JP2012077561A - Reinforcement method of existing foundation for structure - Google Patents

Reinforcement method of existing foundation for structure Download PDF

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JP2012077561A
JP2012077561A JP2010225569A JP2010225569A JP2012077561A JP 2012077561 A JP2012077561 A JP 2012077561A JP 2010225569 A JP2010225569 A JP 2010225569A JP 2010225569 A JP2010225569 A JP 2010225569A JP 2012077561 A JP2012077561 A JP 2012077561A
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steel sheet
sheet pile
pile wall
pile
ground
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JP5587725B2 (en
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Masayuki Kanda
政幸 神田
Hidetoshi Nishioka
英俊 西岡
Tomoaki Yokoyama
知昭 横山
Junichi Hirao
淳一 平尾
Tadahisa Yamamoto
忠久 山本
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Obayashi Corp
Railway Technical Research Institute
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Obayashi Corp
Railway Technical Research Institute
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Abstract

PROBLEM TO BE SOLVED: To provide a reinforcement method of an existing foundation for structure, capable of enabling an existing foundation rationally and economically to be reinforced and capable of easily and surely integrating an additional foundation with a batter pile.SOLUTION: A steel sheet pile wall 5 consisting of a plurality of U-shaped steel sheet piles connected with each other so that the steel sheet pile wall 5 is corrugated in a plan view is constructed in the ground 2 which is as close to a site boundary around an existing footing 3 as possible. Then, steel pipe batter piles 6 are constructed in the ground 2 within the steel sheet pile wall 5 so that the steel pipe batter piles 6 are in contact with the inside crest part 5A of the sheet pile wall 5. Then, the ground 2 between the existing footing 3 and the steel sheet pile wall 5 is excavated, and the steel sheet pile wall 5 is then coupled to the batter piles 6 by welding. Then, concrete is placed in a space between the steel sheet pile wall 5 and the existing footing 3 to add an additional footing 7 to the existing footing 3, the additional footing 7 and the existing footing 3 being integrated together, the additional footing 7 and the heads of the batter piles 6 being integrated together.

Description

この発明は、構造物用既設基礎の補強方法、特に、鉛直杭上に構築された既設基礎の周囲に鋼矢板壁を構築し、既設基礎と鋼矢板壁との間の地盤に斜杭を鋼矢板壁の内側山部と接するように構築し、斜杭と鋼矢板壁の内側山部とを結合することによって、既設基礎の合理的かつ経済的な補強が可能な、構造物用既設基礎の補強方法に関するものである。   The present invention relates to a method for reinforcing an existing foundation for a structure, in particular, a steel sheet pile wall is constructed around an existing foundation constructed on a vertical pile, and a slant pile is formed on the ground between the existing foundation and the steel sheet pile wall. It is constructed so as to be in contact with the inner peak of the sheet pile wall, and the existing foundation for the structure can be rationally and economically reinforced by connecting the inclined pile and the inner peak of the steel sheet pile wall. It relates to a reinforcing method.

近年、地震等の災害に備え、橋脚等の構造物の既設基礎を補強する工事が実施されている。従来の、構造物用既設基礎の補強方法の一例を、図面を参照しながら説明する。   In recent years, in preparation for disasters such as earthquakes, construction has been carried out to reinforce existing foundations of structures such as piers. An example of a conventional method for reinforcing an existing foundation for a structure will be described with reference to the drawings.

図3は、従来の補強方法を示す平面図、図4は、図3のA−A線断面図である。   FIG. 3 is a plan view showing a conventional reinforcing method, and FIG. 4 is a cross-sectional view taken along line AA of FIG.

図3および図4において、10は、地盤11中に構築された鉛直杭、12は、鉛直杭10上に構築された既設基礎としての既設フーチング、13は、既設フーチング12上に構築された構造物としての橋脚、14は、既設フーチング12に増設された増しフーチング、15は、増しフーチング14の下方の地盤11に構築された斜杭、16は、増しフーチング14を構築する際の型枠、17は、型枠16の周囲の地盤11に構築された鋼矢板壁である。   3 and 4, 10 is a vertical pile constructed in the ground 11, 12 is an existing footing as an existing foundation constructed on the vertical pile 10, and 13 is a structure constructed on the existing footing 12. A pier as an object, 14 is an additional footing added to the existing footing 12, 15 is a diagonal pile constructed on the ground 11 below the additional footing 14, and 16 is a formwork for constructing the additional footing 14, Reference numeral 17 denotes a steel sheet pile wall constructed on the ground 11 around the formwork 16.

従来の、構造物用既設基礎の補強方法により既設フーチング12は、以下のようにして補強される。   The existing footing 12 is reinforced as follows by a conventional method of reinforcing an existing foundation for a structure.

先ず、既設フーチング12の周囲の地盤11中に鋼矢板壁17を構築する。鋼矢板壁17は、例えば、複数枚のU字形鋼矢板を互いに連結しながら地盤11中に打ち込むことによって構築する。   First, the steel sheet pile wall 17 is constructed in the ground 11 around the existing footing 12. The steel sheet pile wall 17 is constructed by, for example, driving a plurality of U-shaped steel sheet piles into the ground 11 while connecting each other.

次に、鋼矢板壁17内の地盤11を所定深さまで掘削し、鋼矢板壁17内の地盤11に斜杭15を構築する。   Next, the ground 11 in the steel sheet pile wall 17 is excavated to a predetermined depth, and the slant pile 15 is constructed on the ground 11 in the steel sheet pile wall 17.

次に、図4中、一点鎖線で示す用地境界部分の地盤11に型枠16を構築し、既設フーチング12と型枠16との空間にコンクリートを打設して、増しフーチング14を構築する。この際、既設フーチング12と増しフーチング14、および、斜杭15の頭部と増しフーチング14を鉄筋(図示せず)等により結合する。この後、鋼矢板壁17および型枠16を撤去して、埋め戻す。   Next, in FIG. 4, the formwork 16 is constructed on the ground 11 at the site boundary indicated by the alternate long and short dash line, and concrete is placed in the space between the existing footing 12 and the formwork 16 to construct the additional footing 14. At this time, the existing footing 12 and the additional footing 14, and the head of the oblique pile 15 and the additional footing 14 are coupled by a reinforcing bar (not shown) or the like. Thereafter, the steel sheet pile wall 17 and the formwork 16 are removed and backfilled.

このようにして、既設フーチング12が補強される。   In this way, the existing footing 12 is reinforced.

なお、鉛直杭と斜杭とを組み合わせた基礎構造の一例が特許文献1(特開2006−348526号公報)に開示されている。   In addition, an example of the foundation structure which combined the vertical pile and the diagonal pile is disclosed by patent document 1 (Unexamined-Japanese-Patent No. 2006-348526).

この基礎構造によれば、軸方向剛性に優れている鉛直杭と水平方向剛性に優れている斜杭とを組み合わせることによって、軸方向剛性および水平方向剛性の両方に優れた基礎構造を構築することができる。   According to this foundation structure, a foundation structure with excellent axial rigidity and horizontal rigidity can be constructed by combining a vertical pile with excellent axial rigidity and a diagonal pile with excellent horizontal rigidity. Can do.

特開2006−348526号公報JP 2006-348526 A 特開2008−240356号公報JP 2008-240356 A

上述したように、従来の構造物用既設基礎の補強方法によれば、軸方向剛性および水平方向剛性が共に優れるように既設基礎を補強することができるが、以下のような問題があった。   As described above, according to the conventional method for reinforcing an existing foundation for a structure, the existing foundation can be reinforced so that both axial rigidity and horizontal rigidity are excellent, but there are the following problems.

(1)斜杭15の頭部と増しフーチング14との結合方法には、図5および図6に示すように、斜杭15の頭部から伸ばしたアンカー鉄筋18を増しフーチング14に定着させる方法と、斜杭15自体を増しフーチング14内に埋め込む方法とがある。なお、図5は、前者の方法における斜杭と増しフーチングとの結合部分を示す平面図であり、図6は、図5のB−B線断面図である。   (1) As a method of connecting the head of the slant pile 15 and the additional footing 14, as shown in FIGS. 5 and 6, a method of fixing the anchor reinforcing bar 18 extended from the head of the slant pile 15 to the footing 14 is added. There is a method of increasing the angled pile 15 itself and embedding it in the footing 14. FIG. 5 is a plan view showing a joint portion between the oblique pile and the additional footing in the former method, and FIG. 6 is a cross-sectional view taken along line BB in FIG.

しかしながら、斜杭15を確実に増しフーチング14に結合するために、上記何れの方法であっても、図6中、(L1)で示すように、斜杭15の外縁を増しフーチング14の端部から十分に離す必要がある。通常、この離す距離(L1)は、250mm程度または斜杭5の半径以上(斜杭径が500mm以上の場合)である。   However, in order to reliably add the slant pile 15 to the footing 14, any of the above methods increases the outer edge of the slant pile 15 as shown by (L1) in FIG. Must be sufficiently separated from Usually, this separation distance (L1) is about 250 mm or more than the radius of the inclined pile 5 (when the inclined pile diameter is 500 mm or more).

このように、斜杭15の外縁を増しフーチング14の端部から十分に離す必要があるので、橋脚13と斜杭15との間の距離(L2)(図6参照)を大きく離すことができない。この結果、斜杭15の有する水平方向剛性の増大効果を有効に活用することができないので、補修後のフーチングの回転剛性を十分に高めることができない。斜杭15の有する水平方向剛性を増大させるには、斜杭15の杭径を太くすれば良いが、これには莫大な建設費用がかかる。このようなことから、既設フーチング12の合理的かつ経済的な補強が行えない。   Thus, since it is necessary to increase the outer edge of the diagonal pile 15 and to fully separate from the end part of the footing 14, the distance (L2) (refer FIG. 6) between the bridge pier 13 and the diagonal pile 15 cannot be separated largely. . As a result, since the effect of increasing the horizontal rigidity of the slant pile 15 cannot be effectively utilized, the rotational rigidity of the footing after repair cannot be sufficiently increased. In order to increase the horizontal rigidity of the slant pile 15, the pile diameter of the slant pile 15 may be increased, but this entails huge construction costs. For this reason, the existing footing 12 cannot be rationally and economically reinforced.

(2)斜杭15と増しフーチング14との一体化が困難である。すなわち、斜杭15のアンカー鉄筋18を増しフーチング14に定着させる場合、増しフーチング14内に配された鉄筋19を回避しながらアンカー鉄筋18を配筋する必要があるが、斜杭15のアンカー鉄筋18は、斜めに配されるので、増しフーチング14内に配された鉄筋19を回避しながら配筋することが困難である。   (2) It is difficult to integrate the slant pile 15 and the additional footing 14. That is, when the anchor reinforcing bar 18 of the diagonal pile 15 is increased and fixed to the footing 14, it is necessary to arrange the anchor reinforcing bar 18 while avoiding the reinforcing bar 19 arranged in the additional footing 14. Since 18 is arranged diagonally, it is difficult to arrange the bars while avoiding the reinforcing bars 19 arranged in the additional footing 14.

従って、この発明の目的は、既設基礎の周囲の用地境界に可能な限り接近した地盤に鋼矢板壁を構築し、鋼矢板壁の内側山部に接するように鋼管製斜杭を構築し、鋼矢板壁と斜杭とを溶接等により結合して、既設基礎上の構造物に対して斜杭を用地境界一杯に離して構築することにより、斜杭の有する水平方向剛性を増大させ、これにより斜杭の小径化を図り、かくして、既設基礎を合理的かつ経済的に補強することが可能となる、構造物用既設基礎の補強方法を提供することにある。   Therefore, the object of the present invention is to construct a steel sheet pile wall on the ground as close as possible to the site boundary around the existing foundation, construct a steel pipe slant pile so as to contact the inner mountain part of the steel sheet pile wall, By connecting the sheet pile wall and the diagonal pile by welding, etc., and constructing the diagonal pile apart from the site boundary with respect to the structure on the existing foundation, the horizontal rigidity of the diagonal pile is increased. An object of the present invention is to provide a method for reinforcing an existing foundation for a structure, which makes it possible to reduce the diameter of a slant pile and thus reinforce the existing foundation rationally and economically.

また、この発明の別の目的は、鋼矢板壁と斜杭とを溶接等により結合することによって、既設基礎と鋼矢板壁との間に構築される増し基礎と斜杭とを容易かつ確実に一体化することができる、構造物用既設基礎の補強方法を提供することにある。   Another object of the present invention is to easily and reliably connect an additional foundation and an inclined pile constructed between the existing foundation and the steel sheet pile wall by joining the steel sheet pile wall and the inclined pile by welding or the like. It is providing the reinforcement method of the existing foundation for structures which can be integrated.

この発明は、上記目的を達成するためになされたものであって、下記を特徴とするものである。   The present invention has been made to achieve the above object, and is characterized by the following.

請求項1に記載の発明は、既設基礎の周囲の用地境界に可能な限り接近した地盤に、複数枚の凹凸形鋼矢板を平面視が波形となるように互いに連結したものからなる鋼矢板壁を構築し、次いで、前記鋼矢板壁内の地盤に鋼管製斜杭を前記鋼矢板壁の内側山部に接するように構築し、次いで、前記既設基礎と前記鋼矢板壁との間の地盤を掘削し、次いで、前記鋼矢板壁と前記斜杭とを結合し、次いで、前記鋼矢板壁と前記既設基礎との間の空間内にコンクリートを打設して増し基礎を増設し、前記増し基礎と前記既設基礎とを一体化すると共に、前記増し基礎と前記斜杭の頭部とを一体化することに特徴を有するものである。   The invention according to claim 1 is a steel sheet pile wall comprising a plurality of concavo-convex steel sheet piles connected to each other so as to have a corrugated plan view on the ground as close as possible to the site boundary around the existing foundation. Then, a steel pipe diagonal pile is constructed so as to contact the inner crest of the steel sheet pile wall on the ground in the steel sheet pile wall, and then the ground between the existing foundation and the steel sheet pile wall is constructed. Excavating, and then connecting the steel sheet pile wall and the slant pile, then adding concrete by placing concrete in the space between the steel sheet pile wall and the existing foundation, and adding the additional foundation And the existing foundation are integrated, and the additional foundation and the head of the inclined pile are integrated.

請求項2に記載の発明は、請求項1に記載の、構造物用既設基礎の補強方法において、前記鋼矢板壁と前記斜杭とを、溶接により固定することに特徴を有するものである。   The invention according to claim 2 is characterized in that, in the method for reinforcing an existing foundation for structure according to claim 1, the steel sheet pile wall and the oblique pile are fixed by welding.

請求項3に記載の発明は、請求項1または2に記載の、構造物用既設基礎の補強方法において、前記鋼矢板壁を平面視矩形状に構築し、前記斜杭を前記鋼矢板壁内の地盤にハの字状に構築することに特徴を有するものである。   Invention of Claim 3 is the reinforcement method of the existing foundation for structures of Claim 1 or 2, Comprising: The said steel sheet pile wall is constructed | assembled in planar view rectangular shape, and the said slant pile is built in the said steel sheet pile wall It is characterized by being built in a square shape on the ground.

請求項4に記載の発明は、請求項1から3の何れか1つに記載の、構造物用既設基礎の補強方法において、前記鋼矢板壁内の地盤に鋼管製斜杭を前記鋼矢板壁の内側山部に接するように構築した後、前記既設基礎と前記鋼矢板壁との間の地盤を掘削する代わりに、前記既設基礎と前記鋼矢板壁との間の地盤を掘削した後、前記鋼矢板壁内の地盤に鋼管製斜杭を前記鋼矢板壁の内側山部に接するように構築することに特徴を有するものである。   The invention according to claim 4 is the method for reinforcing an existing foundation for a structure according to any one of claims 1 to 3, wherein a steel pipe slant pile is attached to the ground in the steel sheet pile wall. Instead of excavating the ground between the existing foundation and the steel sheet pile wall, after excavating the ground between the existing foundation and the steel sheet pile wall, It is characterized in that a steel pipe slant pile is constructed on the ground in the steel sheet pile wall so as to be in contact with the inner mountain portion of the steel sheet pile wall.

この発明によれば、以下のような効果がもたらされる。   According to the present invention, the following effects are brought about.

(1)既設基礎の周囲の用地境界に可能な限り接近した地盤に鋼矢板壁を構築し、鋼矢板壁の内側山部に接するように鋼管製斜杭を構築し、鋼矢板壁と斜杭とを溶接等により結合することによって、既設基礎上の構造物に対して斜杭を用地境界一杯に離して構築することができるので、斜杭の有する水平方向剛性の増大を図ることができる。従って、この分、斜杭の小径化を図ることができるので、既設基礎を合理的かつ経済的に補強することが可能となる。   (1) A steel sheet pile wall is constructed on the ground as close as possible to the site boundary around the existing foundation, and a steel pipe pile pile is constructed so as to contact the inner mountain of the steel sheet pile wall. By connecting them with welding or the like, the slant pile can be constructed with the site boundary fully separated from the structure on the existing foundation, so that the horizontal rigidity of the slant pile can be increased. Therefore, since the diameter of the inclined pile can be reduced accordingly, the existing foundation can be reinforced reasonably and economically.

(2)鋼矢板壁と斜杭とを溶接等により結合することによって、既設基礎と鋼矢板壁との間に構築される増し基礎と斜杭とを、容易かつ確実に一体化することができる。   (2) By connecting the steel sheet pile wall and the inclined pile by welding or the like, the additional foundation and the inclined pile constructed between the existing foundation and the steel sheet pile wall can be integrated easily and reliably. .

(3)斜杭を小径化することが可能となることから、鋼矢板壁と既設基礎との間の狭いスペースでも斜杭の構築と、斜杭と鋼矢板壁との一体化を図ることができる。   (3) Since it is possible to reduce the diameter of the inclined pile, it is possible to construct the inclined pile and integrate the inclined pile and the steel sheet pile wall even in a narrow space between the steel sheet pile wall and the existing foundation. it can.

この発明の補強方法によって補強された構造物用既設基礎を示す平面図である。It is a top view which shows the existing foundation for structures reinforced by the reinforcement method of this invention. 図1のC−C線断面図である。It is CC sectional view taken on the line of FIG. 従来の補強方法を示す平面図である。It is a top view which shows the conventional reinforcement method. 図3のA−A線断面図である。FIG. 4 is a sectional view taken along line AA in FIG. 3. 斜杭と増しフーチングとの結合部分を示す平面図である。It is a top view which shows the coupling | bond part of a diagonal pile and additional footing. 図5のB−B線断面図である。FIG. 6 is a sectional view taken along line B-B in FIG. 5.

この発明の、構造物用既設基礎の補強方法の一実施態様を、図面を参照しながら説明する。   One embodiment of the method for reinforcing an existing foundation for a structure according to the present invention will be described with reference to the drawings.

図1は、この発明の補強方法によって補強された構造物用既設基礎を示す平面図、図2は、図1のC−C線断面図である。   FIG. 1 is a plan view showing an existing foundation for a structure reinforced by the reinforcing method of the present invention, and FIG. 2 is a cross-sectional view taken along the line CC in FIG.

図1および図2において、1は、地盤2中に構築された鉛直杭、3は、鉛直杭1上に構築された既設基礎としての既設フーチングである。既設基礎としては、既設フーチング3以外に既設地中梁等であっても良い。   In FIG. 1 and FIG. 2, 1 is a vertical pile constructed in the ground 2, and 3 is an existing footing as an existing foundation constructed on the vertical pile 1. The existing foundation may be an existing underground beam other than the existing footing 3.

4は、既設フーチング3上に構築された構造物としての橋脚、5は、既設フーチング3の周囲の地盤2に平面視矩形状に構築された鋼矢板壁である。鋼矢板壁5は、例えば、複数枚のU字形鋼矢板を平面視が波形となるように互いに連結したものからなり、図1中、一点鎖線で示す用地境界に可能な限り接近した地盤2に構築されている。なお、鋼矢板壁と鉛直杭とを組み合わせ、鋼矢板壁に水平方向剛性を負担させる基礎の補強構造は、特許文献2(特開2008−240356号公報)に開示されている。   4 is a pier as a structure constructed on the existing footing 3, and 5 is a steel sheet pile wall constructed in a rectangular shape in plan view on the ground 2 around the existing footing 3. The steel sheet pile wall 5 is composed of, for example, a plurality of U-shaped steel sheet piles connected to each other so as to have a waveform in plan view. In FIG. 1, the steel sheet pile wall 5 is close to the ground 2 as close as possible to the site boundary indicated by the one-dot chain line. Has been built. In addition, the reinforcement structure of the foundation which combines a steel sheet pile wall and a vertical pile and makes a steel sheet pile wall bear horizontal rigidity is disclosed by patent document 2 (Unexamined-Japanese-Patent No. 2008-240356).

6は、既設フーチング3と鋼矢板壁5との間の地盤2に構築された鋼管製斜杭である。斜杭6は、鋼矢板壁5の1組の対向する面の各々に2本、ハの字状に構築されている。なお、斜杭6は、鋼矢板壁5の各面に構築しても良く、1本または3本以上であっても良い。斜杭6は、鋼矢板壁5の内側山部5Aに接するように構築され、内側山部5Aと溶接等により結合されている。斜杭6の頭部は、後述する増しフーチング内に埋め込まれ、増しフーチングと一体化されている。   6 is a steel pipe slant pile constructed on the ground 2 between the existing footing 3 and the steel sheet pile wall 5. The diagonal piles 6 are constructed in a square shape, two on each of a pair of opposing surfaces of the steel sheet pile wall 5. In addition, the diagonal pile 6 may be constructed | assembled on each surface of the steel sheet pile wall 5, and 1 or 3 or more may be sufficient as it. The diagonal pile 6 is constructed so as to be in contact with the inner mountain portion 5A of the steel sheet pile wall 5, and is coupled to the inner mountain portion 5A by welding or the like. The head of the slant pile 6 is embedded in an additional footing, which will be described later, and is integrated with the additional footing.

7は、既設フーチング3と鋼矢板壁5との間に構築された増しフーチングである。既設フーチング3と増しフーチング7とは、鉄筋(図示せず)等により強固に一体化されている。   Reference numeral 7 denotes an additional footing constructed between the existing footing 3 and the steel sheet pile wall 5. The existing footing 3 and the additional footing 7 are firmly integrated by a reinforcing bar (not shown) or the like.

次に、この発明の、構造物用既設基礎の補強方法を説明する。   Next, a method for reinforcing an existing foundation for a structure according to the present invention will be described.

先ず、既設フーチング3の周囲の用地境界に可能な限り接近した地盤2に、複数枚のU字形鋼矢板を平面視が波形となるように互いに連結させて打ち込んで、平面視矩形状の鋼矢板壁5を構築する。   First, a plurality of U-shaped steel sheet piles are driven into the ground 2 as close as possible to the site boundary around the existing footing 3 so that the plan view is corrugated, and the rectangular steel sheet pile in plan view Build the wall 5.

次いで、鋼矢板壁5内の地盤2に斜杭6を鋼矢板壁5の内側山部5Aに接するように構築する。斜杭6は、その頭部が後述する増しフーチング内に埋め込まれる高さに構築する。また、斜杭6は、鋼矢板壁5の1組の対向する面の各々に2本、ハの字状に構築する。なお、斜杭6は、鋼矢板壁5の各面に構築しても良く、1本であっても良い。   Next, the slant pile 6 is constructed on the ground 2 in the steel sheet pile wall 5 so as to contact the inner mountain portion 5 </ b> A of the steel sheet pile wall 5. The slant pile 6 is constructed at a height at which its head is embedded in an additional footing described later. In addition, the diagonal piles 6 are constructed in a square shape, two on each of a pair of opposing surfaces of the steel sheet pile wall 5. The diagonal pile 6 may be constructed on each surface of the steel sheet pile wall 5 or may be one.

次いで、既設フーチング3と鋼矢板壁5との間の地盤2を掘削した後、鋼矢板壁5の内側山部5Aと斜杭6とを溶接等により結合する。   Next, after excavating the ground 2 between the existing footing 3 and the steel sheet pile wall 5, the inner mountain portion 5 </ b> A of the steel sheet pile wall 5 and the oblique pile 6 are joined by welding or the like.

このように、鋼矢板壁5を用地境界に可能な限り接近した地盤2に構築し、斜杭6を鋼矢板壁5の内側山部5Aに接するように構築し、結合することによって、既設フーチング3上の橋脚4に対して斜杭6を用地境界一杯に離して構築することができるので、斜杭6の有する水平方向剛性の増大を図ることができる。従って、この分、斜杭6を小径化することが可能となり、斜杭6を小径化しても補修後のフーチングの回転剛性を十分に高めることができる。すなわち、既設フーチング3を合理的かつ経済的に補強することが可能となる。   In this way, the steel sheet pile wall 5 is constructed on the ground 2 as close as possible to the site boundary, and the slant pile 6 is constructed so as to contact the inner mountain portion 5A of the steel sheet pile wall 5 and joined, thereby existing footing. Since the slant pile 6 can be constructed with the land boundary fully separated from the pier 4 on the top 3, the horizontal rigidity of the slant pile 6 can be increased. Therefore, the diameter of the diagonal pile 6 can be reduced accordingly, and the rotational rigidity of the footing after repair can be sufficiently increased even if the diagonal pile 6 is reduced in diameter. That is, the existing footing 3 can be reinforced reasonably and economically.

しかも、鋼矢板壁5の内側山部5Aと斜杭6とを溶接等により結合することによって、後述する増しフーチングと斜杭6との一体化が容易かつ確実に行える。   In addition, by joining the inner mountain portion 5A of the steel sheet pile wall 5 and the oblique pile 6 by welding or the like, the later-described additional footing and the oblique pile 6 can be integrated easily and reliably.

さらに、斜杭6を小径化することが可能となることから、鋼矢板壁5と既設フーチング3との間の狭いスペースでも斜杭6の構築と、斜杭6と鋼矢板壁5との一体化を容易に図ることができる。   Furthermore, since it becomes possible to reduce the diameter of the slant pile 6, the construction of the slant pile 6 and the integration of the slant pile 6 and the steel sheet pile wall 5 in a narrow space between the steel sheet pile wall 5 and the existing footing 3 are possible. Can be easily achieved.

このようにして、斜杭6を構築したら、鋼矢板壁5と既設フーチング3との間の空間内にコンクリートを打設して増しフーチング7を増設する。増しフーチング7と既設フーチング3とは、鉄筋(図示せず)等により強固に一体化する。斜杭6と増しフーチング7とは、斜杭6の頭部を増しフーチング7に埋め込むことによって一体化されるが、斜杭6は、鋼矢板壁5に溶接等により一体化されているので、斜杭6と増しフーチング7とは、さらに強固に一体化される。   When the oblique pile 6 is constructed in this way, concrete is placed in the space between the steel sheet pile wall 5 and the existing footing 3 to increase the number of footings 7. The additional footing 7 and the existing footing 3 are firmly integrated by a reinforcing bar (not shown) or the like. The inclined pile 6 and the additional footing 7 are integrated by increasing the head of the inclined pile 6 and embedding it in the footing 7, but the inclined pile 6 is integrated with the steel sheet pile wall 5 by welding or the like. The slant pile 6 and the additional footing 7 are more firmly integrated.

なお、以上の例は、鋼矢板壁5内の地盤2に斜杭6を鋼矢板壁5の内側山部5Aに接するように構築した後、既設フーチング3と鋼矢板壁5との間の地盤2を掘削するものであるが、既設フーチング3と鋼矢板壁5との間の地盤2を掘削した後、鋼矢板壁5内の地盤に斜杭6を鋼矢板壁5の内側山部5Aに接するように構築しても良い。   In the above example, the ground pile between the existing footing 3 and the steel sheet pile wall 5 is constructed after the slant pile 6 is constructed on the ground 2 in the steel sheet pile wall 5 so as to contact the inner mountain portion 5A of the steel sheet pile wall 5. 2, but after excavating the ground 2 between the existing footing 3 and the steel sheet pile wall 5, the slant pile 6 is placed on the inner pile 5 </ b> A of the steel sheet pile wall 5 on the ground in the steel sheet pile wall 5. You may build so that it may touch.

以上、説明したように、この発明によれば、既設基礎の周囲の用地境界に可能な限り接近した地盤に鋼矢板壁を構築し、鋼矢板壁の内側山部に接するように鋼管製斜杭を構築し、鋼矢板壁と斜杭とを溶接等により結合することによって、斜杭および鋼矢板壁を用いる工法の利点をそのまま生かし、さらに、以下のような効果がもたらされる。   As described above, according to the present invention, a steel sheet pile wall is constructed on the ground as close as possible to the site boundary around the existing foundation, and the steel pipe slant pile is in contact with the inner mountain portion of the steel sheet pile wall. By connecting the steel sheet pile wall and the oblique pile by welding or the like, the advantages of the construction method using the oblique pile and the steel sheet pile wall are utilized as they are, and further, the following effects are brought about.

(1)既設基礎上の構造物に対して斜杭を用地境界一杯に離して構築することができるので、斜杭の有する水平方向剛性の増大を図ることができる。従って、この分、斜杭の小径化を図ることができるので、既設基礎を合理的かつ経済的に補強することが可能となる。   (1) Since the slant pile can be constructed away from the site boundary with respect to the structure on the existing foundation, the horizontal rigidity of the slant pile can be increased. Therefore, since the diameter of the inclined pile can be reduced accordingly, the existing foundation can be reinforced reasonably and economically.

(2)鋼矢板壁と斜杭とを溶接等により結合することによって、既設基礎と鋼矢板壁との間に構築される増し基礎と斜杭とを、容易かつ確実に一体化することができる。   (2) By connecting the steel sheet pile wall and the inclined pile by welding or the like, the additional foundation and the inclined pile constructed between the existing foundation and the steel sheet pile wall can be integrated easily and reliably. .

(3)斜杭を小径化することが可能となることから、鋼矢板壁と既設基礎との間の狭いスペースでも斜杭の構築と、斜杭と鋼矢板壁との一体化を容易に図ることができる。   (3) Since it is possible to reduce the diameter of the inclined pile, it is easy to construct the inclined pile and integrate the inclined pile and the steel sheet pile wall even in a narrow space between the steel sheet pile wall and the existing foundation. be able to.

1:鉛直杭
2:地盤
3:既設フーチング
4:橋脚
5:鋼矢板壁
5A:内側山部
6:斜杭
7:増しフーチング
10:鉛直杭
11:地盤
12:既設フーチング
13:橋脚
14:増しフーチング
15:斜杭
16:型枠
17:鋼矢板壁
18:アンカー鉄筋
19:鉄筋
1: Vertical pile 2: Ground 3: Existing footing 4: Bridge pier 5: Steel sheet pile wall 5A: Inner mountain 6: Diagonal pile 7: Additional footing 10: Vertical pile 11: Ground 12: Existing footing 13: Pier 14: Additional footing 15: Diagonal pile 16: Form 17: Steel sheet pile wall 18: Anchor rebar 19: Rebar

Claims (4)

既設基礎の周囲の用地境界に可能な限り接近した地盤に、複数枚の凹凸形鋼矢板を平面視が波形となるように互いに連結したものからなる鋼矢板壁を構築し、次いで、前記鋼矢板壁内の地盤に鋼管製斜杭を前記鋼矢板壁の内側山部に接するように構築し、次いで、前記既設基礎と前記鋼矢板壁との間の地盤を掘削し、次いで、前記鋼矢板壁と前記斜杭とを結合し、次いで、前記鋼矢板壁と前記既設基礎との間の空間内にコンクリートを打設して増し基礎を増設し、前記増し基礎と前記既設基礎とを一体化すると共に、前記増し基礎と前記斜杭の頭部とを一体化することを特徴とする、構造物用既設基礎の補強方法。   A steel sheet pile wall constructed by connecting a plurality of concavo-convex steel sheet piles to each other so as to have a corrugated plan view is constructed on the ground as close as possible to the site boundary around the existing foundation, and then the steel sheet pile A steel pipe slant pile is constructed on the ground in the wall so as to contact the inner mountain portion of the steel sheet pile wall, then excavating the ground between the existing foundation and the steel sheet pile wall, and then the steel sheet pile wall And the slant pile, then, concrete is placed in the space between the steel sheet pile wall and the existing foundation to increase the additional foundation, and the additional foundation and the existing foundation are integrated. And the reinforcement method of the existing foundation for structures characterized by integrating the said additional foundation and the head of the said slanting pile. 前記鋼矢板壁と前記斜杭とを、溶接等により固定することを特徴とする、請求項1に記載の、構造物用既設基礎の補強方法。   The method for reinforcing an existing foundation for a structure according to claim 1, wherein the steel sheet pile wall and the oblique pile are fixed by welding or the like. 前記鋼矢板壁を平面視矩形状に構築し、前記斜杭を前記鋼矢板壁内の地盤にハの字状に構築することを特徴とする、請求項1または2に記載の、構造物用既設基礎の補強方法。   The structure according to claim 1 or 2, wherein the steel sheet pile wall is constructed in a rectangular shape in plan view, and the oblique pile is constructed in a square shape on the ground in the steel sheet pile wall. Reinforcement method of existing foundation. 前記鋼矢板壁内の地盤に鋼管製斜杭を前記鋼矢板壁の内側山部に接するように構築した後、前記既設基礎と前記鋼矢板壁との間の地盤を掘削する代わりに、前記既設基礎と前記鋼矢板壁との間の地盤を掘削した後、前記鋼矢板壁内の地盤に鋼管製斜杭を前記鋼矢板壁の内側山部に接するように構築することを特徴とする、請求項1から3の何れか1つに記載の、構造物用既設基礎の補強方法。   Instead of excavating the ground between the existing foundation and the steel sheet pile wall, instead of excavating the ground between the existing foundation and the steel sheet pile wall after constructing a steel pipe slant pile on the ground in the steel sheet pile wall After excavating the ground between a foundation and the steel sheet pile wall, a steel pipe oblique pile is constructed in contact with the inner mountain portion of the steel sheet pile wall in the ground in the steel sheet pile wall. Item 4. The method for reinforcing an existing foundation for a structure according to any one of Items 1 to 3.
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Publication number Priority date Publication date Assignee Title
JP2018003308A (en) * 2016-06-28 2018-01-11 株式会社熊谷組 Seismic reinforcement structure of pile foundation and construction method thereof

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JP2005180079A (en) * 2003-12-22 2005-07-07 Yukitake Shioi Aseismatic reinforcement structure of construction
JP2005213903A (en) * 2004-01-30 2005-08-11 Railway Technical Res Inst Joint member, sheet pile footing structure, bridge and joint method of footing and sheet pile
JP2006348526A (en) * 2005-06-14 2006-12-28 Railway Technical Res Inst Composite pile foundation structure and pile foundation type support method of structure
JP2008240356A (en) * 2007-03-27 2008-10-09 Railway Technical Res Inst Reinforcing structure and method for pile foundation

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JPS63308119A (en) * 1987-06-10 1988-12-15 Tokyu Constr Co Ltd Combination method of braced piling in pile foundation of construction
JP2005180079A (en) * 2003-12-22 2005-07-07 Yukitake Shioi Aseismatic reinforcement structure of construction
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JP2008240356A (en) * 2007-03-27 2008-10-09 Railway Technical Res Inst Reinforcing structure and method for pile foundation

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2018003308A (en) * 2016-06-28 2018-01-11 株式会社熊谷組 Seismic reinforcement structure of pile foundation and construction method thereof

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