]
本考案は、貯水池の低部に沈澱した汚泥物を、水圧を利用して効率的に回収排 出するメカニズムを提供しようとするものである。 The present invention is intended to provide a mechanism for efficiently recovering and discharging sludge settled in the lower part of a reservoir using water pressure.
【0002】[0002]
従来、例えば、ダム等の低部の汚泥物は回収、排出されず、放置されている現 状である。 Conventionally, for example, low-level sludge such as dams has not been collected and discharged, and is left as it is.
【0003】[0003]
この現状に対し、本考案は水圧を利用した配管機構を構成して、無動力で低部 の汚泥を排出するメカニズムを提供するものである。 In response to this situation, the present invention provides a mechanism for constructing a piping mechanism using water pressure and discharging sludge at a low portion without power.
【0004】[0004]
貯水部(2)に組み合わせた移動部(8)により、パイプ(4)を適宜な深さ に定置してバルブ(1)を開くことにより、汚泥部(5)はパイプ(3)を通っ て排出し給水部(7)により継続可能である。 本考案は、以上のような構成からなる貯水池低部の汚泥を水圧で排出するメカ ニズムである。 By moving the pipe (4) to an appropriate depth by the moving part (8) combined with the water storage part (2) and opening the valve (1), the sludge part (5) passes through the pipe (3). It can be discharged and continued by the water supply section (7). The present invention is a mechanism for hydraulically discharging sludge in the lower part of the reservoir configured as described above.
【0005】[0005]
【図1】のように、直立したパイプ(4)の下端部を汚泥部(5)に挿入し、 バルブ(1)は水面(6)の下部の水圧を作用できる状態に定置することにより バルブ(1)を開くときは、水圧により汚泥部(5)はパイプ(4)とパイプ( 3)を通って貯水部(2)の外部に排出され、パイプ(3)を汚泥部(5)のレ ベルより降下させて配列すると汚泥の排出は効果的になる。[Fig. 1] As shown in Fig. 1, the lower end of the upright pipe (4) is inserted into the sludge part (5), and the valve (1) is placed under the water surface (6) so that the water pressure can be applied. When opening (1), the sludge part (5) is discharged to the outside of the water storage part (2) through the pipe (4) and the pipe (3) by the water pressure, and the pipe (3) is discharged to the sludge part (5). The sludge discharge will be effective if it is arranged below the level.
【0006】[0006]
【実施例】【Example】
【図1】のように、貯水部(2)の側面に直立して組み合わせた移動部(8) によりパイプ囲を適宜な深さに定置してバルブ(1)を開くことができるから、 汚泥部(5)はパイプ(3)を通って排出し、給水部(7)により継続可能であ る。 なお、移動部(8)はパッキンにより漏水することなくパイプ(3)、(4) を上下に移動できるもので、給水部(7)により継続して使用できる。 又、パイプ(8)は伸縮管とか移動機能を付加することにより、一層効果的に なる。[Fig. 1] As shown in Fig. 1, since the pipe enclosure can be placed at an appropriate depth and the valve (1) can be opened by the moving part (8) which is vertically assembled on the side surface of the water storage part (2), the sludge can be opened. The part (5) discharges through the pipe (3) and can be continued by the water supply part (7). The moving part (8) can move the pipes (3) and (4) up and down without leaking water by the packing, and can be continuously used by the water supply part (7). Further, the pipe (8) becomes more effective by adding a telescopic pipe or a moving function.
【0007】[0007]
貯水池(2)については、適宜な形状、サイズが可能であるほか、特に Reservoir (2) can be of any suitable shape and size, especially
【図1
▲】のように動力を使用せず、水圧により自然循環式に大型ダムに応用できるこ
と は、落葉、ドロ、砂などによりダム(9)、堰堤(10)などに蓄積されたヘド ロ状態の有機物(14)を水面(15)の落差により、パイプ(11)(12) とバルブ(13)によってダムに取り付けられている既設部(16)を利用し下 流に徐々に流すことができ、生物環境にも役立つという効果を提供するものであ る。[Fig. 1]
The fact that it can be applied to large dams in a natural circulation type by hydraulic pressure without using power as in the case of ▲] is that heddle-like organic substances accumulated in dams (9), dams (10), etc. due to defoliation, mud, sand, etc. Due to the head of the water surface (15), the existing part (16) attached to the dam by the pipes (11) and (12) and the valve (13) can be used to gradually flow (14) downwards, and It also provides the benefit of being beneficial to the environment.
【図1】 本考案の側面A−B断面説明図FIG. 1 is a side view of a side view AB of the present invention.
【図2】 平面図[Figure 2] Plan view
【図3】 ダムの側面断面説明図[Fig. 3] Side sectional view of the dam
【図1】に準じた説明図[Figure 1] Illustration according to
1;バルブ 10;堰堤 2;貯水部 11;パイプ 3;パイプ 12;パイプ 4;パイプ 13;バルブ 5;汚泥部 14;ヘドロ状の有機物 6;水面 15;水面 7;給水部 16;既設部 8;移動部 17;地盤 9;ダム 1; valve 10; dam 2; water storage 11; pipe 3; pipe 12; pipe 4; pipe 13; valve 5; sludge part 14; sludge-like organic matter 6; water surface 15; water surface 7; water supply part 16; existing part 8 Moving part 17; ground 9; dam
Claims (1)
により、パイプ(4)を適宜な深さに定置してバルブ
(1)を開くことにより、汚泥部(5)はパイプ(3)
を通って排出し、給水部(7)により継続可能な貯水池
低部の汚泥を水圧で排出するメカニズム。1. A moving part (8) combined with a water storage part (2).
By setting the pipe (4) to an appropriate depth and opening the valve (1), the sludge part (5) is removed from the pipe (3).
A mechanism that hydraulically discharges sludge in the lower part of the reservoir that is continuously discharged by the water supply section (7).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1995014214U JP3025481U (en) | 1995-12-05 | 1995-12-05 | Mechanism of hydraulic discharge of sludge in the lower part of the reservoir |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1995014214U JP3025481U (en) | 1995-12-05 | 1995-12-05 | Mechanism of hydraulic discharge of sludge in the lower part of the reservoir |
Publications (1)
Publication Number | Publication Date |
---|---|
JP3025481U true JP3025481U (en) | 1996-06-21 |
Family
ID=43160679
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP1995014214U Expired - Lifetime JP3025481U (en) | 1995-12-05 | 1995-12-05 | Mechanism of hydraulic discharge of sludge in the lower part of the reservoir |
Country Status (1)
Country | Link |
---|---|
JP (1) | JP3025481U (en) |
-
1995
- 1995-12-05 JP JP1995014214U patent/JP3025481U/en not_active Expired - Lifetime
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