JP2000257752A - Method for regenerating waste pipe - Google Patents

Method for regenerating waste pipe

Info

Publication number
JP2000257752A
JP2000257752A JP11064150A JP6415099A JP2000257752A JP 2000257752 A JP2000257752 A JP 2000257752A JP 11064150 A JP11064150 A JP 11064150A JP 6415099 A JP6415099 A JP 6415099A JP 2000257752 A JP2000257752 A JP 2000257752A
Authority
JP
Japan
Prior art keywords
pipe
new
new pipe
filling
filler
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.)
Pending
Application number
JP11064150A
Other languages
Japanese (ja)
Inventor
Kiyoshi Shimizu
潔 清水
Motoki Ikeyama
基樹 池山
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kubota Corp
Original Assignee
Kubota Corp
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 Kubota Corp filed Critical Kubota Corp
Priority to JP11064150A priority Critical patent/JP2000257752A/en
Publication of JP2000257752A publication Critical patent/JP2000257752A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L1/00Laying or reclaiming pipes; Repairing or joining pipes on or under water

Abstract

PROBLEM TO BE SOLVED: To lay a new pipe while making the shared water flow in a regeneration block without providing a bypass passage by inserting a new pipe into a waste pipe, and filling a filler into a clearance between the new pipe and the waste pipe while using the inside of the new pipe as a passage for shared water. SOLUTION: After inserting a new pipe 14 into a waste pipe 10 from an insertion hole 11, a protector member is made to abut on an end of the new pipe 14, and a wire of a winch is connected to the protector member, and the new pipe 14 is pulled into the waste pipe 10. Partitioning walls 29, 30 are formed in a clearance between the new pipe 14 and the waste pipe 10, and a filler supplying pipe 31 is provided at an upper end of one partitioning wall 29, and a filler confirming pipe 32 is provided at an upper end of the other partitioning wall 30. A filler 35 is supplied to a clearance 34 between the new pipe 14 and the waste pipe 10 for filling from the ground through a supplying pipe 33 connected to the supply pipe 31. The filler confirming pipe 32 function as an air discharging port, and confirms the conclusion of filling with a flow of the filler 35 out of the filling confirming pipe 32.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は老朽管の更生方法に
関する。
The present invention relates to a method for rehabilitating an old pipe.

【0002】[0002]

【従来の技術】下水用の管路として、樹脂管などを用い
た管路が用いられている。このような管路が老朽化した
場合には、その老朽管の内部に、この老朽管よりもやや
口径の小さな新管を挿入して敷設する、いわゆるパイプ
インパイプ工法で、この老朽管を更生することが行われ
ている。
2. Description of the Related Art A pipe using a resin pipe or the like is used as a pipe for sewage. When such a pipe becomes obsolete, a new pipe with a slightly smaller diameter than this aging pipe is inserted and laid inside the aging pipe. That is being done.

【0003】その場合に、従来においては、更生区間の
外のたとえば道路上などにバイパス路を設けて供用水を
通すことで、更生区間では老朽管の中に供用水を通さな
いようにして施工するのが一般的である。しかし、わざ
わざバイパス路を設けなければならないという問題点が
ある。そこで従来、バイパス管を無くして、供用しなが
ら更生するという要求が高まり、これに応えるために、
老朽管内に供用水を溜め、新管をフロートで浮かせた状
態で老朽管内に送り込んで配管する方法などが提案され
ている。
[0003] In such a case, conventionally, a bypass is provided outside the rehabilitation section, for example, on a road, and the service water is allowed to pass therethrough. It is common to do. However, there is a problem that a bypass path must be provided. In the past, there has been a growing demand for rehabilitation while operating without the bypass pipe, and in order to respond to this,
A method has been proposed in which service water is stored in an aging pipe, and a new pipe is sent to the aging pipe while being floated by a float and then plumbed.

【0004】[0004]

【発明が解決しようとする課題】配管後の新管と老朽管
との隙間にはエアーモルタルなどの中込め材を充填する
必要がある。その場合に、上記のように老朽管内に供用
水を溜めたうえで新管を浮かせて配管する工法では、老
朽管内への新管の送り込みについては問題ないが、中込
め材の充填時に困難が生じるという問題点がある。また
中込め材の充填時には、新管が浮力を受けて浮き上がろ
うとするために、それを阻止するためのブロックなどを
管路の頂部における新管と老朽管の隙間の部分に設置し
なければならず、そのための工事に手間を要するという
問題点がある。
It is necessary to fill a gap between the new pipe and the deteriorated pipe after the piping with an infill material such as air mortar. In such a case, as mentioned above, with the construction method in which new pipes are floated after storing service water in the old pipes, there is no problem with sending the new pipes into the old pipe, but difficulties are encountered when filling the infill material. There is a problem that occurs. In addition, when filling the infill material, a block or the like to prevent the new pipe from rising due to buoyancy must be installed in the gap between the new pipe and the old pipe at the top of the pipeline. However, there is a problem that it takes time and labor for the construction.

【0005】そこで本発明は、このような問題点を解決
して、バイパス路を設けずに更生区間に供用水を通しな
がら新管を敷設できるようにするとともに、敷設後の新
管と老朽管との隙間への中込め材の充填を容易に行える
ようにし、しかもその際に新管の浮き上がりを簡単に防
止できるようにすることを目的とする。
Accordingly, the present invention has been made to solve the above-mentioned problems, and allows a new pipe to be laid while supplying service water to a rehabilitation section without providing a bypass passage. The purpose of the present invention is to make it possible to easily fill the gap with the filling material and to easily prevent the rising of the new pipe at that time.

【0006】[0006]

【課題を解決するための手段】この目的を達成するため
本発明は、供用中の老朽管の中に新管を挿入し、この新
管と老朽管との隙間への供用水の進入を阻止したうえ
で、この新管の内部を供用水の通路としながら、新管と
老朽管との隙間に中込め材を充填するものである。
In order to achieve this object, the present invention is to insert a new pipe into an old pipe in service and to prevent service water from entering a gap between the new pipe and the old pipe. Then, the space between the new pipe and the old pipe is filled with a filling material while the inside of the new pipe is used as a passage for service water.

【0007】このようにすると、新管と老朽管との隙間
への供用水の進入を阻止したうえで新管の内部を供用水
の通路とすることで、バイパス路を設けることなしに供
用水を通しながら新管を敷設することが可能であるのみ
ならず、新管と老朽管との隙間へ問題なく中込め材を充
填することが可能であり、しかも新管の内部に供用水を
通すことで、中込め材の充填時に更生新管が浮力によっ
て浮き上がることが防止される。
[0007] In this manner, the service water is prevented from entering the gap between the new pipe and the old pipe, and the inside of the new pipe is used as a service water passage, so that the service water can be provided without providing a bypass. It is possible not only to lay a new pipe while passing through it, but also to fill the gap between the new pipe and the old pipe with the filling material without any problem, and to pass the service water inside the new pipe This prevents the rehabilitating new pipe from rising due to buoyancy when filling the infill material.

【0008】[0008]

【発明の実施の形態】図1において、10は樹脂管など
によって構成された老朽管で、地中に埋設されて下水路
を形成している。この老朽管10の内部に新管を挿入し
て更生する場合には、図示のように管路に沿って適当距
離をおいた位置に一対の人孔11、12を地表から管1
0に向けて形成する。あるいは既設の一対の人孔を利用
する。そして、供用下水13を老朽管10の内部すなわ
ちその底部に通したままの状態で、一方の人孔11から
更生用の新管14を老朽管10内に降ろす。この新管1
4は、同様に樹脂管などによって構成され、老朽管10
の内部に挿入できるように老朽管10よりもやや小さな
口径で形成され、また受挿構造の継手部によって互いに
接続可能なように構成されている。他方の人孔12の位
置における老朽管10の内部には、H形鋼などからなる
支持部材15を利用して、ウインチ16を設けておく。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS In FIG. 1, reference numeral 10 denotes an aged pipe constituted by a resin pipe or the like, which is buried underground to form a sewer. When a new pipe is inserted into the aging pipe 10 to rehabilitate it, a pair of manholes 11 and 12 are formed from the surface of the pipe 1 at a suitable distance along the pipeline as shown in the figure.
Formed toward zero. Alternatively, a pair of existing human holes is used. Then, a new pipe 14 for rehabilitation is lowered into the old pipe 10 from one of the human holes 11 while the service sewage 13 is kept passing through the inside of the old pipe 10, that is, the bottom thereof. This new tube 1
The aging pipe 10 is similarly constituted by a resin pipe or the like.
It is formed with a slightly smaller diameter than the aged pipe 10 so that it can be inserted into the inside, and is configured to be connectable to each other by a joint portion of a receiving structure. A winch 16 is provided inside the aged pipe 10 at the position of the other human hole 12 using a support member 15 made of H-shaped steel or the like.

【0009】人孔11の位置において新管14を老朽管
10の内部に降ろしたなら、リング状の当て部材17を
この新管14の端部に当て、ウインチ16のワイヤ18
を当て部材17に連結して、この新管14を老朽管10
の内部に引き込む。なお、人孔11の位置に設けたジャ
ッキによって新管14を老朽管10の内部に押し込むな
どの方法を用いてもよく、老朽管10の内部への新管1
4の送り込み方法は任意である。このようにして、複数
の新管14を、互いに接続しながら、人孔11、12ど
うしの間における老朽管10の内部に送り込む。
When the new pipe 14 is lowered into the deteriorated pipe 10 at the position of the human hole 11, a ring-shaped contact member 17 is applied to the end of the new pipe 14, and the wire 18 of the winch 16 is moved.
Is connected to the contact member 17, and the new pipe 14 is
Pull inside. A method in which the new pipe 14 is pushed into the aging pipe 10 by a jack provided at the position of the human hole 11 may be used.
The sending method of No. 4 is optional. In this way, the plurality of new pipes 14 are fed into the deteriorated pipe 10 between the human holes 11 and 12 while being connected to each other.

【0010】更生用の新管14の送り込みが完了したな
ら、図2に示すように、更生区間よりも上流側および下
流側における老朽管10の内部に土嚢などによって堰2
0、21を設ける。また新管14によって更生される管
路の両端を蓋22、23によって塞ぐ。上流側の蓋22
には流入口24を形成して、上流側の堰20によりせき
止められた下水13の中に設置した水中ポンプ25から
の給水パイプ26を流入口24に接続する。下流側の蓋
23には流出口27を形成して、この流出口27に接続
した排水パイプ28を、下流側の堰21よりもさらに下
流側の老朽管10の内部に導く。
When the feeding of the new pipe 14 for rehabilitation is completed, as shown in FIG. 2, the weir 2 is placed inside the deteriorated pipe 10 upstream and downstream of the rehabilitation section by sandbags or the like.
0 and 21 are provided. Both ends of the pipeline rehabilitated by the new pipe 14 are closed by lids 22 and 23. Upstream lid 22
An inlet 24 is formed, and a water supply pipe 26 from a submersible pump 25 installed in the sewage 13 blocked by the upstream weir 20 is connected to the inlet 24. An outlet 27 is formed in the lid 23 on the downstream side, and the drain pipe 28 connected to the outlet 27 is guided to the inside of the deteriorated pipe 10 further downstream than the weir 21 on the downstream side.

【0011】そして、上流がら流れてくる供用下水13
を水中ポンプ25により新管14の内部に供給して、こ
の新管14の内部に溜める。すなわち、蓋22の流入口
24と、特に蓋23の流出口27とは、新管14の内部
に一定水位の十分な重量の下水13を溜めることができ
る高さの位置に形成しておく。新管14の内部では、図
3に示すように一定水位の下水13が溜まると、水中ポ
ンプ25によって上流から供給される下水13の量だ
け、流出口27から下流側へ溢れ出す。
The service sewage 13 flowing from the upstream
Is supplied to the inside of the new pipe 14 by the submersible pump 25 and stored inside the new pipe 14. That is, the inflow port 24 of the lid 22 and, in particular, the outflow port 27 of the lid 23 are formed at a position where the sewage 13 having a certain level and sufficient weight can be stored inside the new pipe 14. As shown in FIG. 3, when the sewage 13 at a certain water level accumulates inside the new pipe 14, the amount of the sewage 13 supplied from the upstream by the submersible pump 25 overflows from the outlet 27 to the downstream side.

【0012】次に、この状態を維持しながら、図3に示
すように、新管14の管路の両端におけるこの新管14
と老朽管10との隙間の部分に間仕切壁29、30を形
成し、一方の間仕切壁29の上端部分に中込め材の供給
管31を貫通状態で設置するとともに、他方の間仕切壁
30の上端部分に中込め材の充填確認管32を貫通状態
で設置する。そして、供給管31に接続した供給パイプ
33を用いて、地上から、新管14と老朽管10との隙
間34へ向けて、エアーモルタルなどの中込め材35を
供給して充填する。充填確認管32は、充填時のエア抜
き口として機能するとともに、充填が完了したときには
この充填確認管32から中込め材35が流出してくるの
で、その充填が完了したことの確認のために用いられ
る。
Next, while maintaining this state, as shown in FIG.
Partition walls 29, 30 are formed at the gap between the aging pipe 10 and the aging pipe 10, and the supply pipe 31 of the filling material is installed in the upper end part of one of the partition walls 29 in a penetrating state, and the upper end of the other partition wall 30. A filling confirmation tube 32 of the filling material is installed in the portion in a penetrating state. Then, using a supply pipe 33 connected to the supply pipe 31, an infill material 35 such as air mortar is supplied and filled from the ground toward the gap 34 between the new pipe 14 and the deteriorated pipe 10. The filling confirmation tube 32 functions as an air vent at the time of filling, and when the filling is completed, the filling material 35 flows out from the filling confirmation tube 32, so that it is necessary to confirm that the filling is completed. Used.

【0013】この中込め材35の充填時に、新管14は
この中込め材35から浮力を受けるが、上述のように新
管14の内部には一定水位の供用下水13が溜められ
て、それに対応した重量になっているため、充填時に新
管14に浮き上がりなどの事故が発生することを確実に
防止できる。換言すると、流入口24および特に流出口
27を、新管14が中込め材35からの浮力によって浮
き上がらないために十分な重量となる下水13の水位を
確保できる高さに、あらかじめ形成しておく。
At the time of filling the infill material 35, the new pipe 14 receives buoyancy from the infill material 35. As described above, the service sewage 13 at a constant water level is stored inside the new pipe 14, and Since the weight is corresponding, the occurrence of an accident such as floating on the new pipe 14 at the time of filling can be reliably prevented. In other words, the inflow port 24 and especially the outflow port 27 are formed in advance at a height that can secure a water level of the sewage 13 which is sufficient in weight so that the new pipe 14 does not rise due to the buoyancy from the filling material 35. .

【0014】充填後、半日〜1日が経過すると、充填し
た中込め材35が硬化するので、図4に示すようにその
後に止水用の蓋22、23を取り外し、かつ堰20、2
1を解体すれば、更生作業が完了する。このようにする
と、新管14内に供用下水13を通すことで、バイパス
路を設けずに更生区間に新管14を敷設でき、しかも新
管14内に供用下水13を通し、新管14と老朽管10
との隙間34には供用下水13を通さないため、この隙
間34へ容易に中込め材35を充填することができ、さ
らにその際に新管14の浮き上がりを簡単に防止するこ
とができる。
After half a day to one day has passed since the filling, the filled infill material 35 hardens, so that the water blocking lids 22 and 23 are removed as shown in FIG.
If 1 is dismantled, the rehabilitation work is completed. In this way, by passing the service sewage 13 into the new pipe 14, the new pipe 14 can be laid in the rehabilitation section without providing a bypass, and the service sewage 13 is passed through the new pipe 14, and Aged pipe 10
Since the in-service sewage 13 does not pass through the gap 34, the infill material 35 can be easily filled into the gap 34, and at that time, the floating of the new pipe 14 can be easily prevented.

【0015】なお、上記においては老朽管10が下水を
流すための管路である場合を例示したが、この管路内を
流れる供用水の種類は問わない。
In the above description, the case where the aged pipe 10 is a pipe for flowing sewage is illustrated, but the type of service water flowing in this pipe is not limited.

【0016】[0016]

【発明の効果】以上のように本発明によると、供用中の
老朽管の中に新管を挿入し、この新管と老朽管との隙間
への供用水の進入を阻止したうえで、この新管の内部を
供用水の通路としながら、新管と老朽管との隙間に中込
め材を充填するため、バイパス路を設けることなしに供
用水を通しながら新管を敷設することができるうえに、
新管と老朽管との隙間へ問題なく容易に中込め材を充填
することができ、しかも新管の内部に供用水を通すこと
で、中込め材の充填時に更生用の新管が浮力によって浮
き上がることを防止できる。
As described above, according to the present invention, a new pipe is inserted into an aging pipe in service to prevent service water from entering a gap between the new pipe and the aging pipe. While filling the gap between the new pipe and the old pipe with the filling material while using the inside of the new pipe as the water supply path, the new pipe can be laid while passing the water without a bypass. To
The gap between the new pipe and the old pipe can be easily filled with the filling material without any problems.In addition, by passing service water inside the new pipe, the new pipe for rehabilitation is filled with buoyancy when filling the filling material. Floating can be prevented.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の実施の形態の老朽管の更生方法を説明
するための図である。
FIG. 1 is a diagram for explaining a method of rehabilitating an aging pipe according to an embodiment of the present invention.

【図2】図1の次の工事段階を説明するための図であ
る。
FIG. 2 is a view for explaining a next construction stage of FIG. 1;

【図3】図2の次の工事段階を説明するための図であ
る。
FIG. 3 is a view for explaining a next construction stage of FIG. 2;

【図4】図3の次の、工事が完了した段階を説明するた
めの図である。
FIG. 4 is a diagram illustrating a stage following the completion of the construction in FIG. 3;

【符号の説明】[Explanation of symbols]

10 老朽管 13 供用下水 14 新管 20、21 堰 22、23 蓋 24 流入口 27 流出口 34 隙間 35 中込め材 DESCRIPTION OF SYMBOLS 10 Aged pipe 13 Service sewage 14 New pipe 20, 21 Weir 22, 23 Lid 24 Inlet 27 Outlet 34 Gap 35 Filling material

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 供用中の老朽管の中に新管を挿入し、こ
の新管と老朽管との隙間への供用水の進入を阻止したう
えで、この新管の内部を供用水の通路としながら、新管
と老朽管との隙間に中込め材を充填することを特徴とす
る老朽管の更生方法。
1. A new pipe is inserted into an old pipe in service to prevent service water from entering a gap between the new pipe and the old pipe, and then the inside of the new pipe is used as a passage for service water. A method for rehabilitating an old pipe, characterized by filling a gap between the new pipe and the old pipe with a filling material.
JP11064150A 1999-03-11 1999-03-11 Method for regenerating waste pipe Pending JP2000257752A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP11064150A JP2000257752A (en) 1999-03-11 1999-03-11 Method for regenerating waste pipe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP11064150A JP2000257752A (en) 1999-03-11 1999-03-11 Method for regenerating waste pipe

Publications (1)

Publication Number Publication Date
JP2000257752A true JP2000257752A (en) 2000-09-19

Family

ID=13249771

Family Applications (1)

Application Number Title Priority Date Filing Date
JP11064150A Pending JP2000257752A (en) 1999-03-11 1999-03-11 Method for regenerating waste pipe

Country Status (1)

Country Link
JP (1) JP2000257752A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011106537A (en) * 2009-11-16 2011-06-02 Sekisui Chem Co Ltd Method for regenerating existing pipe
JP2012184811A (en) * 2011-03-07 2012-09-27 Ashimori Industry Co Ltd Method for repairing tubular channel

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011106537A (en) * 2009-11-16 2011-06-02 Sekisui Chem Co Ltd Method for regenerating existing pipe
JP2012184811A (en) * 2011-03-07 2012-09-27 Ashimori Industry Co Ltd Method for repairing tubular channel

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