JP3108735B2 - Reconstruction method of large diameter sewer - Google Patents

Reconstruction method of large diameter sewer

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Publication number
JP3108735B2
JP3108735B2 JP09003890A JP389097A JP3108735B2 JP 3108735 B2 JP3108735 B2 JP 3108735B2 JP 09003890 A JP09003890 A JP 09003890A JP 389097 A JP389097 A JP 389097A JP 3108735 B2 JP3108735 B2 JP 3108735B2
Authority
JP
Japan
Prior art keywords
sewer
existing
water
casing
cutter
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 - Fee Related
Application number
JP09003890A
Other languages
Japanese (ja)
Other versions
JPH10196273A (en
Inventor
正男 三村
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.)
Penta Ocean Construction Co Ltd
Original Assignee
Penta Ocean Construction Co Ltd
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 Penta Ocean Construction Co Ltd filed Critical Penta Ocean Construction Co Ltd
Priority to JP09003890A priority Critical patent/JP3108735B2/en
Publication of JPH10196273A publication Critical patent/JPH10196273A/en
Application granted granted Critical
Publication of JP3108735B2 publication Critical patent/JP3108735B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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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、下水道等の既設の
古い管渠を、シールド掘進機を利用して大口径の新しい
管渠に構築し直す大口径管渠の再構築工法に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a method for reconstructing a large-diameter sewer for rebuilding an existing old sewer such as a sewer into a new large-diameter sewer using a shield machine.

【0002】[0002]

【従来の技術】近年、下水道等の管渠にあって、老朽化
が進み、使用に耐えなくなり、かつ通水量も限界に達し
たものが発生しつつあり、老朽化に対しては内面に肉盛
を施す工法が各種開発され、また通水量の改善策として
は新たな管渠を別の箇所に増築する方法が採られてい
る。この新管渠の構築工法にはシールド掘進機を使用し
た、いわゆるシールド工法やプレキャストコンクリート
管を後方より押し出しつつ掘進する推進工法が採用され
ている。
2. Description of the Related Art In recent years, sewers and other sewers have become obsolete and have become unusable and have reached the limit of water flow. Various methods of filling have been developed, and as a measure to improve water flow, a method of expanding a new sewer at another location has been adopted. The construction method of this new sewer employs a so-called shield method using a shield excavator, or a propulsion method of excavating a precast concrete pipe while extruding it from behind.

【0003】[0003]

【発明が解決しようとする課題】近年、大正から昭和初
期に築造された管渠は、老朽化し、構造物として再構築
しなければならない状態にある。また、新管渠の構築に
はスペース的に限界が生じている場所もあり、通水量の
改善策として管渠を構築する新しいスペースの確保が困
難となり、既設の管渠位置に、これより大口径の管渠を
構築しなければならず、この場合通水を止めずに工事が
行われなければないという問題も生じている。
In recent years, a sewer constructed from Taisho to the early Showa era has become obsolete and must be rebuilt as a structure. In addition, there are places where there is a limit in space for the construction of new sewers, and it is difficult to secure new space for constructing sewers as a measure to improve water flow. It is necessary to construct a pipe with a caliber, and in this case, there is a problem that construction must be performed without stopping water flow.

【0004】本発明はこのような問題に鑑み、既設の古
い管渠を破砕しつつ同じ位置に更に大口径の管渠が容易
に構築でき、更に、その再構築に際し通水状態を維持さ
せつつ工事を行い得る大口径管渠の再構築工法の提供を
目的としたものである。
[0004] In view of such a problem, the present invention can easily construct a large-diameter sewer at the same position while crushing an existing old sewer, and further maintain a water-permeable state when reconstructing the sewer. The purpose is to provide a method for reconstructing large-diameter sewers that can be constructed.

【0005】[0005]

【課題を解決するための手段】上述の如き従来の問題を
解決し、所期の目的を達成するための本発明の主たる特
徴は、後端内部でセグメントを組み立てて覆工を形成
し、該覆工に反力を取って前進するシールド掘進機のケ
ーシング内の隔壁前面側に、中心部分に既設の管渠が侵
入可能で、かつ該既設管渠の外側を掘削する旋回カッタ
ーを備え、前記シールド掘進機を、前記カッター中心部
分に既設管渠を侵入させて、該管渠の外側を掘削しつつ
前進させると同時に、掘削土砂内に固化剤を混入させて
攪拌しつつケーシング先端内に侵入させ、該ケーシング
先端内で順次固化する掘削土砂によって構成される止水
壁により、外部の土水圧に対抗するシール効果をもた
せ、該止水壁と既設管渠との端部を順次砕いて搬出する
ことにより既設管渠を除去しつつ新管渠を構築する大口
径管渠の再構築工法にある。
SUMMARY OF THE INVENTION In order to solve the conventional problems as described above and to achieve the intended purpose, a main feature of the present invention is to assemble a segment inside a rear end to form a lining, On the front side of the partition wall in the casing of the shield machine that advances by taking a reaction force against the lining, an existing culvert can penetrate into the center part, and a turning cutter for digging outside the existing culvert, The shield excavator is moved forward while excavating the existing sewer in the center of the cutter and excavating the outside of the sewer, and at the same time entering the casing tip while mixing and solidifying a solidifying agent in the excavated earth and sand. The water blocking wall made of excavated earth and sand that solidifies sequentially in the front end of the casing has a sealing effect against external soil water pressure, and the ends of the water blocking wall and the existing sewer are crushed sequentially and carried out. The existing sewer In the reconstruction method of large-diameter sewer to build a Shinkanmizo while removed by.

【0006】[0006]

【作用】本発明の大口径管渠の再構築工法では、シール
ド掘進機を、予め掘削形成した立坑より再構築しようと
する既設管渠の端部に設置し、カッターの中心部分に既
設管渠が進入するようにして掘進させる。
In the method for reconstructing a large-diameter sewer according to the present invention, a shield machine is installed at an end of an existing sewer to be reconstructed from a shaft previously excavated and formed, and an existing sewer is installed at a central portion of a cutter. Is made to enter and excavate.

【0007】掘進に際しては、カッターにより既設管渠
の外周部分が掘削されて、ケーシング内の隔壁前面側に
導入され、これと同時に、掘削土砂には主として、セメ
ント系の固化剤が注入され攪拌されることによりケーシ
ング内で固化され、止水壁が造成される。この止水壁に
より、外部の土水圧に対抗するシール効果をもたせる。
During excavation, the outer peripheral portion of the existing sewer is excavated by a cutter and introduced into the front side of the partition wall in the casing. At the same time, a cement-based solidifying agent is mainly injected into the excavated soil and stirred. As a result, the water is solidified in the casing and a water blocking wall is formed. The water blocking wall provides a sealing effect against external soil water pressure.

【0008】このようにして造成された止水壁は、シー
ルド掘進機の掘進毎に一定の厚さ分を残して後端より順
次砕くとともに、既設管渠の後端を砕き、シールド掘進
機の掘削土砂搬出装置により搬出する。尚、シールド掘
進機の後端内では一定のストローク分掘進毎にセグメン
ト組み立てによる覆工を形成し、その覆工に反力を取っ
てシールド掘進機を推進させる。
The water stop wall thus formed is crushed sequentially from the rear end while leaving a constant thickness every time the shield excavator excavates, and the rear end of the existing sewer is crushed, and It is carried out by the excavated earth and sand removal device. In the rear end of the shield machine, lining is formed by assembling the segments every fixed stroke, and the shield machine is propelled by taking a reaction force to the lining.

【0009】また、止水用栓体及びこれを貫通させた通
水管を使用することにより、既設管渠の通水を維持させ
つつ新管渠が構築できる。
Further, by using the water stopping plug and the water pipe penetrating therethrough, a new pipe can be constructed while maintaining the water flow of the existing pipe.

【0010】[0010]

【発明の実施の形態】次に本発明の実施の形態を図面に
ついて説明する。
Embodiments of the present invention will now be described with reference to the drawings.

【0011】本発明工法には、図1に示すようにケーシ
ング1の先端に、中心部分に既設管渠Aが侵入可能な開
口を有する旋回カッター2を備えたシールド掘進機Bを
使用する。このシールド掘進機Bは、前部の掘削部と後
方側を仕切る隔壁3の後方内部にスクリュー式、ベルト
式等のコンベアからなる土砂搬出装置4が備えられてい
るとともに、ケーシング1の後端内でセグメントを組み
立てて覆工Cを順次構築するセグメント組み立て装置
(図示せず)及び、組み立てられた覆工Cに反力を持た
せて推進させる推進装置(図示せず)を有するものが使
用される。
In the method of the present invention, as shown in FIG. 1, a shield excavator B provided with a revolving cutter 2 at the center of a casing 1 and having an opening into which an existing sewer A can enter is provided at the front end. The shield machine B is provided with a sediment discharging device 4 including a screw-type or belt-type conveyor inside a rear wall of a partition wall 3 that separates a front excavation portion from a rear side. And a segment assembling apparatus (not shown) for sequentially assembling the segments to construct the lining C and a propulsion apparatus (not shown) for propelling the assembled lining C with a reaction force. You.

【0012】カッター2は、ケーシング1の前端部内に
旋回可能に支持させた旋回筒5の先端に支持されてお
り、一例として旋回筒5からその中心方向側に向けた放
射状配置のスポーク6に多数の掘削刃を固定した構造の
ものが使用できる。この他、リング状の面板にスリット
及びビットを設けた形式のものでもよく、更に既設管渠
Aが円形でない場合には、スポーク6の先端に出入動作
するコピーカッターを設けたものを使用する。
The cutter 2 is supported at the tip of a swivel cylinder 5 rotatably supported in the front end of the casing 1. For example, a large number of cutters 2 are provided on spokes 6 arranged radially from the swivel cylinder 5 toward the center thereof. Can be used. In addition, a type in which a slit and a bit are provided on a ring-shaped face plate may be used. Further, when the existing sewer A is not circular, a type provided with a copy cutter that moves in and out at the tip of the spoke 6 is used.

【0013】旋回筒5は隔壁3に支持させた油圧モータ
ー等の駆動源5aによって旋回動作されるようになって
いる。
The turning cylinder 5 is turned by a driving source 5a such as a hydraulic motor supported on the partition 3.

【0014】この旋回筒5及び前述したカッター2のス
ポーク6に設けた固化剤供給路(図示せず)を通し、ス
ラリー状としたセメント系の固化剤が、カッター2のス
ポーク6に設けた固化剤注入ノズル7より掘削土砂内に
注入されるようになっている。この他、コピーカッター
の先端より固化剤を流出させるようにしてもよい。
The slurry-type cement-based solidifying agent is passed through the revolving cylinder 5 and the solidifying agent supply passage (not shown) provided in the spokes 6 of the cutter 2, and solidified in the spokes 6 of the cutter 2. The material is injected into the excavated earth and sand from the agent injection nozzle 7. In addition, the solidifying agent may be caused to flow out from the tip of the copy cutter.

【0015】また、旋回筒5の内面には土塊吹き抜け防
止具8が固定されている。これには一例として、円板状
をなし、放射状のスリット9が多数形成され、前面側の
スリット縁部には掘削用のビット10,10……が多数
突設されたものが使用できる他、スポーク状のものであ
ってもよい。
Further, on the inner surface of the swivel cylinder 5, an earthen blow-through prevention tool 8 is fixed. As an example, a disk-shaped one having a large number of radial slits 9 and a large number of excavating bits 10, 10,... It may be spoke-shaped.

【0016】隔壁3からは前方側に向けて栓体支持用の
中空の支軸11が突出され、その先端に既設管渠A内を
閉鎖する栓体12が支持されている。栓体12は外周に
水や風気の注入によって膨脹するゴムチューブ状の止水
材13が固定されている。
A hollow support shaft 11 for supporting a plug is protruded from the partition wall 3 toward the front side, and a plug 12 for closing the inside of the existing culvert A is supported at the tip thereof. The stopper 12 has a rubber tube-shaped water-stopping material 13 fixed on the outer periphery thereof, which is expanded by injection of water or air.

【0017】栓体12及び支軸11には既設管渠A内の
流水を流過させるための通水路14が形成され、その後
端に通水管16が連結されるようになっている。
A water passage 14 is formed in the plug 12 and the support shaft 11 for flowing water in the existing pipe A, and a water pipe 16 is connected to a rear end thereof.

【0018】更に隔壁3の前面側には、つかみ式のバケ
ットもしくはニブラーからなる破砕装置15が設置され
ている。
Further, on the front side of the partition wall 3, a crushing device 15 composed of a gripping bucket or nibble is installed.

【0019】本発明工法の実施に際しては、例えば所望
の施工開始位置に立坑を掘り、その立坑内に既設管渠A
の端部を露出させる。次いでシールド掘削機Bを立坑内
に降ろし、図1に示すように既設管渠Aをカッター2の
中心に挿入させ、旋回筒5を回転させ、かつ、カッター
2のノズル7より固化材を掘削土中に注入しつつ掘進さ
せる。
In carrying out the method of the present invention, for example, a shaft is dug at a desired construction start position, and an existing pipe A is installed in the shaft.
Expose the end of Next, the shield excavator B is lowered into the shaft, the existing sewer A is inserted into the center of the cutter 2 as shown in FIG. 1, the turning cylinder 5 is rotated, and the solidified material is excavated from the nozzle 7 of the cutter 2. Dig while pouring in.

【0020】また、この時、栓体12を既設管渠A内に
挿入し、シール材13を膨脹させて既設管渠A内を施栓
するとともに、支軸11の後端には通水路14に連通す
る通水管16を連結し、ポンプ17により既設管渠A内
の水及びヘドロ等を流過させつつ掘進作業を行う。
At this time, the plug 12 is inserted into the existing sewer A, the sealing material 13 is expanded to plug the existing sewer A, and the rear end of the support shaft 11 is connected to the water passage 14. The communicating water pipes 16 are connected, and the excavation work is performed while the water, sludge, and the like in the existing sewer A are passed by the pump 17.

【0021】掘進中において、まずカッター2をもって
掘削された土砂aは、スラリー状のセメント系固化剤が
注入されて攪拌されることにより流動性を持ち、既設管
渠Aと旋回筒5の内周面との間に隙間なく、密な泥状の
ものとして詰められ、徐々に固化する。そして土塊吹き
抜け防止具8の前面では自立できる程度に固化された状
態の止水壁bとなる。
During the excavation, the earth and sand a first excavated by the cutter 2 has fluidity by being injected and stirred with a slurry-type cement-based solidifying agent. It is packed as a dense mud with no gap between the surface and solidifies gradually. Then, the water blocking wall b is solidified to the extent that it can stand on the front surface of the earthen blow-through prevention tool 8.

【0022】次いで、この固化された改良土砂は、土塊
吹き抜け防止具8の旋回によって後端面が削られて、隔
壁3の前面側に順次落下され、土砂搬出装置4により搬
出される。
Next, the solidified improved earth and sand is shaved at the rear end surface by turning of the earthen blow-through prevention tool 8, and is sequentially dropped on the front side of the partition wall 3, and is carried out by the earth and sand unloading device 4.

【0023】このようにして一定のストローク分、即
ち、セグメントにより覆工Cのリング幅分の掘進を行わ
せた後、隔壁3の前面側に露出された既設管渠Aの突出
部分を破砕装置15により砕き、土砂搬出装置4により
搬出すると同時にケーシング後端部でセグメントの組み
立てを行う。そしてこれらの搬出及び組み立て作業の終
了後、前述と同様に掘削作業を繰り返し、既設管渠Aを
破砕しつつシールド工法による新たな大口径の新管渠D
を構築する。
After the excavation of a predetermined stroke, that is, the ring width of the lining C is performed by the segments, the projecting portion of the existing pipe A exposed on the front side of the partition wall 3 is crushed by the crushing device. The crushing is carried out by 15 and carried out by the earth and sand carrying-out device 4, and at the same time, the segments are assembled at the rear end of the casing. After completion of these carrying-out and assembling work, the excavation work is repeated in the same manner as described above.
To build.

【0024】[0024]

【発明の効果】本発明の大口径管渠の再構築工法によれ
ば既設管渠の外周の土砂を掘削してケーシング内に導入
させ、これに固化剤を注入して攪拌し、ケーシングと既
設管渠との間に固化した安定な改良土砂として充填され
た状態で既設管渠および掘削砂を排除するようにしたた
め、既設管渠まわりの埋め戻し不良や、地下水の水みち
等により地盤が不安定な状態にあっても、安全かつ容易
に既設管渠の排除とシールド工法による大口径管渠の再
構築を同時に施行することができる。
According to the method for reconstructing a large-diameter sewer according to the present invention, the earth and sand around the existing sewer is excavated and introduced into a casing, and a solidifying agent is injected into the casing and agitated. The existing sewer and excavated sand were removed while being filled with stable and improved sediment solidified between the sewer and the sewer.Therefore, the ground was damaged due to poor backfill around the existing sewer and groundwater channels. Even in a stable state, it is possible to safely and easily eliminate an existing sewer and reconstruct a large-diameter sewer by a shield method.

【0025】また、支軸により支持した栓体及びこれら
を貫通して通水路を止める事なく工事ができる。
Further, the construction can be carried out without stopping the water passages through the plugs supported by the support shafts and the plugs.

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

【図1】本発明の施行工程の一状態の概略を示す略示的
断面図である。
FIG. 1 is a schematic sectional view schematically showing one state of an execution step of the present invention.

【図2】同上の掘削カッターの一側の正面図である。FIG. 2 is a front view of one side of the excavating cutter.

【図3】同上の土塊吹き抜け防止具の一例の正面図であ
る。
FIG. 3 is a front view of an example of the above-mentioned earthen luggage blow-through prevention device.

【符号の説明】[Explanation of symbols]

A 既設管渠 B シールド掘進機 C 覆工 D 新管渠 a 土砂 b 止水壁 1 ケーシング 2 カッター 3 隔壁 4 土砂搬出装置 5 旋回筒 6 スポーク 7 固化剤注入ノズル 8 土塊吹き抜け防止具 9 スリット 10 ビット 11 支軸 12 栓体 13 シール材 14 通水路 15 破砕装置 Reference Signs List A Existing sewer B Shield excavator C Lining D New sewer a Sediment b Water blocking wall 1 Casing 2 Cutter 3 Partition wall 4 Sediment discharge device 5 Rotating cylinder 6 Spoke 7 Solidifying agent injection nozzle 8 Clod blow-through prevention tool 9 Slit 10 bit DESCRIPTION OF SYMBOLS 11 Support shaft 12 Plug 13 Seal material 14 Water passage 15 Crusher

Claims (3)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 後端内部でセグメントを組み立てて覆工
を形成し、該覆工に反力を取って前進するシールド掘進
機のケーシング内の隔壁前面側に、中心部分に既設の管
渠が侵入可能で、かつ該既設管渠の外側を掘削する旋回
カッターを備え、前記シールド掘進機を、前記カッター
中心部分に既設管渠を侵入させて、該管渠の外側を掘削
しつつ前進させると同時に、掘削土砂内に固化剤を混入
させて攪拌しつつケーシング先端内に侵入させ、該ケー
シング先端内で順次固化する掘削土砂によって構成され
る止水壁により、外部の土水圧に対抗するシール効果を
もたせ、該止水壁と既設管渠との端部を順次砕いて搬出
することにより既設管渠を除去しつつ新管渠を構築する
大口径管渠の再構築工法。
1. A lining is formed by assembling segments inside a rear end, and an existing culvert is provided at a central portion on a front side of a partition wall in a casing of a shield machine which advances by taking a reaction force against the lining. A revolving cutter that is capable of penetrating and excavating the outside of the existing sewer, wherein the shield machine is advanced while excavating the outside of the sewer by penetrating the existing sewer into the center portion of the cutter. At the same time, a solidifying agent is mixed into the excavated earth and sand, and is stirred and penetrated into the front end of the casing, and the sealing effect against external soil water pressure is provided by the water stop wall constituted by the excavated earth and sand that solidifies sequentially in the front end of the casing. A method of reconstructing a large-diameter sewer in which a new sewer is constructed while removing the existing sewer by sequentially crushing and discharging the ends of the water stop wall and the existing sewer.
【請求項2】 旋回カッターをケーシングの先端内に支
持させた、旋回筒の先端に一体に備えてなる請求項1に
記載の大口径管渠の再構築工法。
2. The method for reconstructing a large-diameter sewer according to claim 1, wherein the revolving cutter is supported inside the distal end of the casing and is integrally provided at the distal end of the revolving cylinder.
【請求項3】 ケーシングの先端より突出させた支軸の
先端に、既設管渠内を閉鎖しつつスライド可能な止水用
栓体を支持させるとともに、該栓体に貫通させて通水管
を設置し、該通水管を通して既設管渠内の水を流過させ
つつ掘進させる前記請求項1もしくは2に記載の大口径
管渠の再構築工法。
3. A water-stopping pipe is provided at a tip end of a support shaft protruding from a tip end of a casing so as to support a slidable water-stopping plug while closing an existing pipe, and penetrating through the plug. 3. The method for reconstructing a large-diameter sewer according to claim 1, wherein the excavation is performed while flowing water in the existing sewer through the water pipe.
JP09003890A 1997-01-13 1997-01-13 Reconstruction method of large diameter sewer Expired - Fee Related JP3108735B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP09003890A JP3108735B2 (en) 1997-01-13 1997-01-13 Reconstruction method of large diameter sewer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP09003890A JP3108735B2 (en) 1997-01-13 1997-01-13 Reconstruction method of large diameter sewer

Publications (2)

Publication Number Publication Date
JPH10196273A JPH10196273A (en) 1998-07-28
JP3108735B2 true JP3108735B2 (en) 2000-11-13

Family

ID=11569789

Family Applications (1)

Application Number Title Priority Date Filing Date
JP09003890A Expired - Fee Related JP3108735B2 (en) 1997-01-13 1997-01-13 Reconstruction method of large diameter sewer

Country Status (1)

Country Link
JP (1) JP3108735B2 (en)

Also Published As

Publication number Publication date
JPH10196273A (en) 1998-07-28

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