JP2006299558A - Construction method for bridge pier skeleton using well foundation - Google Patents

Construction method for bridge pier skeleton using well foundation Download PDF

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JP2006299558A
JP2006299558A JP2005119764A JP2005119764A JP2006299558A JP 2006299558 A JP2006299558 A JP 2006299558A JP 2005119764 A JP2005119764 A JP 2005119764A JP 2005119764 A JP2005119764 A JP 2005119764A JP 2006299558 A JP2006299558 A JP 2006299558A
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well
earth
sand
guide cylinder
pier
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JP4505841B2 (en
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Hitoshi Takeuchi
等 武内
Seiji Iwasa
政治 岩沙
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PS Mitsubishi Construction Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a construction method for a bridge pier skeleton using a well foundation, which can shorten a construction period and reduce a construction cost. <P>SOLUTION: A well 10 is sunk into ground while sediment in the lower end of the well 10 is excavated and eliminated. When an upper end of the well 10 is positioned higher than a water level, a top slab 11 is formed at the upper end of the well 10, and a bridge pier skeleton constituting member 12 with a working machine entrance/exit hole 42 opened in a vertically penetrating manner is erected on the top slab 11. Work for excavating and carrying out the sediment in the lower end of the well is performed through the working machine entrance/exit holes 41 and 42 by means of an excavator and a sediment carrying-out machine, while the upper end of the member 12 is positioned on the water surface. This makes the well 10 sink up to a predetermined depth. After that, the desired bridge pier skeleton, the part or whole of which is composed of the member 12, is formed. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、井筒基礎を使用した橋脚躯体の構築方法に関する。   The present invention relates to a method for constructing a pier frame using a well foundation.

従来、地中に埋設させた井筒を基礎とする橋脚を構築する方法として、オープンケーソン工法が知られている。   Conventionally, an open caisson method is known as a method for constructing a pier based on a well that is buried in the ground.

この工法は、一般に図6に示す手順で施工される。   This construction method is generally performed according to the procedure shown in FIG.

まず、図6(イ)に示すように、上下が開口した井筒1を設置箇所に設置し、井筒下端部内の土砂をグラブバケット2等により掘削排除しつつ、井筒1の上端部が水面又は地表面付近に到達する位置まで沈降させる。   First, as shown in FIG. 6 (a), the well 1 having an open top and bottom is installed at the installation location, and the upper end of the well 1 is placed on the water surface or the ground while excavating and removing the earth and sand in the bottom of the well with a grab bucket 2 or the like. Settling to a position that reaches near the surface.

次に、図6(ロ)に示すように、井筒1の上端に鋼板矢板等からなる仮壁3を設置し、更に井筒下端部内の土砂を掘削排除しつつ井筒1を所定の位置まで沈降させる。   Next, as shown in FIG. 6 (b), the temporary wall 3 made of a steel sheet pile or the like is installed at the upper end of the well 1, and further, the well 1 is settled to a predetermined position while excavating and removing the sediment in the lower end of the well. .

所定の深さまで沈降させた後、図6(ハ)に示すように、井筒1の下端開口部に場所打ちコンクリートにより底版4を形成して井筒1の下端開口部を閉鎖し、更に井筒1内に土砂5を埋め戻して井筒基礎を構築する。   After sinking to a predetermined depth, as shown in FIG. 6 (c), a bottom plate 4 is formed by cast-in-place concrete at the lower end opening of the well 1 to close the lower end opening of the well 1. The earth and sand 5 is backfilled to construct a well foundation.

次に、仮壁3内の水を汲み上げ、仮壁の内側にドライ空間を形成し、仮壁3内のドライ空間において、井筒1の上端部に場所打ちコンクリートによる頂版6を形成し、それにより井筒上端部を閉鎖する。   Next, water in the temporary wall 3 is pumped up, a dry space is formed inside the temporary wall, and a top plate 6 made of cast-in-place concrete is formed at the upper end of the well 1 in the dry space in the temporary wall 3. Close the upper end of the well.

更に、仮壁3内のドライ空間において橋脚躯体7を構築するための鉄筋や型枠を設置し、現場打ちコンクリートにより頂板6上に橋脚躯体7を構築する。   Furthermore, a reinforcing bar and a formwork for constructing the pier housing 7 are installed in the dry space in the temporary wall 3, and the pier housing 7 is constructed on the top plate 6 by the cast-in-place concrete.

そして、橋脚躯体7の構築が完了した後、図6(ニ)に示すように、仮壁3を撤去し、その部分に土砂を埋め戻し施工が終了する。   Then, after the construction of the bridge pier housing 7 is completed, the temporary wall 3 is removed as shown in FIG.

しかし、上述の如き従来の技術では、橋脚躯体を構築するためのドライ空間を得るために仮壁を設け、さらに橋脚躯体構築後はそれを撤去しなければならないので、その分工程が多くなり工期が長期化し、工費が嵩むという問題があった。   However, in the conventional technology as described above, a temporary wall is provided to obtain a dry space for constructing the pier frame, and after the pier frame is constructed, it must be removed. However, there was a problem that the construction cost was increased due to a long period of time.

そこで本発明は、上述の従来技術の問題を鑑み、工期を短縮し、工費の低減が可能な井筒基礎を使用した橋脚躯体の構築方法の提供を目的とする。   In view of the above-described problems of the prior art, an object of the present invention is to provide a method for constructing a pier frame using a well foundation that can shorten the construction period and reduce the construction cost.

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請求項1に記載の発明は、上下が開放された筒状のコンクリート製井筒を橋脚躯体構築位置に設置し、前記井筒下端部内の土砂を掘削排除しつつ該井筒を地中に沈降させ、所定の深さまで沈降させた後、該井筒の下端開口部を場所打ちコンクリートによる底版にて閉鎖することによって井筒基礎を構築し、該井筒基礎の上端を場所打ちコンクリートによる頂版により閉鎖し、該頂版上に該頂版と一体に橋脚躯体を構築する井筒基礎を使用した橋脚躯体の構築方法において、前記井筒の上端が、橋脚躯体構築位置が陸上の場合は地表面より、又は該橋脚躯体設置位置が水底である場合には水面よりそれぞれ高い位置にある時に、前記井筒の上端に頂版を形成するとともに該頂版上に上下に貫通開口させた作業機出入穴を有する橋脚躯体構成部材を立設し、該橋脚躯体構成部材の上端を前記地表面又は水面より上に位置させた状態で前記作業機出入穴を通して掘削機及び土砂搬出機による井筒下端部内の土砂の掘削及び土砂搬出作業を行って所定の深さまで井筒を沈降させ、然る後、前記橋脚躯体構成部材を一部又は全部とした所望の橋脚躯体を形成する井筒基礎を使用した橋脚躯体の構築方法であることを特徴とする。   In order to solve the conventional problems as described above and achieve the intended purpose, the invention according to claim 1 is characterized in that a cylindrical concrete well whose top and bottom are opened is installed at a pier frame construction position, After digging out the earth and sand in the lower end, sink the well into the ground, sink it to a predetermined depth, and then close the lower end opening of the well with cast-in-place concrete bottom plate to construct the well foundation In the construction method of the pier frame using the well foundation that closes the upper end of the well foundation with a top plate made of cast-in-place concrete and builds the pier frame integrally with the top plate on the top plate, the upper end of the well is A top plate is formed at the upper end of the well and the top plate when the construction position of the pier body is on land, or when it is higher than the water surface when the installation position of the pier body is the bottom of the water. above An excavator is installed through the work implement entry / exit hole in a state in which a pier frame constituting member having a work machine entry / exit hole that is opened through the bottom is erected, and the upper end of the pier frame constituting member is positioned above the ground surface or the water surface. And the excavation and sediment removal work in the bottom of the well by the earth and sand unloading machine is carried out to sink the well to a predetermined depth, and then the desired pier body with a part or all of the pier body structural members is formed. It is the construction method of the pier frame using the Izutsuru foundation.

請求項2に記載の発明は、請求項1の構成に加え、前記掘削機及び土砂搬出機として、中空のガイド筒と、該ガイド筒とともに旋回して土砂を中心部分に掻き寄せる土砂掘削掻き寄せ手段と、該ガイド筒を旋回及び昇降させるガイド筒駆動手段と、前記ガイド筒内をクレーンによって上下に移動して該ガイド筒下の土砂を掘削し搬出するハンマーグラブとを有し、前記土砂掻き寄せ手段には、半径方向に拡縮自在な掻き寄せ部材が備えられた構造の装置を使用し、前記ガイド筒とともに土砂掻き寄せ手段を旋回させて土砂をガイド筒下に掻き寄せ、その掻き寄せられた土砂を前記ハンマーグラブにより搬出させることを特徴とする。   In addition to the structure of claim 1, the invention according to claim 2 is a hollow guide tube and a sand excavation scraper that swirls together with the guide tube and scrapes the earth and sand to the central portion as the excavator and the earth and sand unloader. Means, and a guide cylinder driving means for turning and raising and lowering the guide cylinder, and a hammer grab that moves up and down in the guide cylinder by a crane to excavate and carry out sediment under the guide cylinder, and For the gathering means, a device having a scraping member that can be expanded and contracted in the radial direction is used, and the earth and sand scraping means is swung together with the guide cylinder to scrape the earth and sand under the guide cylinder, and the scraping is done. The earth and sand are carried out by the hammer grab.

本発明においては、上下が開放された筒状のコンクリート製井筒を橋脚躯体構築位置に設置し、前記井筒下端部内の土砂を掘削排除しつつ該井筒を地中に沈降させ、所定の深さまで沈降させた後、該井筒の下端開口部を場所打ちコンクリートによる底版にて閉鎖することによって井筒基礎を構築し、該井筒基礎の上端を場所打ちコンクリートによる頂版により閉鎖し、該頂版上に該頂版と一体に橋脚躯体を構築する井筒基礎を使用した橋脚躯体の構築方法において、前記井筒の上端が、橋脚躯体構築位置が陸上の場合は地表面より、又は該橋脚躯体設置位置が水底である場合には水面よりそれぞれ高い位置にある時に、前記井筒の上端に頂版を形成するとともに該頂版上に上下に貫通開口させた作業機出入穴を有する橋脚躯体構成部材を立設し、該橋脚躯体構成部材の上端を前記地表面又は水面より上に位置させた状態で前記作業機出入穴を通して掘削機及び土砂搬出機による井筒下端部内の土砂の掘削及び土砂搬出作業を行って所定の深さまで井筒を沈降させ、然る後、前記橋脚躯体構成部材を一部又は全部とした所望の橋脚躯体を形成することにより、ドライ空間を設けるための仮壁を設置する必要がなく、その分の工程を削減でき、それにより工期の短縮及び工費の低減を図ることができる。   In the present invention, a cylindrical concrete well that is open at the top and bottom is installed at a pier frame construction position, and the well is submerged in the ground while excavating and removing the earth and sand in the bottom of the well, and settled to a predetermined depth. Then, a well foundation is constructed by closing the bottom opening of the well with a bottom plate made of cast-in-place concrete, and the top end of the well-cylinder foundation is closed with a top plate made of cast-in-place concrete. In the method of constructing a pier frame using a well foundation that builds a pier frame integrally with the top plate, the upper end of the well is from the ground surface when the pier frame is built on land, or the pier frame installation position is at the bottom of the water. In some cases, when they are at a position higher than the water surface, a pier body structural member is formed upright having a top plate at the upper end of the well and having a work machine access hole vertically opened and opened on the top plate. The excavator and the sediment unloader perform excavation and sediment removal work in the lower end portion of the well with the excavator and the sediment transporter through the work machine entrance / exit hole in a state where the upper end of the pier frame structural member is positioned above the ground surface or the water surface. It is not necessary to set up a temporary wall for providing a dry space by forming a desired pier frame with a part or all of the above-mentioned pier frame structural members after sinking the well to the depth of Therefore, the construction period can be shortened and the construction cost can be reduced.

また、前記掘削機及び土砂搬出機として、中空のガイド筒と、該ガイド筒とともに旋回して土砂を中心部分に掻き寄せる土砂掘削掻き寄せ手段と、該ガイド筒を旋回及び昇降させるガイド筒駆動手段と、前記ガイド筒内をクレーンによって上下に移動して該ガイド筒下の土砂を掘削し搬出するハンマーグラブとを有し、前記土砂掻き寄せ手段には、半径方向に拡縮自在な掻き寄せ部材が備えられた構造の装置を使用し、前記ガイド筒とともに土砂掻き寄せ手段を旋回させて土砂をガイド筒下に掻き寄せ、その掻き寄せられた土砂を前記ハンマーグラブにより搬出させることにより、作業機出入穴径より広い範囲の地盤を掘削し、その掘削土砂を排出することができ、井筒の沈降作業を好適に行うことができる。   Further, as the excavator and the earth and sand unloader, a hollow guide cylinder, a sand and sand excavation scraping means that swirls together with the guide cylinder and scrapes the earth and sand to a central portion, and a guide cylinder driving means that turns and lifts the guide cylinder And a hammer grab that moves up and down in the guide cylinder by a crane to excavate and carry out the sediment under the guide cylinder, and the earth and sand scraping means includes a scraping member that can be expanded and contracted in the radial direction. Using the equipment with the structure provided, turning the earth and sand scraping means together with the guide cylinder to scrape the earth and sand under the guide cylinder, and carrying out the scraped earth and sand with the hammer grab, thereby entering and exiting the work machine The ground in a wider range than the hole diameter can be excavated and the excavated earth and sand can be discharged, and the well can be suitably settled.

次に本発明の実施の形態を図面に示した実施例に基づいて説明する。   Next, embodiments of the present invention will be described based on examples shown in the drawings.

図1は、本発明方法に使用する装置の概略を示し、図中符号10は井筒、符号11は頂版、符号12は橋脚躯体構成部材、符号13はクレーン、符号14は井筒圧入手段である。   FIG. 1 shows an outline of an apparatus used in the method of the present invention, in which reference numeral 10 is a well, reference numeral 11 is a top plate, reference numeral 12 is a pier body member, reference numeral 13 is a crane, and reference numeral 14 is a well press-fitting means. .

この装置は、掘削・土砂搬出機により井筒10下端部内を掘削排土しつつ、井筒圧入手段14により井筒10を地盤15に圧入することにより井筒10を地盤15内に沈降させるようになっている。   This device is configured to sink the well 10 into the ground 15 by press-fitting the well 10 into the ground 15 by the well pressing means 14 while excavating and discharging the inside of the bottom of the well 10 by the excavator / sediment unloader. .

井筒圧入手段14は、地盤15上に立設された複数の支柱16,16…と、支柱16,16…に支持された反力受け台17と、反力受け台17の上方に配置された加圧作業台18とを備え、加圧作業台18上に設置されたジャッキ19,19により反力受け台17に反力をとって加圧作業台18を下方に押し下げ、加圧作業台18の下面で井筒10又は橋脚躯体構成部材12の頂部を押圧し、井筒10を地盤15に圧入させるようになっている。   The well pressing means 14 is disposed above the reaction force receiving base 17 and a plurality of support pillars 16, 16... Standing on the ground 15, a reaction force receiving base 17 supported by the support pillars 16, 16. And pressurizing work table 18 is pushed down by applying a reaction force to reaction force receiving table 17 by jacks 19, 19 installed on pressurizing work table 18. The top of the well 10 or the pier skeleton member 12 is pressed by the lower surface of the well, and the well 10 is pressed into the ground 15.

掘削機及び土砂搬出機には、例えば、井筒10の上端が水面付近に至るまでは、クレーン13に吊り下げ支持された土砂排出バケット20を使用し、それ以降、即ち井筒10上に橋脚躯体構成部材12を構築した後は、中空のガイド筒21と、該ガイド筒21とともに旋回する土砂掘削掻き寄せ手段22と、ガイド筒21を旋回及び昇降させるガイド筒駆動手段23と、ハンマーグラブ24とを有する装置を使用する。尚、地盤の状況によっては、最初から上述のガイド筒21を使用した装置により掘削をおこなってもよい。   For the excavator and the earth and sand unloader, for example, the earth and sand discharge bucket 20 suspended and supported by the crane 13 is used until the upper end of the well 10 reaches the vicinity of the water surface. After constructing the member 12, a hollow guide cylinder 21, earth and sand excavation scraping means 22 that rotates together with the guide cylinder 21, guide cylinder driving means 23 that rotates and lifts the guide cylinder 21, and a hammer grab 24 are provided. Use the device you have. Depending on the condition of the ground, excavation may be performed from the beginning by an apparatus using the above-described guide cylinder 21.

ガイド筒21は、鋼管をもって構成され、支柱16,16…に支持された支持枠体25の上に設置されたガイド筒駆動手段23に旋回可能且つ上下動可能に支持され、このガイド筒駆動手段23により旋回されるようになっている。   The guide cylinder 21 is formed of a steel pipe, and is supported by the guide cylinder driving means 23 installed on the support frame 25 supported by the support columns 16, 16... 23 is turned.

また、ガイド筒21の下端には、土砂掘削掻き寄せ手段22が着脱可能に固定され、この土砂掘削掻き寄せ手段22がガイド筒21とともに旋回するようになっている。   A sediment excavation scraping means 22 is detachably fixed to the lower end of the guide cylinder 21, and the sediment excavation scraping means 22 rotates with the guide cylinder 21.

土砂掘削掻き寄せ手段22には、図2、図3に示すように、ガイド筒21の下端に取り付けられる筒部26と、該筒部26の外周部に固定された掻き寄せ部材27〜29とを備えた装置を使用する。   As shown in FIGS. 2 and 3, the earth and sand excavation scraping means 22 includes a cylindrical portion 26 attached to the lower end of the guide tube 21, and scraping members 27 to 29 fixed to the outer peripheral portion of the cylindrical portion 26. Use a device with

筒部26は、上下が開口した円筒の上端にガイド筒21の下端に挿入されるオスカラー30を備え、該オスカラー30をガイド筒21の下端に挿入することにより、ガイド筒21の下端に固定されるようになっている。   The cylindrical portion 26 includes a male collar 30 that is inserted into the lower end of the guide cylinder 21 at the upper end of a cylinder that is open at the top and bottom. By inserting the male collar 30 into the lower end of the guide cylinder 21, It is supposed to be fixed.

また、筒部26の下端には、掘削刃31が取り付けられている。   A drilling blade 31 is attached to the lower end of the cylindrical portion 26.

更に、筒部26の外周には、導入孔32が形成され、掻き寄せ部材27〜29により掻き寄せられた土砂がこの導入孔32より筒部26内に導かれるようになっている。   Further, an introduction hole 32 is formed on the outer periphery of the cylindrical portion 26, and earth and sand scraped by the scraping members 27 to 29 are guided into the cylindrical portion 26 from the introduction hole 32.

掻き寄せ部材27〜29は、掘削径に合わせて3種類使用され、各掻き寄せ部材27〜29は、それぞれ120度間隔に3ヶ所設置されている。このように3種類の掻き寄せ部材を用意したことにより、ガイド筒21に近い箇所からガイド筒21より遠い箇所まで土砂を広い範囲に渡ってガイド筒21下に掻き寄せることができるようになっている。   Three kinds of scraping members 27 to 29 are used according to the excavation diameter, and each of the scraping members 27 to 29 is installed at three positions at intervals of 120 degrees. By preparing the three kinds of scraping members in this way, it becomes possible to scrape the earth and sand under the guide tube 21 over a wide range from a location close to the guide tube 21 to a location far from the guide tube 21. Yes.

掻き寄せ部材27,28は、筒部26の外周に周方向に間隔をおいて固定されたブラケット33,33…に縦向きに回動可能に軸支されたアーム34と、アーム34の先端部に軸支された可動掘削部35とを備え、掘削径を半径方向に拡縮できるようになっている。   The scraping members 27 and 28 include an arm 34 pivotally supported by brackets 33, 33... Fixed to the outer periphery of the cylindrical portion 26 at intervals in the circumferential direction, and a distal end portion of the arm 34. And a movable excavating portion 35 supported by the shaft, so that the excavating diameter can be expanded and contracted in the radial direction.

この掘削径の拡縮は、図4に示すように、ブラッケット33上部に一端が軸支され、他端が支持軸36よりもアーム34の上端側に軸支されたシリンダー37によりなされ、シリンダー37を伸長させることによりアーム34の上端部が支持軸36に対して相対的に下向きに移動され、それによりアーム34が持ち上がり拡径し、逆にシリンダー37を収縮させることによりアーム34の上端部が支持軸36に対して相対的に上向きに移動し、アーム34を降ろさせ縮径するようになっている。   As shown in FIG. 4, the excavation diameter is expanded or reduced by a cylinder 37 having one end pivotally supported on the upper portion of the bracket 33 and the other end pivotally supported on the upper end side of the arm 34 with respect to the support shaft 36. By extending, the upper end of the arm 34 is moved downward relative to the support shaft 36, whereby the arm 34 is lifted and expanded in diameter, and conversely, the cylinder 37 is contracted to support the upper end of the arm 34. The arm 34 moves upward relative to the shaft 36, and the arm 34 is lowered to reduce the diameter.

尚、アーム34の長さは、掻き寄せ部材27と掻き寄せ部材28とで異なり、それにより掘削可能範囲が異なる。   The length of the arm 34 is different between the scraping member 27 and the scraping member 28, and the excavable range is thereby different.

また、可動掘削部35は、掘削ビット38,38…を所定の角度で支持し、リンク39を介してブラケット33に支持され、アーム34の拡縮に対応してその掘削角度を変えるようになっている。   Further, the movable excavation part 35 supports excavation bits 38, 38... At a predetermined angle, is supported by the bracket 33 via the link 39, and changes the excavation angle corresponding to the expansion / contraction of the arm 34. Yes.

即ち、アーム34が拡径方向に広がると可動掘削部35の掘削ビット側面が下を向き、好適な掘削勾配を形成するようになっている。   That is, when the arm 34 spreads in the diameter increasing direction, the side surface of the excavation bit of the movable excavation portion 35 faces downward to form a suitable excavation gradient.

一方、掻き寄せ部材29は、所定の掘削勾配に掘削ビット38,38…を支持した状態に筒部26の外周に固定されている。   On the other hand, the scraping member 29 is fixed to the outer periphery of the cylindrical portion 26 in a state where the excavation bits 38, 38.

ハンマーグラブ24は、クレーン13に吊り下げ支持され、ガイド筒21内に挿入されてガイド筒21下の土砂を掘削排土するようになっている。   The hammer grab 24 is suspended and supported by the crane 13 and is inserted into the guide cylinder 21 so as to excavate and remove earth and sand under the guide cylinder 21.

次に、上述の装置を使用した本発明方法の実施例について説明する。   Next, an embodiment of the method of the present invention using the above-described apparatus will be described.

図5は本発明方法により水底に橋脚躯体を構築する場合における各工程の概略を示している。   FIG. 5 shows the outline of each process in the case of constructing the pier frame on the water bottom by the method of the present invention.

まず、井筒10を設置箇所に据え、図5(イ)に示すように、井筒10の上端が水面より高い所定の位置まで沈降させる。   First, the well 10 is set at an installation location, and as shown in FIG. 5 (a), the well 10 is allowed to settle to a predetermined position where the upper end of the well 10 is higher than the water surface.

この井筒10の構築・沈降作業は、円形、楕円形又は四角形等のリング状の短筒体40を設置箇所の水底地盤15上に設置し、その上方に短筒体40,40…を順次接合させ、短筒体40,40…を1又は複数段組立てる毎にその下端部内の土砂を土砂排出バケット20により掘削排土するとともに、井筒圧入手段14により短筒体40を順次下方に押圧し地盤15内に圧入することにより、井筒10を構築しつつ沈降させる。   The construction / sedimentation of the well 10 is performed by installing a ring-shaped short cylinder 40 such as a circle, an ellipse, or a quadrangle on the water bottom ground 15 at the installation location, and sequentially joining the short cylinders 40, 40. Each time one or more stages of the short cylinders 40, 40... Are assembled, the earth and sand in the lower end thereof is excavated and discharged by the earth discharge bucket 20, and the short cylinders 40 are sequentially pressed downward by the well pressing means 14. By being press-fitted into 15, the well 10 is sedimented while being constructed.

また、この井筒10の肉厚部には、上下方向に図示しない複数のPC緊張材が周方向に間隔をおいて挿通させ、このPC緊張材により上下方向にプレストレスを付加する。   Further, a plurality of PC tendons (not shown) are inserted in the thick portion of the well 10 in the vertical direction at intervals in the circumferential direction, and prestress is applied in the vertical direction by the PC tendons.

尚、短筒体40は、短筒体40を複数に分割した形状に形成したプレキャストブロックを設置箇所においてリング状に組立てるようにしてもよく、設置箇所において、現場打ちコンクリートにより成形してもよい。   In addition, the short cylinder 40 may be made by assembling a precast block formed in a shape obtained by dividing the short cylinder 40 into a plurality of rings at the installation location, or may be formed by cast-in-place concrete at the installation location. .

次に、井筒10の上端が水面より高い所にある位置において、井筒10の上端部に現場打ちコンクリートにより中央部分に作業機出入穴41を有する頂版11を成形する。   Next, at a position where the upper end of the well 10 is higher than the water surface, the top plate 11 having the work machine entrance / exit hole 41 in the center portion is formed on the upper end of the well 10 by spot casting concrete.

更に、頂版11上に橋脚躯体構成部材12成形用の型枠を設置し、その型枠内に必要な鉄筋等を配置し、型枠内にコンクリートを打設し、中央部に頂版11の作業機出入穴41と連続する作業機出入穴42を有する橋脚躯体構成部材12を成形する。   Furthermore, a formwork for forming the pier frame structural member 12 is installed on the top plate 11, necessary reinforcing bars and the like are arranged in the formwork, concrete is placed in the formwork, and the top plate 11 is placed in the center. The pier frame structural member 12 having the work machine entry / exit hole 41 and the work machine entry / exit hole 42 continuous with the work machine entry / exit hole 41 is formed.

この橋脚躯体構成部材12は、その高さを、井筒10を予定沈降位置まで沈降させた際に構成部材の上端が水面より上に位置する長さに形成される。   The height of the bridge pier structural member 12 is such that the upper end of the structural member is located above the water surface when the well 10 is submerged to a predetermined settling position.

そして、橋脚躯体構成部材12を充分に養生させて固化させた後、図5(ロ)に示すように、下端に刃口43を取り付けたガイド筒21を作業機出入穴41,42より挿入し、ガイド筒駆動手段によりガイド筒21を旋回させて井筒10下端部内の地盤15を掘削するとともに、ガイド筒21内にクレーン13により吊り下げ支持させたハンマーグラブ24によりガイド筒21内の掘削土砂を排土し、所定深さの中心孔44を形成する。   Then, after sufficiently curing and solidifying the pier frame structural member 12, as shown in FIG. 5 (b), the guide cylinder 21 with the blade edge 43 attached to the lower end is inserted through the work machine entry / exit holes 41 and 42. The guide cylinder 21 is turned by the guide cylinder driving means to excavate the ground 15 in the lower end portion of the well 10, and the excavated sediment in the guide cylinder 21 is removed by the hammer grab 24 suspended and supported in the guide cylinder 21 by the crane 13. The soil is discharged and a center hole 44 having a predetermined depth is formed.

次に、ガイド筒21を引き上げ、ガイド筒21の下端に土砂掘削掻き寄せ手段22を取り付けた後、作業機出入穴41,42よりガイド筒21を挿入する。   Next, after pulling up the guide cylinder 21 and attaching the earth and sand excavation scraping means 22 to the lower end of the guide cylinder 21, the guide cylinder 21 is inserted from the work machine entry / exit holes 41 and 42.

そして、土砂掘削掻き寄せ手段22が作業機出入穴41を通過した後、図5(ハ)に示すように、アーム34を広げて掻き寄せ部材27,28の掘削径を広げ、所定位置に到達したらガイド筒21を旋回させて掻き寄せ手段22も旋回させる。   Then, after the earth and sand excavation scraping means 22 passes through the work machine entry / exit hole 41, as shown in FIG. 5 (c), the arm 34 is widened to widen the excavating diameter of the scraping members 27 and 28 and reach a predetermined position. Then, the guide cylinder 21 is turned and the scraping means 22 is also turned.

それにより、各掻き寄せ部材27〜29の先端に取り付けられた掘削ビット38,38…が井筒10下端部内の地盤15表面をすり鉢状に掘削するとともに、中心に向けて掘削土砂を掻き寄せる。   Thereby, the excavation bits 38, 38... Attached to the tips of the raking members 27 to 29 excavate the surface of the ground 15 in the lower end portion of the well 10 in a mortar shape and scrape the excavated earth and sand toward the center.

その掻き寄せられた掘削土砂は、導入孔32を通して中心孔44に落ち込み、それをハンマーグラブ24により排土する。   The digging earth and sand scraped down falls into the central hole 44 through the introduction hole 32 and is discharged by the hammer grab 24.

このようにすることにより、井筒10下の地盤15が掘削され、それに合わせて井筒圧入手段14により、橋脚躯体構成部材12の上端を下向きに押圧し、橋脚躯体構成部材12及び頂版11を介して井筒10を水底地盤15内に圧入させ、所定の設置位置まで沈降させる。   By doing in this way, the ground 15 under the well 10 is excavated, and the upper end of the pier body constituting member 12 is pressed downward by the well press fitting means 14 in accordance therewith, via the pier body constituting member 12 and the top plate 11. The well 10 is press-fitted into the water bottom ground 15 and settling to a predetermined installation position.

そして、井筒10を所定の位置まで沈降させた後、ガイド筒駆動手段23を撤去するとともに、各掻き寄せ部材27〜29を畳み、掘削径を縮径した後、作業機出入穴41,42を通してガイド筒21を引抜いて撤去する。   Then, after the well 10 is settled to a predetermined position, the guide cylinder driving means 23 is removed, the scraping members 27 to 29 are folded, the excavation diameter is reduced, and then the work machine access holes 41 and 42 are passed through. The guide tube 21 is pulled out and removed.

次に、作業機出入穴41,42を通して井筒10内にトレミー管等のコンクリート打設装置を投入し、井筒10の下端部に現場打ちコンクリートにより底版45を成形し、井筒10の下端を閉鎖する。   Next, a concrete placement device such as a tremy pipe is inserted into the well 10 through the work machine entrance / exit holes 41, 42, a bottom plate 45 is formed on the bottom of the well 10 with cast-in-place concrete, and the bottom of the well 10 is closed. .

その後、井筒10内に土砂46を埋め戻し、井筒基礎が構築される。   Then, the earth and sand 46 is backfilled in the well 10 and the well foundation is constructed.

次に、作業機出入穴41,42内に必要な鉄筋等を配置し、現場打ちコンクリート47により穴内を充填し、頂版11及び橋脚躯体構成部材12の空隙部を埋める。   Next, necessary reinforcing bars and the like are arranged in the work machine entry / exit holes 41 and 42, the inside of the hole is filled with the cast-in-place concrete 47, and the voids of the top plate 11 and the pier frame structural member 12 are filled.

最後に、橋脚躯体構成部材12の上部に、橋脚躯体の未完成部分48を構築し、井筒基礎を基礎とする橋脚が構築される。   Finally, the unfinished portion 48 of the pier frame is constructed on the upper part of the pier frame component member 12, and the bridge pier based on the well foundation is constructed.

尚、上述の実施例では、橋脚躯体を水底に構築する場合について説明したが、橋脚躯体構築位置が陸上の場合には地表面より上の位置で頂版11及び橋脚躯体構成部材12の構築を行う。   In the above-described embodiment, the case where the pier frame is constructed on the water bottom has been described. However, when the pier frame construction position is on land, the top plate 11 and the pier frame component 12 are constructed at a position above the ground surface. Do.

また、上述の実施例では、井筒10の地盤15への圧入に際し、井筒圧入手段14を使用した例について説明したが、井筒圧入手段14を用いずに、井筒10下端内の土砂を掘削排土するとともに、井筒10(及び橋脚躯体構成部材12)の自重を利用して沈降させるようにしてもよい。   Further, in the above-described embodiment, an example in which the well pressing means 14 is used when the well 10 is press-fitted into the ground 15 is described. However, without using the well pressing means 14, the earth and sand in the bottom of the well 10 is excavated and discharged. At the same time, the self-weight of the well 10 (and the bridge pier structural member 12) may be used for sedimentation.

更に、橋脚躯体構成部材12の形状は、特に限定されず、その横断面が円形、楕円形、長方形又は多角形等のどのような形状であってもよい。   Furthermore, the shape of the pier frame structural member 12 is not specifically limited, The cross section may be any shape, such as a circle, an ellipse, a rectangle, or a polygon.

また、上述の実施例では、橋脚躯体構成部材12の高さを、井筒10を頂版11成形位置より更に沈降させる前に、井筒10を予定沈降位置まで沈降させた際に構成部材の上端が水面より上に位置する長さに予め形成しておく場合について説明したが、橋脚躯体構成部材12は、井筒10の沈降に合わせて順次上方に延長させてもよい。   Further, in the above-described embodiment, the height of the pier housing structural member 12 is set so that the upper end of the structural member is lowered when the well 10 is submerged to the planned settling position before the well 10 is further submerged from the top plate 11 forming position. Although the case where it previously formed in the length located above a water surface was demonstrated, you may extend the pier frame structural member 12 upwards one by one according to the sinking of the well 10.

尚、上述の実施例では、橋脚躯体構成部材12を場所打ちコンクリートによる一体成形とした物について説明したが、橋脚躯体構成部材12を輪切り状にした形状の複数のリング状部材をプレキャストコンクリートにより予め形成しておき、それを上方に順次接合させることにより構築してもよい。   In the above-described embodiment, the pier pier body constituting member 12 is integrally formed of cast-in-place concrete. However, a plurality of ring-shaped members in the shape of the pier skeleton body constituting member 12 formed in a ring shape are preliminarily made of precast concrete. It may be constructed by forming it and then joining it sequentially upward.

また、上述の実施例では、作業機出入穴を中心部分に1つ形成した例について説明したが、橋脚の大きさと掻き寄せ手段の大きさ等に応じ、位置をずらせて複数箇所に設けてもよく、更には井筒の形状に応じて井筒10内周に沿って多数設けてもよい。   Further, in the above-described embodiment, an example in which one work machine entrance / exit hole is formed in the central portion has been described, but depending on the size of the pier and the size of the scraping means, the positions may be shifted and provided at a plurality of locations. In addition, a large number may be provided along the inner periphery of the well 10 depending on the shape of the well.

尚、上述の実施例では、井筒10を設置箇所に据え、図5(イ)に示すように、井筒10の上端が水面より高い所定の位置まで沈降させた後、井筒10上に頂版11及び橋脚躯体構成部材12を構築する例について説明したが、予め井筒10、頂版11及び橋脚躯体構成部材12を構築した後、ガイド筒21を使用した装置により井筒10下端部内の土砂を掘削して井筒を沈設するようにしてもよい。即ち、図5(ロ)〜図5(ニ)の工程により橋脚を構築するようにしてもよい。   In the above-described embodiment, the well 10 is placed at the installation location, and as shown in FIG. 5 (a), the top plate 11 is placed on the well 10 after the upper end of the well 10 is set to a predetermined position higher than the water surface. In addition, the example of constructing the pier housing member 12 has been described, but after the well 10, the top plate 11, and the pier housing member 12 are constructed in advance, the sand in the lower end of the well 10 is excavated by a device using the guide tube 21. A well may be set up. That is, the pier may be constructed by the steps of FIGS. 5 (b) to 5 (d).

本発明方法に使用する装置の使用状態を示す断面図である。It is sectional drawing which shows the use condition of the apparatus used for this invention method. 図1中の土砂掘削掻き寄せ手段を示す正面図である。It is a front view which shows the earth and sand excavation scraping means in FIG. 同上の土砂掘削掻き寄せ手段を示す底面図である。It is a bottom view which shows the earth and sand excavation scraping means same as the above. 同上の掻き寄せ部材の拡縮動作機構を説明する為の図である。It is a figure for demonstrating the expansion / contraction operation | movement mechanism of a scraping member same as the above. 本発明方法の各工程の状況を簡易的に示した断面図である。It is sectional drawing which showed simply the condition of each process of this invention method. 従来の井筒基礎を使用した橋脚の構築方法における各工程の状態を簡易的に示す断面図である。It is sectional drawing which shows simply the state of each process in the construction method of the bridge pier using the conventional well-cylinder foundation.

符号の説明Explanation of symbols

10 井筒
11 頂版
12 橋脚躯体構成部材
13 クレーン
14 井筒圧入手段
15 地盤
16 支柱
17 反力受け台
18 加圧作業台
19 ジャッキ
20 土砂排出バケット
21 ガイド筒
22 土砂掘削掻き寄せ手段
23 ガイド筒駆動手段
24 ハンマーグラブ
25 支持枠体
26 筒部
27〜29 掻き寄せ部材
30 オスカラー
31 掘削刃
32 導入孔
33 ブラケット
34 アーム
35 可動掘削部
36 支持軸
37 シリンダー
38 掘削ビット
39 リンク
40 短筒体
41,42 作業機出入穴
43 刃口
44 中心孔
45 底版
46 土砂
47 現場打ちコンクリート
48 未完成部分
DESCRIPTION OF SYMBOLS 10 Well pipe 11 Top plate 12 Abutment frame structural member 13 Crane 14 Well pipe press-in means 15 Ground 16 Support pillar 17 Reaction force stand 18 Pressurization work table 19 Jack 20 Sediment discharge bucket 21 Guide cylinder 22 Sediment excavation scraping means 23 Guide cylinder drive means 24 hammer grab 25 support frame body 26 cylindrical portion 27 to 29 scraping member 30 male collar 31 excavation blade 32 introduction hole 33 bracket 34 arm 35 movable excavation portion 36 support shaft 37 cylinder 38 excavation bit 39 link 40 short cylindrical body 41, 42 Work machine access hole 43 Cutting edge 44 Center hole 45 Bottom plate 46 Earth and sand 47 On-site concrete 48 Unfinished part

Claims (2)

上下が開放された筒状のコンクリート製井筒を橋脚躯体構築位置に設置し、前記井筒下端部内の土砂を掘削排除しつつ該井筒を地中に沈降させ、所定の深さまで沈降させた後、該井筒の下端開口部を場所打ちコンクリートによる底版にて閉鎖することによって井筒基礎を構築し、該井筒基礎の上端を場所打ちコンクリートによる頂版により閉鎖し、該頂版上に該頂版と一体に橋脚躯体を構築する井筒基礎を使用した橋脚躯体の構築方法において、
前記井筒の上端が、橋脚躯体構築位置が陸上の場合は地表面より、又は該橋脚躯体設置位置が水底である場合には水面よりそれぞれ高い位置にある時に、前記井筒の上端に頂版を形成するとともに該頂版上に上下に貫通開口させた作業機出入穴を有する橋脚躯体構成部材を立設し、該橋脚躯体構成部材の上端を前記地表面又は水面より上に位置させた状態で前記作業機出入穴を通して掘削機及び土砂搬出機による井筒下端部内の土砂の掘削及び土砂搬出作業を行って所定の深さまで井筒を沈降させ、然る後、前記橋脚躯体構成部材を一部又は全部とした所望の橋脚躯体を形成することを特徴としてなる井筒基礎を使用した橋脚躯体の構築方法。
A cylindrical concrete well that is open at the top and bottom is installed at a pier frame construction position, and the well is submerged to the ground while excavating and removing the earth and sand in the lower end of the well, and submerged to a predetermined depth, A well foundation is constructed by closing the bottom opening of the well with a bottom plate made of cast-in-place concrete, and the top end of the well foundation is closed with a top plate made of cast-in-place concrete, and the top plate is integrated with the top plate. In the construction method of the pier frame using the Izutsu foundation to build the pier frame,
A top plate is formed at the upper end of the well when the upper end of the well is at a position higher than the ground surface when the construction position of the pier body is onshore or higher than the water surface when the installation position of the pier body is the bottom of the water. In addition, an abutment frame component member having a work machine access hole that is vertically opened and opened on the top plate is erected, and the upper end of the bridge pier frame component member is positioned above the ground surface or the water surface. The excavator and the earth and sand unloading machine are used to excavate the earth and sand in the lower end portion of the well and carry out the earth and sand unloading operation to sink the well to a predetermined depth. The construction method of the pier frame using the Izutsuru foundation characterized by forming the desired desired pier frame.
前記掘削機及び土砂搬出機として、中空のガイド筒と、該ガイド筒とともに旋回して土砂を中心部分に掻き寄せる土砂掘削掻き寄せ手段と、該ガイド筒を旋回及び昇降させるガイド筒駆動手段と、前記ガイド筒内をクレーンによって上下に移動して該ガイド筒下の土砂を掘削し搬出するハンマーグラブとを有し、前記土砂掻き寄せ手段には、半径方向に拡縮自在な掻き寄せ部材が備えられた構造の装置を使用し、前記ガイド筒とともに土砂掻き寄せ手段を旋回させて土砂をガイド筒下に掻き寄せ、その掻き寄せられた土砂を前記ハンマーグラブにより搬出させる請求項1に記載の井筒基礎を使用した橋脚躯体の構築方法。   As the excavator and the earth and sand unloader, a hollow guide cylinder, a sediment excavation scraping means that swirls together with the guide cylinder and scrapes the earth and sand to a central portion, a guide cylinder driving means that pivots and lifts the guide cylinder, A hammer grab that moves up and down in the guide cylinder by a crane to excavate and carry out the sediment under the guide cylinder, and the earth and sand scraping means includes a scraping member that can be expanded and contracted in the radial direction. 2. A well foundation according to claim 1, wherein an apparatus having a structure is used, the earth and sand scraping means is swung together with the guide cylinder to scrape the earth and sand under the guide cylinder, and the scraped earth and sand are carried out by the hammer grab. How to build a pier frame using
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JP2003041598A (en) * 2001-07-27 2003-02-13 Daiho Constr Co Ltd Anchor hatch for pneumatic caisson, and pier caisson
JP2004162426A (en) * 2002-11-14 2004-06-10 Ishikawajima Harima Heavy Ind Co Ltd Foundation cell, cell foundation structure, and construction method for cell foundation structure
JP2004176530A (en) * 2002-10-03 2004-06-24 Kato Construction Co Ltd Method and apparatus for diameter-enlarged excavation
JP2005098048A (en) * 2003-09-22 2005-04-14 Ps Mitsubishi Construction Co Ltd Bedrock drilling unit

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JPH10317376A (en) * 1997-05-16 1998-12-02 Tokyo Seisakusho:Kk Method and device for sinking sunk well
JP2003041598A (en) * 2001-07-27 2003-02-13 Daiho Constr Co Ltd Anchor hatch for pneumatic caisson, and pier caisson
JP2004176530A (en) * 2002-10-03 2004-06-24 Kato Construction Co Ltd Method and apparatus for diameter-enlarged excavation
JP2004162426A (en) * 2002-11-14 2004-06-10 Ishikawajima Harima Heavy Ind Co Ltd Foundation cell, cell foundation structure, and construction method for cell foundation structure
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