JP2008133691A - Drain structure of road and buried side ditch used therefor - Google Patents

Drain structure of road and buried side ditch used therefor Download PDF

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JP2008133691A
JP2008133691A JP2006322022A JP2006322022A JP2008133691A JP 2008133691 A JP2008133691 A JP 2008133691A JP 2006322022 A JP2006322022 A JP 2006322022A JP 2006322022 A JP2006322022 A JP 2006322022A JP 2008133691 A JP2008133691 A JP 2008133691A
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drainage
groove
water
layer
moisture
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JP4331744B2 (en
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Shigeo Takaoka
薫生 高岡
Toru Moriya
徹 森谷
Takeo Kamishiro
丈生 神代
Kuniyuki Sekino
邦幸 関野
Ryosuke Inoue
了介 井上
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Ito Yogyo Co Ltd
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Ito Yogyo Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a drain structure of a road capable of effectively preventing clogging of a drain layer, by efficiently draining moisture inside of the drain layer in a wide range of the road. <P>SOLUTION: This drain structure of the road is provided by applying drainage pavement for introducing the moisture permeated into this drain layer 14 to a drainage channel 4 of a closed conduit member 1, by laying the drain layer 14 of the drainage pavement 9 on an upper surface of the closed conduit member 1 having the drainage channel 4 inside and composed of a water impermeable material. A drainage ditch 6 for downward draining the moisture permeated into the drain layer 14 is formed on the upper surface of the closed conduit member 1, and is communicated with the drainage channel 4 from a bottom part of its drainage ditch 6. A conduit 5 generating head pressure for downward sucking the moisture permeated into the drain layer 14 by moisture filled in the drainage ditch 6, is formed inside the closed conduit member 1. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、排水性舗装が施された道路の排水構造とこれに用いる埋設側溝に関する。   The present invention relates to a drainage structure of a road on which drainage pavement has been applied and a buried gutter used therefor.

近年、道路の排水性舗装技術として、路盤上に敷設した不透水層の上に、透水性機能を有する多孔質のアスファルト混合物よりなる排水層を配置するものがある。この排水性舗装が施工された道路では、雨水は排水層を浸透して不透水層の上を流れることで排水される。このため、道路の表面に水分が溜まらなくなり、車両の走行安全性が向上したり、排水層内の空隙によりエンジン音やタイヤのエアポンピング音が吸収され、交通騒音が低減されるという利点がある。
このような排水性舗装が施工された道路の側縁に設置する埋設側溝として、排水性舗装の端部を敷設可能な受容段部として形成し、排水層に浸透した水分を排水路に導くための集水口を当該受容段部に設けたものが知られている(特許文献1参照)。
特許第2849347号公報
In recent years, as a drainage pavement technique for roads, there is a technique in which a drainage layer made of a porous asphalt mixture having a water permeability function is disposed on an impermeable layer laid on a roadbed. On the road where the drainage pavement is constructed, rainwater is drained by permeating the drainage layer and flowing over the impermeable layer. For this reason, moisture does not accumulate on the surface of the road, which improves the driving safety of the vehicle, and the engine noise and the air pumping sound of the tire are absorbed by the air gap in the drainage layer, thereby reducing the traffic noise. .
In order to guide the moisture that has penetrated the drainage layer to the drainage channel by forming the end of the drainage pavement as a receiving step that can be laid as a buried side gutter installed on the side edge of the road where such drainage pavement is constructed Is known in which a water collecting port is provided at the receiving step (see Patent Document 1).
Japanese Patent No. 2849347

上記特許文献1の埋設側溝は、当該側溝の長手方向に沿って一定間隔おきに設けた受容段部に集水口を形成し、この各集水口から排水層に浸透した水分を下方に排水するようにしているので、各集水口の直上付近にある水分は排出され易いが、集水口から離れた部分にある水分は排出され難い。
このため、道路の場所によって排水性能が大きく異なり、排水層における特に集水口から離れた部分において、土砂は粉塵が内部に堆積して排水層に目詰まりが発生し易く、排水性舗装の排水性能が早期に阻害され得るという問題があった。
The buried side groove of Patent Document 1 forms a water collection port in a receiving step portion provided at regular intervals along the longitudinal direction of the side groove, and drains water that has permeated into the drainage layer from each water collection port downward. Therefore, moisture in the vicinity immediately above each water collecting port is easily discharged, but moisture in a portion away from the water collecting port is difficult to be discharged.
For this reason, the drainage performance varies greatly depending on the location of the road, and in the part of the drainage layer that is far from the water collection port, dirt and sand are likely to clog the drainage layer due to the accumulation of dust inside, and the drainage performance of the drainage pavement. There is a problem that can be inhibited early.

本発明は、このような事情に鑑みてなされたものであり、排水層の内部の水分を道路の広い範囲で効率よく排水でき、排水層の目詰まりを有効に防止できる道路の排水構造とこれに用いる埋設側溝を提供することを目的とする。   The present invention has been made in view of such circumstances, and it is possible to efficiently drain the water inside the drainage layer over a wide area of the road and effectively prevent the drainage layer from being clogged. It is an object to provide a buried side groove used in the construction.

上記目的を達成するため、本発明は次の技術的手段を講じた。
すなわち、本発明の排水構造は、内部に排水路を有する不透水性材料よりなる暗渠部材の上面に排水性舗装の排水層が敷設され、この排水層に浸透した水分を前記暗渠部材の排水路に導くようにした排水性舗装の排水構造において、前記排水層に浸透した水分を下方に排水する排水溝が前記暗渠部材の上面に形成され、その排水溝の底部から前記排水路に連通しかつ当該排水溝に充満した水分によって前記排水層に浸透した水分を下方に吸引するヘッド圧を発生させる導水路が前記暗渠部材の内部に形成されていることを特徴としている。
In order to achieve the above object, the present invention takes the following technical means.
That is, in the drainage structure of the present invention, a drainage layer of drainage pavement is laid on the upper surface of a culvert member made of a water-impermeable material having a drainage channel inside, and the water that has permeated the drainage layer is drained by the drainage channel of the culvert member. In the drainage structure of the drainage pavement that is led to the drainage pavement, a drainage groove is formed on the upper surface of the culvert member to drain the moisture that has penetrated into the drainage layer, communicated from the bottom of the drainage groove to the drainage channel, and A water conduit that generates a head pressure for sucking downward the water permeated into the drainage layer by the water filled in the drainage groove is formed inside the culvert member.

また、本発明の埋設側溝は、排水性舗装が施された道路に埋設されるブロック本体を備えた埋設側溝であって、長手方向に延びる排水路が前記ブロック本体の断面内部に形成されている埋設側溝において、前記排水層に浸透した水分を下方に排水する排水溝が前記ブロック本体の上面に形成され、その排水溝の底部から前記排水路に連通しかつ当該排水溝に充満した水分によって前記排水層に浸透した水分を下方に吸引するヘッド圧を発生させる導水路が前記ブロック本体の内部に形成されていることを特徴としている。   Further, the buried side groove of the present invention is a buried side groove provided with a block main body embedded in a road having drainage pavement, and a drainage channel extending in the longitudinal direction is formed inside the cross section of the block main body. In the buried side groove, a drainage groove is formed on the upper surface of the block main body to drain the moisture permeated into the drainage layer, and the drainage groove communicates with the drainage channel from the bottom of the drainage groove to fill the drainage groove. A water conduit for generating a head pressure for sucking downward the moisture permeating the drainage layer is formed inside the block body.

本発明によれば、排水層に浸透した水分が、暗渠部材である埋設側溝のブロック本体の上面に形成された排水溝に排水される。このため、この排水溝を道路の所定方向(例えば、道路の縦断方向)に沿って延設させることにより、排水層の内部の水分を道路の広い範囲で効率よく排水することができる。
また、本発明によれば、排水溝の底部から排水路に連通する導水路が、当該排水溝に充満した水分によって排水層に浸透した水分を下方に吸引するヘッド圧を発生させる。
According to the present invention, the water that has penetrated into the drainage layer is drained into the drainage groove formed on the upper surface of the block body of the buried side groove that is a culvert member. For this reason, by extending this drainage groove along a predetermined direction of the road (for example, the longitudinal direction of the road), water inside the drainage layer can be efficiently drained over a wide range of the road.
Further, according to the present invention, the water conduit that communicates from the bottom of the drainage channel to the drainage channel generates a head pressure that sucks downward the moisture that has penetrated the drainage layer by the moisture that has filled the drainage channel.

このため、例えば大雨等のために排水溝に水分が充満すると、上記ヘッド圧に伴うポンピング作用により、排水層の内部に存在していた土砂や粉塵が水分とともに排水溝に向かって下方に引き込まれ、排水層の内部に土砂や粉塵が堆積する目詰まり現象を防止ないし抑制することができる。これにより、排水性舗装の排水性能が早期に阻害されるのが有効に防止される。   For this reason, for example, when the drainage groove is filled with water due to heavy rain or the like, earth and sand and dust existing inside the drainage layer are drawn downward toward the drainage groove together with moisture by the pumping action associated with the head pressure. The clogging phenomenon in which earth and sand and dust accumulate in the drainage layer can be prevented or suppressed. Thereby, it is prevented effectively that the drainage performance of drainage pavement is inhibited early.

本発明において、前記排水溝の上面開口部はメッシュ部材により透水可能に閉塞することが好ましい。
この場合、排水溝の上方に敷設される排水性舗装の排水層がメッシュ部材によって支承されるので、排水溝の開口幅をある程度広げても排水層の強度を確保することができる。このため、排水層の強度低下を招来することなく、排水溝の排水量を増大することができる。
In this invention, it is preferable that the upper surface opening part of the said drain groove is obstruct | occluded by a mesh member so that water permeability is possible.
In this case, since the drainage layer of the drainage pavement laid above the drainage groove is supported by the mesh member, the strength of the drainage layer can be ensured even if the opening width of the drainage groove is increased to some extent. For this reason, the drainage amount of the drainage groove can be increased without causing the strength of the drainage layer to decrease.

本発明の埋設側溝において、前記排水溝を、前記ブロック本体の幅方向に離れて複数本設けることができ、この場合には、当該複数の排水溝を、前記ブロック本体の上面の幅方向一端部又は他端部のうちのいずれかの位置に縁石を取り付けた状態においても、当該複数の排水溝のうちのいずれかが前記縁石によって塞がれない位置に配置することが好ましい。なお、前記複数の排水溝は、前記ブロック本体の幅方向一端部側に配置された内側排水溝と、同方向他端部側に配置された外側排水溝とから構成することができる。
この場合、ブロック本体の上面の幅方向一端部又は他端部のうちのいずれかの位置に縁石を取り付けたとしても、縁石によって塞がれていない方の排水溝を通して、排水層に浸透した水分を排水路に排水することができる。従って、ブロック本体に縁石を連結する場合であっても、排水性舗装による排水機能を有効に確保することができる。
In the embedding side groove of the present invention, a plurality of the drainage grooves can be provided apart in the width direction of the block main body. In this case, the plurality of drainage grooves are provided at one end in the width direction of the upper surface of the block main body. Alternatively, even in a state where the curb is attached to any one of the other end portions, it is preferable that any of the plurality of drainage grooves is disposed at a position where it is not blocked by the curb. The plurality of drainage grooves can be constituted by an inner drainage groove disposed on one end side in the width direction of the block main body and an outer drainage groove disposed on the other end side in the same direction.
In this case, even if a curb is attached to one of the widthwise one end or the other end of the upper surface of the block body, the water that has permeated the drainage layer through the drainage groove not blocked by the curb Can be drained into the drainage channel. Therefore, even when the curbstone is connected to the block body, the drainage function by the drainage pavement can be effectively ensured.

また、前記縁石は、長手方向に延びる通水溝を下面に有するとともに、その通水溝から前記排水性舗装側に通じる集水口を有していてもよい。また、前記メッシュ部材が樹脂製であることが好ましい。
この場合、排水層の表面やその内部から側縁にしみ出してきた水分を、縁石の集水口を通して長手方向に延びる通水溝に取り込むことができ、前記通水溝の位置を前記排水溝の位置に合わせることで水分を効率よく排水路に流すことができる。また、メッシュ部材が樹脂製であれば、例えば金属製の場合と異なり、道路の舗装時に切削機械が破損するのを防止することができる。
The curb may have a water flow groove extending in the longitudinal direction on the lower surface, and may have a water collecting port that leads from the water flow groove to the drainage pavement side. The mesh member is preferably made of resin.
In this case, the moisture that has oozed out from the surface of the drainage layer or from the inside thereof to the side edge can be taken into the water passage groove extending in the longitudinal direction through the curb collecting port, and the position of the water passage groove is set to the drain groove. By matching the position, water can be efficiently flowed to the drainage channel. Further, if the mesh member is made of resin, it is possible to prevent the cutting machine from being damaged when paving the road, unlike the case of metal, for example.

以上の通り、本発明によれば、排水層の内部の水分を道路の広い範囲で効率よく排水できるとともに、導水路のポンピング作用によって排水層の内部に土砂や粉塵が堆積する目詰まり現象を防止ないし抑制できるので、排水性舗装の排水性能が早期に阻害されるのを防止することができる。   As described above, according to the present invention, the water inside the drainage layer can be drained efficiently over a wide area of the road, and the clogging phenomenon in which earth and sand and dust are accumulated inside the drainage layer by the pumping action of the water conduit is prevented. Moreover, since it can suppress, it can prevent that the drainage performance of drainage pavement is inhibited early.

以下、図面を参照しつつ本発明の実施形態を説明する。
図1は、本発明の一実施形態に係る埋設側溝1が排水性舗装9の道路脇に設置された第一の道路の排水構造を示している。
本実施形態の埋設側溝1は、排水性舗装9が施された道路に埋設される暗渠部材としてのプレキャストコンクリート製のブロック本体2よりなり、このブロック本体の上面2aには、歩道部10と車道部11とを区分けする縁石3が設置されている。すなわち、本実施形態の道路は縁石3を介して歩道部10と車道部11とに区分けされている。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
FIG. 1 shows a drainage structure of a first road in which a buried gutter 1 according to an embodiment of the present invention is installed on the side of a drainage pavement 9.
The buried side groove 1 of the present embodiment is composed of a block body 2 made of precast concrete as a culvert member buried in a road to which a drainable pavement 9 is applied, and an upper surface 2a of the block body has a sidewalk 10 and a roadway. A curbstone 3 that separates the portion 11 is provided. That is, the road of this embodiment is divided into the sidewalk part 10 and the roadway part 11 through the curb 3.

本実施形態の道路では、車道部11に排水性舗装9が施工されている。この排水性舗装9は、路盤12上に不透水層13を敷設するとともに、この不透水層13の上に多孔質のアスファルト混合物よりなる透水機能を有する排水層14を施工することによって構成されている。なお、不透水層13と排水層14との間は、例えばタックコートを塗布することによって接着性を向上させている。   In the road of this embodiment, the drainage pavement 9 is constructed on the roadway portion 11. The drainage pavement 9 is configured by laying an impermeable layer 13 on the roadbed 12 and constructing a drainage layer 14 having a water permeable function made of a porous asphalt mixture on the impermeable layer 13. Yes. In addition, adhesiveness is improved between the impermeable layer 13 and the drainage layer 14, for example by apply | coating a tack coat.

図1及び図2に示すように、埋設側溝1のブロック本体2は断面方形状をなしており、その内部には長手方向に延びる円管状の排水路4が形成されている。この排水路4の直径は300mmであり、流れ込む多量の雨水等を排出できるようになっている。なお、上記排水路4の直径は特に限定されるものではなく、水量に応じて他の寸法としてもよい。
ブロック本体の上面2aは平面状に形成され、縁石3を取り付けるための取付面となっている。そして、ブロック本体2には、排水層14に浸透した水分(例えば雨水等)を排水路4に導くべく、排水路4に連通する二組の導水路5が設けられている。
As shown in FIGS. 1 and 2, the block main body 2 of the buried side groove 1 has a rectangular cross section, and a circular drainage channel 4 extending in the longitudinal direction is formed inside thereof. The drainage channel 4 has a diameter of 300 mm, and can discharge a large amount of rainwater flowing in. In addition, the diameter of the said drainage channel 4 is not specifically limited, It is good also as another dimension according to the amount of water.
An upper surface 2a of the block body is formed in a flat shape and serves as an attachment surface for attaching the curbstone 3. The block body 2 is provided with two sets of water conduits 5 that communicate with the drainage channel 4 in order to guide moisture (for example, rainwater) that has penetrated into the drainage layer 14 to the drainage channel 4.

これら二組の導水路5は、排水路4の内面上部から車道側寄りの位置から車道側へ斜め上方に延び、車道側端部近傍に上部開口5Aaを有する内導水路5Aと、排水路4の内面上部から歩道側寄りの位置から歩道側へ斜め上方に延び、歩道側端部近傍に上部開口5Baを有する外導水路5Bとから構成されている。
また、ブロック本体2の上面には、上記導水路5と交差しつつ長手方向に延びる二本の排水溝6が形成されている。
These two sets of water conduits 5 extend obliquely upward from the position on the inner side of the drainage channel 4 to the side of the roadway from the upper part of the inner surface of the drainage channel 4, and the inner waterway 5A having the upper opening 5Aa near the end of the roadway, It is composed of an outer waterway 5B that extends obliquely upward from a position closer to the sidewalk to the sidewalk side and has an upper opening 5Ba in the vicinity of the end on the sidewalk side.
Further, two drain grooves 6 extending in the longitudinal direction while intersecting with the water conduit 5 are formed on the upper surface of the block body 2.

これら排水溝6は、ブロック本体2の車道側寄りに配置された内側排水溝6Aと、同本体2の歩道側寄りに配置された外側排水溝6Bとからなり、これらの排水溝6A,6Bは、それぞれ上方に開口した状態で、ブロック本体2の長手方向(道路の縦断方向)に沿って互いに平行して直線状に延びている。
内側排水溝6Aの底部には、内導水路5Aの上部開口5Aaが連通しており、外側排水溝6Bの底部には、外導水路の上部開口5Baが連通している。これら内導水路5Aと外導水路5Bは、ブロック本体2の長手方向に沿って一定間隔おきに配置されている(図2参照)。
These drainage grooves 6 are composed of an inner drainage groove 6A arranged near the roadway side of the block body 2 and an outer drainage groove 6B arranged near the sidewalk side of the main body 2, and these drainage grooves 6A, 6B are In a state where each of the blocks is opened upward, the block bodies 2 extend linearly in parallel with each other along the longitudinal direction of the block body 2 (the longitudinal direction of the road).
The upper opening 5Aa of the inner water conduit 5A communicates with the bottom of the inner drain groove 6A, and the upper opening 5Ba of the outer water conduit communicates with the bottom of the outer drain groove 6B. The inner water guide channel 5A and the outer water guide channel 5B are arranged at regular intervals along the longitudinal direction of the block body 2 (see FIG. 2).

排水溝6の上部開口は、それぞれ樹脂製の断面円弧状のメッシュ部材15により長手方向に沿って透水可能に閉塞されている。これらメッシュ部材15は、排水層14が排水溝6に陥没するのを防止しつつ透水機能を確保するものであり、排水層14に浸透した水分やこれに含有する粉塵や土砂等を通過させる程度の空隙率を有している。また、このメッシュ部材15は、ポリプロピレン樹脂等の合成樹脂で成形されており、高い耐圧性能を有している。
また、本実施形態では、上記導水路5は、排水溝6の底部から排水路4に連通しているとともに、当該排水溝6に充満した水分によって排水層14に浸透した水分を下方に吸引するヘッド圧を発生させる管路長及び管路径に設定されている。
The upper openings of the drain grooves 6 are closed by a mesh member 15 having a circular cross section made of resin so as to be permeable in the longitudinal direction. These mesh members 15 are intended to ensure the water permeable function while preventing the drainage layer 14 from sinking into the drainage groove 6, and allow the moisture that has permeated the drainage layer 14, the dust and earth contained therein, and the like to pass therethrough. It has the porosity of. The mesh member 15 is formed of a synthetic resin such as polypropylene resin, and has high pressure resistance.
Further, in the present embodiment, the water conduit 5 communicates with the drainage channel 4 from the bottom of the drainage groove 6, and sucks moisture that has penetrated into the drainage layer 14 with moisture filled in the drainage groove 6. The pipe length and the pipe diameter that generate the head pressure are set.

本実施形態の埋設側溝1によれば、道路の長手方向(縦断方向)の広い範囲に渡って上記排水溝6が形成されているので、排水層14に浸透した水分を当該排水溝6に沿った道路の広い範囲で効率よく排水することができる。
また、排水溝6に水分が充満すると導水路5が上記ヘッド圧を発生させるので、このヘッド圧に伴うポンピング作用により、排水層14の内部に存在していた土砂や粉塵が水分とともに排水溝6に向かって下方に引き込まれ、排水層14の内部に土砂や粉塵が堆積する目詰まり現象を防止ないし抑制することができる。
According to the buried side groove 1 of the present embodiment, since the drainage groove 6 is formed over a wide range in the longitudinal direction (longitudinal direction) of the road, the moisture that has permeated the drainage layer 14 flows along the drainage groove 6. Can be drained efficiently over a wide area of the road.
Further, when the drainage groove 6 is filled with water, the water guide channel 5 generates the head pressure. Therefore, due to the pumping action associated with the head pressure, earth and sand and dust existing inside the drainage layer 14 together with moisture are discharged into the drainage groove 6. The clogging phenomenon in which earth and sand or dust accumulates inside the drainage layer 14 can be prevented or suppressed.

なお、一般に、排水層14に目詰まりが発生すると排水層14の洗浄を行うが、従来では、排水層14の外部から高圧水を噴射するとともに吸引を行う専用車両を用いていたため手間とコストがかかっていた。
この点、本実施形態の埋設側溝1では、長手方向に沿った排水溝6を上面2aに備えているため、道路の縦断方向に沿って均等でかつ高い排水性能を有する。従って、排水層14の外部から高圧水を噴射するだけで、目詰まりした粉塵や土砂を排水溝6に排出して取り除くことができる。
In general, when the drainage layer 14 is clogged, the drainage layer 14 is washed. Conventionally, a dedicated vehicle that injects and sucks high-pressure water from the outside of the drainage layer 14 is used. It was hanging.
In this respect, the buried side groove 1 of the present embodiment has the drainage groove 6 along the longitudinal direction on the upper surface 2a, and therefore has a uniform and high drainage performance along the longitudinal direction of the road. Therefore, clogged dust and earth and sand can be discharged and removed to the drainage groove 6 simply by jetting high-pressure water from the outside of the drainage layer 14.

図1に示すように、前記縁石3は、下方へ向かうに従って片側が広がる断面略矩形状に形成されているとともに、平面状の下面を有している。この縁石3は、ブロック本体2の上面2aに当該ブロック本体2に対する幅方向の相対的な位置を変更して取り付けられるようになっている。
また、縁石3の幅方向幅はブロック本体2の上面2aよりも小さく設計されており、縁石3が上面2aの歩道側の端部及び車道側の端部のうちいずれの位置に取り付けられた状態においても、内側排水溝6A或いは外側排水溝6Bのうちのいずれかが縁石3に塞がれないようになっている。
As shown in FIG. 1, the curb 3 is formed in a substantially rectangular shape with one side expanding toward the lower side, and has a flat lower surface. The curb 3 is attached to the upper surface 2 a of the block body 2 by changing the relative position in the width direction with respect to the block body 2.
The width in the width direction of the curb 3 is designed to be smaller than the upper surface 2a of the block main body 2, and the curb 3 is attached to any position of the end on the sidewalk and the end on the roadway of the upper surface 2a. Also, either the inner drainage groove 6A or the outer drainage groove 6B is not blocked by the curbstone 3.

また、図1に示す道路の排水構造では、縁石3は上面2aの歩道側の端部において、縁石3の歩道側側面とブロック本体2の歩道側側面とが面一となるように取り付けられている。そして、上部開口6Baは縁石3の下に隠れており、上部開口6Aaは、縁石3が取り付けられている部分以外の位置にあるため、縁石3に塞がれないようになっている。
縁石3の下面には、長手方向に延びる通水溝7が縁石3の長手方向両端に渡って形成されている。この通水溝7は、下方へ向かうに従って幅方向両側に広がる断面台形形状に形成されており、水分を縁石3内部で長手方向に流す機能を有している。なお、通水溝7は本実施形態の形状に限定するものではなく他の形状としてもよい。
In the road drainage structure shown in FIG. 1, the curb 3 is attached so that the side wall side surface of the curb 3 and the side wall side surface of the block body 2 are flush with each other at the side wall side end of the upper surface 2a. Yes. Since the upper opening 6Ba is hidden under the curb 3 and the upper opening 6Aa is located at a position other than the part to which the curb 3 is attached, the curb 3 is not blocked.
On the lower surface of the curb 3, water passage grooves 7 extending in the longitudinal direction are formed across both ends of the curb 3 in the longitudinal direction. The water flow grooves 7 are formed in a trapezoidal cross-sectional shape that spreads on both sides in the width direction toward the lower side, and have a function of flowing moisture in the longitudinal direction inside the curb 3. In addition, the water flow groove 7 is not limited to the shape of this embodiment, It is good also as another shape.

また、図3に示すように縁石3の両端部には、前記通水溝7から排水性舗装側(車道側)に通じる集水口8が形成されている。
この集水口8は、隣接する縁石3の端面同士が合わさることによって構成されているものであり、埋設側溝1を設置した状態において集水口8の上部は排水層14の表面よりも上に出ており、その下部は排水層14の表面よりも下に配置されている。従って、排水層14の表面から流れてくる水分、及び排水層14の内部からその側縁にしみ出してくる水分が、集水口8から通水溝7に取り込まれるようになっている。
Moreover, as shown in FIG. 3, the water collecting port 8 which leads from the said water flow groove 7 to the drainage pavement side (roadway side) is formed in the both ends of the curb 3.
The water collection port 8 is configured by joining the end surfaces of the adjacent curb stones 3, and the upper part of the water collection port 8 protrudes above the surface of the drainage layer 14 in a state where the buried side groove 1 is installed. The lower part is arranged below the surface of the drainage layer 14. Accordingly, moisture flowing from the surface of the drainage layer 14 and moisture that oozes out from the inside of the drainage layer 14 to its side edge are taken into the water flow groove 7 from the water collection port 8.

図1に示す排水構造において、排水層14は不透水層13及びブロック本体2の上面2aに施工されており、ブロック本体2は排水性舗装9の表面に露出していない。そして、ブロック本体2の上面2aのうち縁石3が取り付けられている部分以外の部分には排水層14が施工され、この排水層14の下面がブロック本体2の上面2aと一致している。
これにより、内側排水溝6Aの上部開口が、前記メッシュ部材15を介した状態で排水層14の下面に突き合うような状態となっており、排水層14の内部を浸透してその下面にしみ出してきた水分が内側排水溝6Aを通じて上部開口に入り、内導水路5Aを通って排水路4に流れ出されるようになっている。
In the drainage structure shown in FIG. 1, the drainage layer 14 is constructed on the impermeable layer 13 and the upper surface 2 a of the block body 2, and the block body 2 is not exposed on the surface of the drainage pavement 9. And the drainage layer 14 is constructed in parts other than the part to which the curb 3 is attached among the upper surfaces 2a of the block main body 2, and the lower surface of this drainage layer 14 corresponds with the upper surface 2a of the block main body 2.
As a result, the upper opening of the inner drainage groove 6A is in a state of abutting against the lower surface of the drainage layer 14 with the mesh member 15 interposed therebetween, and penetrates the inside of the drainage layer 14 and blots the lower surface thereof. Moisture that has entered enters the upper opening through the inner drainage groove 6A, and flows out to the drainage channel 4 through the inner water conduit 5A.

また、図1に示す排水構造において、縁石3の下には通水溝7と合わさるようにして外側排水溝6Bの上部開口が位置しており、集水口8から取り込まれた、排水層14の表面及び側縁から流れてきた水分は通水溝7や外側排水溝6Bを通って外導水路5Bの上部開口5Baに入り、外導水路5Bを通って排水路4に流れ出るようになっている。   Further, in the drainage structure shown in FIG. 1, the upper opening of the outer drainage groove 6 </ b> B is located below the curb 3 so as to be combined with the water flow groove 7, and the drainage layer 14 taken in from the water collection port 8. Moisture flowing from the surface and side edges enters the upper opening 5Ba of the outer conduit 5B through the water channel 7 and the outer drain channel 6B, and flows out to the drain channel 4 through the outer conduit 5B. .

図4は、第二の道路の排水構造を示したものである。
図4の排水構造では、縁石3はブロック本体2の上面2aの車道部11側端部に取り付けられており、歩道部10には透水性舗装19が施工されている。この透水性舗装19は透水層16、その下の透水性路盤(砕石)17、さらにその下のフィルター層(砂)18からなるものである。同図に示すように上面2aのうち縁石3が取り付けられている部分より歩道側の部分には、透水性路盤17及びその上の透水層16が施工されている。
FIG. 4 shows the drainage structure of the second road.
In the drainage structure of FIG. 4, the curb 3 is attached to the end of the upper surface 2 a of the block body 2 on the side of the roadway 11, and a water-permeable pavement 19 is constructed on the sidewalk 10. This water-permeable pavement 19 is composed of a water-permeable layer 16, a water-permeable roadbed (crushed stone) 17 thereunder, and a filter layer (sand) 18 therebelow. As shown in the figure, a water-permeable roadbed 17 and a water-permeable layer 16 thereon are constructed on the side of the upper surface 2a on the sidewalk side from the portion where the curb 3 is attached.

内側排水溝6Aの上部開口6Aaは縁石3の下に隠れており、外側排水溝6Bの上部開口6Baは透水性路盤17に接している。
図4の排水構造によれば、排水層14の表面や側縁から流れ出た水分は縁石3の集水口8で取り込まれ、通水溝7から内側排水溝6A、そして内導水路5Aを通って排水路4に流れ出る。一方、歩道部10では、透水性舗装19の下部に透水しきれない余剰の水分は、ブロック本体2の外側排水溝6Bから取り込まれ、外導水路5Bを通って排水路4に流れ出ることになる。
The upper opening 6Aa of the inner drainage groove 6A is hidden under the curb 3, and the upper opening 6Ba of the outer drainage groove 6B is in contact with the water permeable roadbed 17.
According to the drainage structure of FIG. 4, moisture flowing out from the surface or side edge of the drainage layer 14 is taken in at the water collecting port 8 of the curbstone 3 and passes through the inner drainage channel 6A and the inner waterway 5A from the water flow channel 7. It flows out into the drainage channel 4. On the other hand, in the sidewalk 10, excess water that cannot be permeated into the lower part of the water-permeable pavement 19 is taken in from the outer drainage groove 6B of the block body 2 and flows out to the drainage channel 4 through the outer guide channel 5B. .

このように、本実施形態の埋設側溝1によれば、縁石3がブロック本体2に対する位置を変更して取り付け可能になっているので、横断防止柵等の各種埋設物(図示せず)を縁石3の側近に設置する際に、埋設物をブロック本体2に干渉させずに設置することができる。
具体的には、埋設物を縁石3の車道側の側近に設置するときは、図4に示す排水構造を採用して埋設物とブロック本体2が干渉しないようにし、埋設物を縁石3の歩道側の側近に設置するときは、図1に示す排水構造を採用して埋設物とブロック本体2が干渉しないようにすればよい。
As described above, according to the buried side groove 1 of the present embodiment, the curb 3 can be attached by changing the position with respect to the block main body 2, so various buried objects (not shown) such as a crossing prevention fence can be attached to the curb. 3 can be installed without interfering with the block main body 2.
Specifically, when the buried object is installed in the vicinity of the curb 3 on the roadway side, the drainage structure shown in FIG. 4 is adopted so that the buried object and the block body 2 do not interfere with each other, and the buried object is placed on the side wall of the curb 3. When installing near the side, the drainage structure shown in FIG. 1 may be adopted so that the buried object and the block main body 2 do not interfere with each other.

更に、ブロック本体2の上面2aが平面状となっているため、下面が平面状となっていればどのような縁石でも取り付けることができ、規格品(JIS規格品等)としての縁石を採用すればコストを抑えることもできる。例えば、幅方向中央部に三つ目の導水管(図示せず)を設け、このような縁石をブロック本体2の上面2aの当該幅方向中央部に取り付けた場合には、縁石の下の排水溝の上部開口は塞がれることになるが、車道側の排水性舗装の水分は内側排水溝6Aから内導水路5Aへ排水することができ、歩道側の透水性舗装の余剰の水分は外側排水溝6Bから外導水路5Bへ排水することができる。   Furthermore, since the upper surface 2a of the block body 2 is flat, any curb can be attached as long as the lower surface is flat, and a curb as a standard product (JIS standard product, etc.) should be adopted. Cost can also be reduced. For example, when a third water guide pipe (not shown) is provided at the center in the width direction, and such a curb is attached to the center in the width direction of the upper surface 2a of the block body 2, the drainage below the curb The upper opening of the ditch will be blocked, but the moisture of the drainage pavement on the roadway side can be drained from the inner drainage ditch 6A to the inner waterway 5A, and the excess moisture of the permeable pavement on the sidewalk side is outside The water can be drained from the drainage groove 6B to the external conduit 5B.

このように、縁石3の側近に設置する横断防止柵等、各種埋設物の位置に応じてブロック本体2に対する縁石3の位置を変更することにより、ブロック本体2と各種埋設物との干渉を避けることができる。
また、ブロック本体2の排水溝6、縁石3が上記のいずれの位置に取り付けられても一部の上部開口が縁石3によって塞がれない位置に設けられていることから、ブロック本体2の排水溝6を経由した排水路4への集水機能を確保することができる。
Thus, by changing the position of the curb 3 relative to the block main body 2 according to the position of various buried objects such as a crossing prevention fence installed near the curb 3, interference between the block main body 2 and the various buried objects is avoided. be able to.
Further, since the drainage groove 6 and the curb 3 of the block main body 2 are provided at any position as described above, a part of the upper opening is provided at a position where the curbstone 3 does not block it. The function of collecting water into the drainage channel 4 via the groove 6 can be ensured.

図5及び図6は本発明の第二実施形態に係る埋設側溝20を示している。
本実施形態の埋設側溝20が上記実施形態と異なる点は、ブロック本体21の導水路22の上部開口22aが、上面2aの幅方向に沿って広げられている点である。なお、上記実施形態の埋設側溝1と共通する点については同符号を付してその説明を省略する。
図5に示すように、ブロック本体21は、上面2aから所要深さで形成されかつ幅方向に延びる横溝として構成された上部開口22aと、排水路4の内面最上部から上方に延びる縦水路22bとからなる単一の導水路22を有している。
5 and 6 show the buried side groove 20 according to the second embodiment of the present invention.
The embedding side groove 20 of the present embodiment is different from the above embodiment in that the upper opening 22a of the water conduit 22 of the block body 21 is widened along the width direction of the upper surface 2a. In addition, about the point which is common in the embedding side groove | channel 1 of the said embodiment, the same code | symbol is attached | subjected and the description is abbreviate | omitted.
As shown in FIG. 5, the block main body 21 includes an upper opening 22 a formed as a transverse groove formed at a required depth from the upper surface 2 a and extending in the width direction, and a vertical water channel 22 b extending upward from the uppermost inner surface of the drainage channel 4. A single water conduit 22 is formed.

上記縦水路22bは、上部開口22aの幅方向中央から下方へ延びており、上部開口22aに入ってきた水分が縦水路22bを通って排水路4へ流されるようになっている。
なお、本実施形態では、縁石の両端部同士を合わせることで導水路22が構成されるように、縁石の両端部に上部開口22a、水路22bを縦に分割したうちの片方を形成しているが、導水路22を設ける箇所は限定するものはなく、例えばブロック本体21の長手方向中央部、あるいは長手方向に所要間隔をあけて設けるようにしてもよい。
The vertical water channel 22b extends downward from the center in the width direction of the upper opening 22a, and the water that has entered the upper opening 22a flows through the vertical water channel 22b to the drainage channel 4.
In the present embodiment, one of the upper openings 22a and the water channel 22b is vertically divided at both ends of the curb so that the water guide channel 22 is configured by combining both ends of the curb. However, the location where the water conduit 22 is provided is not limited. For example, the block main body 21 may be provided at a central portion in the longitudinal direction or at a predetermined interval in the longitudinal direction.

上部開口22aは、上面2aの幅方向一端部から他端部に渡って、道路側から歩道側へ貫通するように形成されている。これにより、縁石3が上面2aの幅方向一端部及び他端部のうちのいずれの位置に取り付けられた状態においても、排水溝6及び導水路22の上部開口22aの一部が縁石3に塞がれないようになっている。
このように構成された埋設側溝20では、排水溝6を伝ってきた水分は上部開口22aに集約されて縦水路22bを通って排水路4へ流れ込む。
The upper opening 22a is formed so as to penetrate from the road side to the sidewalk side from one end to the other end in the width direction of the upper surface 2a. Thereby, in the state where the curb 3 is attached to any position of the one end and the other end in the width direction of the upper surface 2a, a part of the drain groove 6 and the upper opening 22a of the water conduit 22 is blocked by the curb 3. It is designed not to peel off.
In the buried side groove 20 configured in this way, the moisture that has passed through the drainage groove 6 is concentrated in the upper opening 22a and flows into the drainage channel 4 through the vertical water channel 22b.

従って、外側排水溝6Bの上方に縁石3を設置した場合(図6の排水構造)でも、内側排水溝6Aの上方に設置した場合でも、排水性舗装9の排水層14の水分を排水路4へ流すことができる。
なお、上部開口の幅方向長さを上面2aよりも小さくして、当該上部開口を道路側から歩道側へ貫通しない凹形状としてもよい。その際、排水性舗装9の表面やその側縁からしみ出してくる水分は、縁石3の集水口8から通水溝7へ入り、この通水溝7で長手方向へ流され導水路22の上部開口22aから水路22bで排水路4へ流される。
Therefore, even when the curb 3 is installed above the outer drainage groove 6B (drainage structure in FIG. 6) or when it is installed above the inner drainage groove 6A, the water in the drainage layer 14 of the drainable pavement 9 is drained from the drainage channel 4. Can be flowed to.
In addition, the width direction length of the upper opening may be made smaller than the upper surface 2a, and a concave shape that does not penetrate the upper opening from the road side to the sidewalk side may be used. At that time, moisture that exudes from the surface of the drainage pavement 9 or its side edge enters the water channel 7 through the water collecting port 8 of the curb 3 and flows in the longitudinal direction in the water channel 7 to flow through the water conduit 22. The water flows from the upper opening 22a to the drainage channel 4 through the water channel 22b.

なお、本発明は上記各実施形態に限定するものではない。
例えば、ブロック本体2に形成する排水溝6は、当該本体2の長手方向の全範囲に渡って延設されていなくてもよく、長手方向中途で分断していてもよい。
また、図7に示すように、隣接する縁石3間に、排水性舗装側に開いた下部集水口23aを有する接合部材23を設けてもよい。この下部集水口23aは、接合部材23の両側に二箇所形成されており、それとともに隣接する縁石3の通水溝7を連通させるための長手方向の溝24も形成されている。
The present invention is not limited to the above embodiments.
For example, the drainage groove 6 formed in the block main body 2 may not extend over the entire longitudinal range of the main body 2 and may be divided in the middle in the longitudinal direction.
Moreover, as shown in FIG. 7, you may provide the joining member 23 which has the lower water collection port 23a opened to the drainage pavement side between the adjacent curbs 3. The lower water collecting port 23a is formed at two positions on both sides of the joining member 23, and a longitudinal groove 24 for communicating the water groove 7 of the adjacent curb stone 3 is also formed therewith.

当該下部集水口23があるため、縁石3に集水口を設けることなく排水層14の表面や側縁から流れ出てくる水分をブロック本体2の導水路4へ流すことができる。
また、接合部材23は弾性体からなる素材で形成されており、隣接する縁石3の接合端面の形状を合わせなくても縁石3同士を簡単に接合することができる。なお、接合部材の素材は限定するものではなく、他の素材を用いて形成してもよい。
Since there is the lower water collecting port 23, the water flowing out from the surface and the side edge of the drainage layer 14 can flow to the water conduit 4 of the block body 2 without providing the water collecting port in the curb 3.
Moreover, the joining member 23 is formed with the raw material which consists of an elastic body, and even if it does not match the shape of the joining end surface of the adjacent curb stone 3, the curb stones 3 can be joined easily. In addition, the raw material of a joining member is not limited, You may form using another raw material.

また、図8に示すように、幅方向に貫通する凹部26を縁石25に形成することにより排水層14の表面から流れてくる水分、排水層14の縁端からしみ出してくる水分、あるいは歩道部10の透水性舗装の表面から流れてくる水分を当該凹部26により集水し、これを凹部26に対応する位置にあるブロック本体2の導水路5に通して排水路4に流すようにしてもよい。
更に、ブロック本体2に設ける導水路5の配置は適宜変更できる。例えばブロック本体2に設ける導水路5を、ブロック本体2の幅方向に離れて三箇所以上に配置してもよい。また、縁石3の通水溝や集水口の形状及び大きさは任意に変更可能であり、縁石3の取り付け位置も現場の状況に応じて自由に変更することができる。
Further, as shown in FIG. 8, by forming a concave portion 26 penetrating in the width direction in the curbstone 25, moisture flowing from the surface of the drainage layer 14, moisture oozing from the edge of the drainage layer 14, or a sidewalk Moisture flowing from the surface of the water-permeable pavement of the portion 10 is collected by the concave portion 26 and passed through the water conduit 5 of the block body 2 located at a position corresponding to the concave portion 26 to flow into the drainage channel 4. Also good.
Furthermore, the arrangement of the water conduit 5 provided in the block body 2 can be changed as appropriate. For example, the water guide paths 5 provided in the block body 2 may be arranged at three or more locations apart in the width direction of the block body 2. Moreover, the shape and size of the water flow groove and the water collecting port of the curb 3 can be arbitrarily changed, and the mounting position of the curb 3 can be freely changed according to the situation on the site.

また、上記各実施形態では、排水性舗装9の排水層14の内部の水分を排水するための暗渠部材として、断面円形の排水路4を有する埋設側溝1を使用しているが、暗渠部材はかかる埋設側溝1に限定されるものではなく、現場打ちコンクリート製のカルバート構造の排水施設であってもよい。   Moreover, in each said embodiment, although the buried gutter 1 which has the drainage channel 4 with a circular cross section is used as a culvert member for draining the water inside the drainage layer 14 of the drainage pavement 9, the culvert member is The drainage facility is not limited to the buried side groove 1 and may be a drainage facility having a culvert structure made of cast-in-place concrete.

以下、導水路5によるポンピング作用の発生条件を検証するための透水試験の内容とその結果について説明する。
図9は、上記透水試験に用いた試験水槽30の断面図である。
この試験水槽30は、30cm平方の正方形状の内空部を有する筒状体31と、この筒状体31の下方開口を閉塞する底板部32とから構成されており、この底板部32の中央部には、開口幅Dが変更自在なスリット状の底面開口33が形成されている。
Hereinafter, the content and result of the water permeability test for verifying the generation condition of the pumping action by the water conduit 5 will be described.
FIG. 9 is a cross-sectional view of the test water tank 30 used in the water permeability test.
The test water tank 30 is composed of a cylindrical body 31 having a square inner space of 30 cm square and a bottom plate portion 32 that closes a lower opening of the cylindrical body 31. A slit-shaped bottom opening 33 whose opening width D can be changed is formed in the part.

上記試験水槽30の内部に、次の諸元を有する排水性舗装の排水層34を充填し、この状態で、水位が7.5cmとなるように試験水槽30の内部に水を入れ、底面開口33から流出する水量(排水層34の透水量)を測定した。
〔排水層の諸元〕
厚さT:5.5cm
空隙率:約20%
骨 材:13mm以下
The inside of the test water tank 30 is filled with a drainage pavement 34 having drainage pavement having the following specifications, and in this state, water is poured into the test water tank 30 so that the water level becomes 7.5 cm, and the bottom surface is opened. The amount of water flowing out from 33 (water permeability of the drainage layer 34) was measured.
[Specifications of drainage layer]
Thickness T: 5.5cm
Porosity: about 20%
Aggregate: 13mm or less

図10は、上記透水試験によって得られた開口幅D(cm)と定水位透水量(cc/min)との関係を表すグラフであり、図11(a)は、同試験によって得られた開口幅D(mm)と変水位透水係数との関係を表すグラフである。また、図11(b)は、同試験によって得られた開口幅D(cm)と定水位透水係数との関係を表すグラフである。
なお、変水位透水係数とは、水槽30への水分の供給を止めて水位を舗装上10cmから低下させながら水分を底面開口33から流出させた場合の透水係数であり、定水位透水係数とは、水槽30内の水位を舗装上2cmに保持した状態で水分を底面開口33から流出させた場合の透水係数のことを意味する。
FIG. 10 is a graph showing the relationship between the opening width D (cm) obtained by the above water permeability test and the constant water level water permeability (cc / min), and FIG. 11A shows the opening obtained by the same test. It is a graph showing the relationship between the width D (mm) and the water level permeability coefficient. Moreover, FIG.11 (b) is a graph showing the relationship between the opening width D (cm) obtained by the test, and a constant water level permeability coefficient.
The variable-level hydraulic conductivity is a hydraulic conductivity when water is discharged from the bottom opening 33 while the supply of moisture to the water tank 30 is stopped and the water level is lowered from 10 cm on the pavement. It means the water permeability coefficient when water is caused to flow out from the bottom surface opening 33 while the water level in the water tank 30 is maintained at 2 cm on the pavement.

図10に示すように、開口幅Dと定水位透水量は概ね比例関係になっているので、開口幅Dを大きくするほど、底面開口33からの流量(排水層34の透水量)が増大する。
ところが、図11(a)及び(b)に示すように、開口幅Dと変水位透水係数及び定水位透水係数との関係を見ると、開口幅Dの大小に拘わらず一定値である筈のそれらの透水係数が、開口幅Dが10cmを下回った時点から、当該開口幅Dが小さくなるほど飛躍的に増大することが判明した。
As shown in FIG. 10, since the opening width D and the constant water level permeation amount are in a proportional relationship, the flow rate from the bottom surface opening 33 (the water permeation amount of the drainage layer 34) increases as the opening width D is increased. .
However, as shown in FIGS. 11 (a) and 11 (b), when the relationship between the opening width D, the water level permeability coefficient and the constant water level permeability coefficient is seen, it should be a constant value regardless of the size of the opening width D. From the time when the opening width D was less than 10 cm, it was found that their water permeability coefficient increased dramatically as the opening width D decreased.

従って、排水層34の上面を超える水位の浸水があった場合において、開口幅Dが10cm以下のスリットを当該排水層44の下面側に設けるようにすれば、排水層34が有する空隙率に固有の本来的な透水係数よりも大きい透水性能が得られる。
そこで、本出願の発明者は、透水係数が増大した排水層34の下面に密閉した溝又は管路を接続すれば、ポンピング作用によって底面開口33からの流量が増大するものと想定し、図12(a)に示すように、水抜き孔35を底部に有する溝カバー36(前記実施形態の排水溝6に相当)を底面開口33に接続した。なお、図12に示す底面開口33の開口幅Dは4.7cmに設定し、溝カバー36の高さHは3.5cmに設定した。
Therefore, when there is water level infiltration exceeding the upper surface of the drainage layer 34, if a slit having an opening width D of 10 cm or less is provided on the lower surface side of the drainage layer 44, it is inherent to the porosity of the drainage layer 34. Water permeability that is greater than the original water permeability is obtained.
Therefore, the inventor of the present application assumes that if a sealed groove or pipe line is connected to the lower surface of the drainage layer 34 having an increased water permeability coefficient, the flow rate from the bottom surface opening 33 is increased by the pumping action. As shown to (a), the groove | channel cover 36 (equivalent to the drainage groove 6 of the said embodiment) which has the drain hole 35 in the bottom part was connected to the bottom face opening 33. FIG. The opening width D of the bottom opening 33 shown in FIG. 12 was set to 4.7 cm, and the height H of the groove cover 36 was set to 3.5 cm.

ところが、上記溝カバー36を設けただけでは、溝カバー36の内部に排水が完全に充満せずに流れが不連続となり、ポンピング作用によって底面開口33からの流量は増大しなかった。
そこで、図12(b)に示すように、溝カバー36の水抜き孔35に、排水管37(前記実施形態の導水路5に相当)を接続した。なお、図12(b)に示す排水管37の内径は2.5cmであり、管路長Lは3.5cmである。
However, the provision of the groove cover 36 does not completely fill the groove cover 36 with the drainage and the flow becomes discontinuous, and the flow rate from the bottom opening 33 does not increase due to the pumping action.
Accordingly, as shown in FIG. 12B, a drain pipe 37 (corresponding to the water conduit 5 of the above embodiment) is connected to the drain hole 35 of the groove cover 36. In addition, the internal diameter of the drain pipe 37 shown in FIG.12 (b) is 2.5 cm, and the pipe line length L is 3.5 cm.

すると、底面開口33から流下する水分は溝カバー36の内部に充填され、その後、連続的に排水管37から排水された。
そして、排水管37なしの図12(a)の場合と、排水管37付きの図12(b)の場合の単位面積当たりの流量を測定したところ、前者の場合では31.2(cc/min・cm2)であり、後者の場合では66.0(cc/min・cm2)であり、排水管37付きの場合の方が流量が大幅に増大した。
Then, the water flowing down from the bottom opening 33 was filled in the groove cover 36 and then drained from the drain pipe 37 continuously.
Then, when the flow rate per unit area in the case of FIG. 12A without the drain pipe 37 and FIG. 12B with the drain pipe 37 was measured, 31.2 (cc / min in the former case). · Cm 2), 66.0 (cc / min · cm 2) in the latter case, and the flow rate with the drainage pipe 37 was significantly increased.

これにより、排水層34の透水係数が増大する程度に開口幅Dが絞られたスリット(底面開口33)に、所定の管路長Lを有する排水管37付きの溝カバー36を装着すると、その排水管37によるヘッド圧(図12ではH+L)によって溝カバー36内に充填された水分が排水層34に浸透した水分を下方に吸引し(ポンピング作用)、これによって底部開口33からの流量が大幅に増大することが判明した。   Accordingly, when the groove cover 36 with the drain pipe 37 having a predetermined pipe length L is attached to the slit (bottom opening 33) whose opening width D is narrowed to such an extent that the water permeability coefficient of the drain layer 34 increases, The water filled in the groove cover 36 by the head pressure (H + L in FIG. 12) by the drainage pipe 37 sucks the moisture permeated into the drainage layer 34 (pumping action), thereby greatly increasing the flow rate from the bottom opening 33. It turned out to increase.

従って、上面2aに排水層14が敷設される前記埋設側溝1において、その上面2aに溝幅が10cm以下の排水溝6を形成し、この排水溝6の底部から、所定長さの管路状の導水路5を延設することにより、排水層14の表層以上に雨水が浸水した時に、上記ポンピング作用によって排水量が増大する埋設側溝1を得ることができる。
なお、前記実施形態において、排水溝14の溝幅は、10cm以下でかつ2.5cm以上に設定することが好ましい。その理由は、2.5cm未満の場合には、見かけの透水係数は向上するものの、降雨流出量に対して絶対的な排水量が不足することになるからである。
Accordingly, in the buried side groove 1 in which the drainage layer 14 is laid on the upper surface 2a, a drainage groove 6 having a groove width of 10 cm or less is formed on the upper surface 2a, and a pipe-like shape having a predetermined length is formed from the bottom of the drainage groove 6. By extending the water guide channel 5, when the rainwater is inundated beyond the surface layer of the drainage layer 14, it is possible to obtain the buried side groove 1 in which the amount of drainage is increased by the pumping action.
In the above embodiment, the groove width of the drainage groove 14 is preferably set to 10 cm or less and 2.5 cm or more. The reason for this is that when the distance is less than 2.5 cm, the apparent water permeability coefficient is improved, but the absolute amount of drainage is insufficient with respect to the amount of rainfall runoff.

第一の道路の排水構造を示す幅方向断面図である。It is width direction sectional drawing which shows the drainage structure of a 1st road. 埋設側溝のブロック本体の斜視図である。It is a perspective view of the block main body of a buried side groove. 埋設側溝を道路の側縁に設置した状態を示す斜視図である。It is a perspective view which shows the state which installed the burial side groove in the side edge of the road. 第二の道路の排水構造を示す幅方向断面図である。It is width direction sectional drawing which shows the drainage structure of a 2nd road. 第二の実施形態に係る埋設側溝のブロック本体の斜視図である。It is a perspective view of the block main body of the embedding side groove | channel which concerns on 2nd embodiment. 同埋設側溝を用いた第一の排水構造を示す幅方向断面図である。It is width direction sectional drawing which shows the 1st drainage structure using the embedding side groove. 縁石と接合部材を示す斜視図である。It is a perspective view which shows a curbstone and a joining member. 縁石の変形例を示す斜視図である。It is a perspective view which shows the modification of a curbstone. 透水試験に使用した試験水槽の断面図である。It is sectional drawing of the test water tank used for the water permeability test. 開口幅と定水位透水量との関係を示すグラフである。It is a graph which shows the relationship between opening width and a constant water level permeation amount. 位透水係数との関係を示すグラフであり、(b)は開口幅と定水位透水係数との関係を示すグラフである。It is a graph which shows the relationship with a level hydraulic conductivity, (b) is a graph which shows the relationship between opening width and a constant water level hydraulic conductivity. (a)は試験水槽の下面に溝カバーを連結した場合の断面図であり、(b)はその溝カバーに更に排水管を接続した場合の断面図である。(A) is sectional drawing at the time of connecting a groove cover to the lower surface of a test water tank, (b) is sectional drawing at the time of connecting a drain pipe further to the groove cover.

符号の説明Explanation of symbols

1 埋設側溝(暗渠部材)
2 ブロック本体
3 縁石
4 排水路
5 導水路
6 排水溝
6A 内側排水溝
6B 外側排水溝
7 通水溝
8 集水口
9 排水性舗装
14 排水層
15 メッシュ部材
23 接合部材
1 Buried side gutter (underdrain member)
2 Block body 3 Curb 4 Drainage channel 5 Conduit channel 6 Drainage channel 6A Inner drainage channel 6B Outer drainage channel 7 Water channel 8 Water collecting port 9 Drainage pavement 14 Drainage layer 15 Mesh member 23 Joining member

Claims (7)

内部に排水路を有する不透水性材料よりなる暗渠部材の上面に排水性舗装の排水層が敷設され、この排水層に浸透した水分を前記暗渠部材の排水路に導くようにした、排水性舗装が施された道路の排水構造において、
前記排水層に浸透した水分を下方に排水する排水溝が前記暗渠部材の上面に形成され、その排水溝の底部から前記排水路に連通しかつ当該排水溝に充満した水分によって前記排水層に浸透した水分を下方に吸引するヘッド圧を発生させる導水路が前記暗渠部材の内部に形成されていることを特徴とする道路の排水構造。
A drainage pavement in which a drainage layer of drainage pavement is laid on the top surface of a culvert member made of an impermeable material having a drainage channel inside, and the water that has penetrated into this drainage layer is guided to the drainage channel of the culvert member In the drainage structure of the road where
A drainage groove for draining water that has penetrated into the drainage layer is formed on the top surface of the culvert member, and penetrates the drainage layer with moisture that communicates with and fills the drainage channel from the bottom of the drainage groove. A drainage structure for a road, characterized in that a water conduit for generating a head pressure for sucking down the moisture is formed inside the culvert member.
排水性舗装が施された道路に埋設されるブロック本体を備えた埋設側溝であって、長手方向に延びる排水路が前記ブロック本体の断面内部に形成されている埋設側溝において、
前記排水層に浸透した水分を下方に排水する排水溝が前記ブロック本体の上面に形成され、その排水溝の底部から前記排水路に連通しかつ当該排水溝に充満した水分によって前記排水層に浸透した水分を下方に吸引するヘッド圧を発生させる導水路が前記ブロック本体の内部に形成されていることを特徴とする埋設側溝。
In the buried side groove provided with a block body embedded in the road subjected to drainage pavement, the drainage channel extending in the longitudinal direction is formed in the cross section of the block body,
A drainage groove is formed on the upper surface of the block main body to drain moisture that has penetrated into the drainage layer. The drainage channel penetrates the drainage layer from the bottom of the drainage groove and communicates with the drainage channel and fills the drainage groove. A buried side groove characterized in that a water guide path for generating a head pressure for sucking the moisture is formed inside the block body.
前記排水溝の上面開口部がメッシュ部材により透水可能に閉塞されている請求項2に記載の埋設側溝。   The buried side groove according to claim 2, wherein an upper surface opening of the drainage groove is closed by a mesh member so as to allow water to pass therethrough. 前記排水溝は、前記ブロック本体の幅方向に離れて複数本設けられており、
前記複数の排水溝は、前記ブロック本体の上面の横断方向一端部又は他端部のうちのいずれかの位置に縁石を取り付けた状態においても、当該複数の排水溝のうちのいずれかが前記縁石によって塞がれない位置に配置されている請求項2又は3に記載の埋設側溝。
A plurality of the drain grooves are provided apart in the width direction of the block main body,
The plurality of drainage grooves may be any of the plurality of drainage grooves, even in a state where a curbstone is attached to one of the crosswise one end or the other end of the upper surface of the block body. The embedding side groove according to claim 2 or 3, wherein the embedding side groove is disposed at a position where the embedding is not blocked.
前記複数の排水溝は、前記ブロック本体の幅方向一端部側に配置された内側排水溝と、同方向他端部側に配置された外側排水溝とから構成されている請求項4に記載の埋設側溝。   The plurality of drainage grooves are configured by an inner drainage groove disposed on one end side in the width direction of the block body and an outer drainage groove disposed on the other end side in the same direction. Buried gutter. 前記縁石は、長手方向に延びる通水溝を下面に有するとともに、その通水溝から前記排水性舗装側に通じる集水口を有している請求項4に記載の埋設側溝。   The embedded curb according to claim 4, wherein the curb has a water passage groove extending in a longitudinal direction on a lower surface and a water collecting port that leads from the water groove to the drainage pavement side. 前記メッシュ部材が樹脂製である請求項3に記載の埋設側溝。   The buried side groove according to claim 3, wherein the mesh member is made of resin.
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Publication number Priority date Publication date Assignee Title
JP2010168801A (en) * 2009-01-22 2010-08-05 Ito Yogyo Co Ltd Gutter with curbstone and method of constructing the same
JP2011038350A (en) * 2009-08-15 2011-02-24 Shinichi Tsubakimori Pc structure for asphalt pavement ground and installation method of the same
JP2011038351A (en) * 2009-08-15 2011-02-24 Shinichi Tsubakimori Installation method of pc structure for asphalt pavement ground
KR102116480B1 (en) * 2019-12-26 2020-05-28 뉴콘텍이앤씨(주) Drainage system by the Acorn-shaped pipe which have the optimum hydraulic characteristic according to rainfall and easy manufacture, Construction method by its
CN113403907A (en) * 2021-06-24 2021-09-17 成都高速公路建设开发有限公司 Intercepting ditch, drainage system and manufacturing method of intercepting ditch

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JP2006118131A (en) * 2004-10-19 2006-05-11 Ito Yogyo Co Ltd Boundary block between sidewalk and roadway, having drainage function, drainage structure of pavement, using boundary block, and construction method for boundary block
JP2006118296A (en) * 2004-10-25 2006-05-11 Aabo Kk Drainage structure of side-ditch block, and percolation plate

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JP2849347B2 (en) * 1995-02-03 1999-01-20 インフラテック株式会社 Drainage channel for permeable pavement
JP2002220870A (en) * 2001-01-24 2002-08-09 Milcon:Kk Street gutter block for draining pavement and road surface structure
JP2004100291A (en) * 2002-09-10 2004-04-02 Sakura Concrete Kk Draining structure and gutter block
JP2004332331A (en) * 2003-05-06 2004-11-25 Ito Yogyo Co Ltd L-shaped street gutter block and drainage structure of pavement using this block
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JP2006118296A (en) * 2004-10-25 2006-05-11 Aabo Kk Drainage structure of side-ditch block, and percolation plate

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010168801A (en) * 2009-01-22 2010-08-05 Ito Yogyo Co Ltd Gutter with curbstone and method of constructing the same
JP2011038350A (en) * 2009-08-15 2011-02-24 Shinichi Tsubakimori Pc structure for asphalt pavement ground and installation method of the same
JP2011038351A (en) * 2009-08-15 2011-02-24 Shinichi Tsubakimori Installation method of pc structure for asphalt pavement ground
KR102116480B1 (en) * 2019-12-26 2020-05-28 뉴콘텍이앤씨(주) Drainage system by the Acorn-shaped pipe which have the optimum hydraulic characteristic according to rainfall and easy manufacture, Construction method by its
CN113403907A (en) * 2021-06-24 2021-09-17 成都高速公路建设开发有限公司 Intercepting ditch, drainage system and manufacturing method of intercepting ditch

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