JP5828066B2 - Gutter structure - Google Patents

Gutter structure Download PDF

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JP5828066B2
JP5828066B2 JP2010284446A JP2010284446A JP5828066B2 JP 5828066 B2 JP5828066 B2 JP 5828066B2 JP 2010284446 A JP2010284446 A JP 2010284446A JP 2010284446 A JP2010284446 A JP 2010284446A JP 5828066 B2 JP5828066 B2 JP 5828066B2
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eaves
water reservoir
gutter structure
water
drain
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JP2012132192A (en
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田村 隆博
隆博 田村
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Panasonic Intellectual Property Management Co Ltd
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本発明は、軒樋を流れる雨水を一旦溜めて、サイフォン現象を誘発させることで排水効率を向上させる雨樋構造に関するものである。   The present invention relates to a rain gutter structure that improves drainage efficiency by temporarily collecting rain water flowing through an eaves and inducing a siphon phenomenon.

従来から、軒樋を流れる雨水を一旦溜めて、サイフォン現象を誘発させることで排水効率を向上させる雨樋構造が、特許文献1等で提案されている。   Conventionally, a rain gutter structure that improves drainage efficiency by temporarily collecting rain water flowing through eaves and inducing a siphon phenomenon has been proposed in Patent Document 1 and the like.

この雨樋構造は、図5(c)に示すように、軒先に固定された2本の軒樋1,1の隣合う端部16,16間に、集水器8を取り付けたものである。集水器8は、図5(b)に示すように、上部が上方および左右方向に向けて開口し、その上部の左右両端部に、軒樋1の端部16の前端11と後端12に係止させるための係止部80,80をそれぞれ備える。そして、集水器8の底部には、外部の排水筒3が接続される接続孔81を備える。   In this rain gutter structure, as shown in FIG. 5 (c), a water collector 8 is attached between adjacent end portions 16 and 16 of two eave gutters 1 and 1 fixed to the eaves edge. . As shown in FIG. 5 (b), the upper part of the water collector 8 opens upward and in the left-right direction. There are provided locking portions 80, 80 for locking to each other. And the bottom part of the water collector 8 is equipped with the connection hole 81 to which the external drain pipe 3 is connected.

この雨樋構造は、以下のようにして、設置される。   This gutter structure is installed as follows.

まず、軒先に固定された2本の軒樋1,1の隣合う端部16,16に、集水器8を下方から差し込み、軒樋1の端部16の前端11と後端12に、集水器8の係止部80,80を係止させる(図5(a)参照)。そして、集水器8の接続孔81に、外部の排水筒3を接続する。   First, the water collector 8 is inserted from below into the adjacent ends 16 and 16 of the two eaves ridges 1 and 1 fixed to the eaves, and the front end 11 and the rear end 12 of the end 16 of the eaves ridge 1 are The locking portions 80 and 80 of the water collector 8 are locked (see FIG. 5A). Then, the external drain tube 3 is connected to the connection hole 81 of the water collector 8.

上記構成の雨樋構造では、雨が降ると、軒樋1からの雨水が集水器8に流れ込んで、この集水器8に雨水が集まる。すると、この集まった雨水が、集水器8の接続孔81を介して外部の排水筒3に流れ落ちる。このとき、この排水筒3の流路がいっぱいになると、サイフォン現象が発生する。   In the rain gutter structure having the above configuration, when it rains, rain water from the eaves 1 flows into the water collector 8, and rain water collects in the water collector 8. Then, the collected rainwater flows down to the external drain tube 3 through the connection hole 81 of the water collector 8. At this time, when the flow path of the drain tube 3 is full, a siphon phenomenon occurs.

サイフォン現象が発生すると、集水器8中の雨水が、排水筒3に向けて引っ張られ、排水効率が大幅に向上する。   When the siphon phenomenon occurs, rainwater in the water collector 8 is pulled toward the drain tube 3 and drainage efficiency is greatly improved.

特開2004−308399号公報JP 2004-308399 A

しかし、上記構成の雨樋構造では、以下のような問題があった。   However, the rain gutter structure having the above configuration has the following problems.

すなわち、集水器8は、隣合う2本の軒樋1の端部16,16間に取り付けるものであるので、取付位置が限定される。   That is, since the water collector 8 is attached between the end portions 16 and 16 of the two adjacent eaves 1, the attachment position is limited.

また、集水器8は、軒樋1の前端11と後端12にそれぞれ外側から係止部80を係止させて取り付けるものであるので、軒樋1の前端よりも前側に突出し、さらに後端よりも後側に突出していて(図5(a)参照)、前後方向にコンパクトではなかった。   Moreover, since the water collector 8 attaches the latching | locking part 80 to the front end 11 and the rear end 12 of the eaves rod 1 from the outside, respectively, it protrudes ahead from the front end of the eaves rod 1, and is further It protruded rearward from the end (see FIG. 5A) and was not compact in the front-rear direction.

また、集水器8は、2本の軒樋1の端部16,16間に取り付けるものであるので、軒樋1の外見上の連続性が遮断されて、見栄えがよいものではなかった。   Moreover, since the water collector 8 is attached between the end portions 16 and 16 of the two eaves ridges 1, the appearance continuity of the eaves ridge 1 is cut off and the appearance is not good.

そこで、上記事情を鑑みて、本発明は、軒樋の任意の箇所に設けることができて、コンパクトで見栄えがよく、排水性能を向上させることができる雨樋構造を提供することを課題とする。   Therefore, in view of the above circumstances, the present invention has an object to provide a rain gutter structure that can be provided at any location of an eaves, is compact and looks good, and can improve drainage performance. .

上記課題を解決するための本発明の雨樋構造は、排水孔を備えた軒樋に、前記排水孔に連通する開口を上部に備えた水溜め容器を接続し、前記水溜め容器の下部に、外部の排水筒に接続する接続孔を設け、前記軒樋の前端から垂下させた面と前記軒樋の後端から垂下させた面の間に、前記水溜め容器を設けた雨樋構造であって前記水溜め容器の前記接続孔の開口面積を、前記軒樋の前記排水孔の開口面積よりも小さく設け、前記水溜め容器の両側面を、下側ほど容器の中心に近づくように傾斜した面に形成し、前記水溜め容器の内部の最大開口面積を、前記軒樋の前記排水孔の開口面積よりも大きく設けることにより、前記水溜め容器内に水が溜まってサイフォン現象が発生されるようになしたことを特徴とする。 In the rain gutter structure of the present invention for solving the above-described problem, a water reservoir container having an opening communicating with the drain hole is connected to an eave fence having a drain hole, and a lower part of the water reservoir container is connected. In the rain gutter structure provided with the water reservoir container between the surface suspended from the front end of the eaves and the surface suspended from the rear end of the eaves there are, the opening area of the connection hole of the water reservoir, provided less than the opening area of the drain hole of the eaves gutter, the both sides of the water reservoir, so as to approach the center of the container toward the lower side formed on sloped surfaces, the maximum open area of the interior of the water reservoir, the larger provided Rukoto than the opening area of the drain hole of the eaves gutter, siphon phenomenon water accumulated in the water reservoir vessel It is characterized by being generated .

本発明の雨樋構造は、軒樋の任意の箇所に設けることができて、コンパクトで見栄えがよく、排水性能を向上させることができる。   The rain gutter structure of the present invention can be provided at any location of the eaves, is compact and looks good, and can improve drainage performance.

本発明の実施形態の雨樋構造を示す側面断面図である。It is side surface sectional drawing which shows the rain gutter structure of embodiment of this invention. 同上の雨樋構造を示し、(a)は水溜め容器の上面部の平面図であり、(b)は水溜め容器の取付具の正面図であり、(c)は水溜め容器の正面図であり、(d)は水溜め容器の側面図である。The rain gutter structure shown above is shown, (a) is a plan view of the upper surface portion of the water reservoir container, (b) is a front view of the fitting for the water reservoir container, and (c) is a front view of the water reservoir container. (D) is a side view of the water reservoir. 同上の雨樋構造の斜視図を示し、(a)は水溜め容器の上面部であり、(b)は水溜め容器の取付具であり、(c)は水溜め容器であり、(d)は取付具の上方に設置する落葉よけである。The perspective view of a rain gutter structure same as the above is shown, (a) is an upper surface part of a water reservoir container, (b) is a fixture of a water reservoir container, (c) is a water reservoir container, (d) Is a fallen leaf guard installed above the fixture. 同上の雨樋構造を軒先に取り付けた状態の側面図である。It is a side view of the state which attached the rain gutter structure same as the above to the eaves. 従来の雨樋構造を示し、(a)は軒樋に集水器を取り付けた状態の側面断面図であり、(b)は集水器の斜視図であり、(c)は雨樋構造を軒先に設けた状態の正面図である。A conventional rain gutter structure is shown, (a) is a side cross-sectional view of a state where a water collector is attached to an eaves, (b) is a perspective view of the water collector, and (c) is a gutter structure. It is a front view of the state provided in the eaves.

以下、本発明を添付図面に示す実施形態に基づいて説明する。   Hereinafter, the present invention will be described based on embodiments shown in the accompanying drawings.

本実施形態の雨樋構造は、図4に示すように、軒先の鼻隠し7等に固定した軒樋支持具6で支える1本の軒樋1に設けたものである。この雨樋構造は、軒樋1と、軒樋1に連通接続させる水溜め容器2と、この水溜め容器2に連通接続させる排水筒3とから構成される。以下においては、図4に示すように、軒樋1と水溜め容器2と排水筒3を接続した状態を基準として、鼻隠し7から軒樋1に向かう方向(図4中の左方向)を前方とし、その反対方向(図4中の右方向)を後方とし、図4の奥側を右方向とし、図4の手前側を左方向とする。   As shown in FIG. 4, the rain gutter structure of the present embodiment is provided on one eaves 1 supported by an eaves support 6 fixed to the eaves nose cover 7 or the like. This rain gutter structure is composed of an eaves 1, a water reservoir 2 connected to the eaves 1 and a drain tube 3 connected to the water reservoir 2. In the following, as shown in FIG. 4, the direction from the nose cover 7 toward the eaves bowl 1 (left direction in FIG. 4) is based on the state where the eaves bowl 1, the water reservoir 2 and the drain tube 3 are connected. The front direction is the rear, the opposite direction (right direction in FIG. 4) is the rear, the back side in FIG. 4 is the right direction, and the near side in FIG. 4 is the left direction.

軒樋1は、左右方向に長く延びる角樋であり、図1に示すように、平坦な底壁13の前端から斜め上方前方に向けて前壁14が立設され、底壁13の後端から後壁15が略垂直に立設されている。本実施形態では、軒樋1の前端は、前壁14の上端となり、軒樋1の後端は、後壁15全体となっている。軒樋1の底壁13の左右方向の好適な箇所には、排水孔10を上下に貫通させて設けている。この排水孔10は、直径L2(開口幅L2)の丸孔である。なお、本実施形態では、排水孔10の開口面積は、約25平方センチメートルとなるように形成している。   The eaves ridge 1 is a square ridge that extends in the left-right direction. As shown in FIG. 1, a front wall 14 is erected from the front end of the flat bottom wall 13 toward the diagonally upper front, and the rear end of the bottom wall 13. The rear wall 15 is erected substantially vertically. In the present embodiment, the front end of the eaves bowl 1 is the upper end of the front wall 14, and the rear end of the eaves bowl 1 is the entire rear wall 15. A drainage hole 10 is vertically penetrated at a suitable location in the left-right direction of the bottom wall 13 of the eaves 1. The drain hole 10 is a round hole having a diameter L2 (opening width L2). In this embodiment, the opening area of the drain hole 10 is formed to be about 25 square centimeters.

水溜め容器2は、その上面部の開口に固定される蓋部22(図2(a)及び図3(a)参照)と、この蓋部22を軒樋1の底壁13に取り付ける取付具23(図2(b)及び図3(b)参照)とを備える。   The water reservoir 2 includes a lid 22 (see FIGS. 2A and 3A) fixed to the opening on the upper surface portion thereof, and a fixture for attaching the lid 22 to the bottom wall 13 of the eaves bowl 1. 23 (see FIG. 2 (b) and FIG. 3 (b)).

蓋部22には、図2(a)及び図3(a)に示すように、開口20を上下方向に貫通させて設けている。開口20は、排水孔10と同じ直径L2(開口幅L2)の丸孔である。この開口20の周縁部からは、下方に向けて筒状部24が突出形成されている。この筒状部24の内周面には、雌ねじが形成されている。なお、筒状部24の内径は、開口20と同径となるように形成されている。   As shown in FIGS. 2A and 3A, the lid portion 22 is provided with an opening 20 penetrating in the vertical direction. The opening 20 is a round hole having the same diameter L2 (opening width L2) as the drainage hole 10. From the peripheral edge of the opening 20, a cylindrical portion 24 is formed so as to protrude downward. An internal thread is formed on the inner peripheral surface of the cylindrical portion 24. The cylindrical portion 24 has an inner diameter that is the same as that of the opening 20.

取付具23は、図2(b)及び図3(b)に示すように、その下部に蓋部22の筒状部24に固定するための中空筒状の固定部25を備える。そして、この固定部25の上部に、抜け落ち防止のための鍔部26を備える。そして、この鍔部26の上部に、落ち葉止め部27を備える。落ち葉止め部27は、その上端部に水抜け筒を備える。   As shown in FIGS. 2 (b) and 3 (b), the fixture 23 includes a hollow cylindrical fixing portion 25 for fixing to the cylindrical portion 24 of the lid portion 22 at the lower portion thereof. And the collar part 26 for preventing drop-off | omission is provided in the upper part of this fixing | fixed part 25. As shown in FIG. And the fallen leaf stop part 27 is provided in the upper part of this collar part 26. FIG. The fallen leaf stopper 27 includes a drain tube at its upper end.

固定部25の外周面には、蓋部22の筒状部24の内周面に設けた雌ねじに螺合する雄ねじが形成されている。なお、筒状部24の内周面に雄ねじを形成し、固定部25の外周面に雌ねじを形成してもよい。鍔部26は、リング状であり、その内径が、固定部25の内径と同じで、その外径が、固定部25の外径より大径に形成されている。なお、本実施形態では、取付具23全体の高さ寸法が60mmで、固定部25の高さ寸法が25mmで、固定部25の外径が56mmで、鍔部26の外径が70mmで、落ち葉止め部27の上端部の水抜け筒の外径が26mmとなるように形成されている。   On the outer peripheral surface of the fixing portion 25, a male screw that is screwed into a female screw provided on the inner peripheral surface of the cylindrical portion 24 of the lid portion 22 is formed. Note that a male screw may be formed on the inner peripheral surface of the cylindrical portion 24 and a female screw may be formed on the outer peripheral surface of the fixed portion 25. The flange portion 26 has a ring shape, and the inner diameter thereof is the same as the inner diameter of the fixed portion 25, and the outer diameter thereof is larger than the outer diameter of the fixed portion 25. In this embodiment, the overall height of the fixture 23 is 60 mm, the height of the fixing portion 25 is 25 mm, the outer diameter of the fixing portion 25 is 56 mm, and the outer diameter of the flange portion 26 is 70 mm. The outer diameter of the drain tube at the upper end of the fallen leaf stopper 27 is 26 mm.

水溜め容器2は、図2(c),図2(d)及び図3(c)に示すように、箱状である。この水溜め容器2では、図1に示すL1部分、すなわち、水溜め容器2に固定した蓋部22の筒状部24の下端より若干下方の部分が、最も流路面積(開口面積)が大きい部分となり、この部分から下方に近づくほど流路面積(開口面積)が小さくなる。本実施形態では、この部分の最大開口面積が、53平方センチメートルとなるように形成している。なお、水溜め容器2は、図2(c),図2(d)に示すように、前後方向の開口幅よりも左右方向の開口幅の方が大きくなるように形成されている。本実施形態では、水溜め容器2は、左右方向の幅寸法が90mmで、高さ寸法が90mmで、前後方向の奥行き寸法が70mmで形成されており、0.3リットルの容量を有するように設けられている。水溜め容器2は、左右方向の幅寸法が70〜100mmで、高さ寸法が55〜150mmで、前後方向の奥行き寸法が70〜75mmとなるように設ければ、排水性能を保持した上で、外観を良好に保つことができる。   The water reservoir 2 has a box shape as shown in FIGS. 2 (c), 2 (d) and 3 (c). In this water reservoir 2, the portion L1 shown in FIG. 1, that is, the portion slightly below the lower end of the cylindrical portion 24 of the lid portion 22 fixed to the water reservoir 2, has the largest flow path area (opening area). It becomes a part, and the channel area (opening area) becomes smaller as it approaches the lower part from this part. In this embodiment, the maximum opening area of this portion is formed to be 53 square centimeters. As shown in FIGS. 2 (c) and 2 (d), the water reservoir 2 is formed so that the opening width in the left-right direction is larger than the opening width in the front-rear direction. In this embodiment, the water reservoir 2 is formed with a width dimension in the left-right direction of 90 mm, a height dimension of 90 mm, and a depth dimension in the front-rear direction of 70 mm, and has a capacity of 0.3 liters. Is provided. If the water reservoir 2 is provided so that the width dimension in the left-right direction is 70 to 100 mm, the height dimension is 55 to 150 mm, and the depth dimension in the front-rear direction is 70 to 75 mm, the drainage performance is maintained. The appearance can be kept good.

水溜め容器1の底部には、図1に示すように、接続孔21を上下に貫通させて設けている。接続孔21は、開口幅L3の角孔である。図2(c),図2(d)及び図3(c)に示すように、接続孔21の周縁部からは下方に向けて四角柱状の筒状部28が突出形成されている。筒状部28内部の前後方向及び左右方向の開口幅は、接続孔21の開口幅L3と同幅となるように形成されている。そして、本実施形態では、この筒状部28の高さ寸法が、15mmとなるように形成している。なお、本実施形態では、接続孔21の開口面積は、16平方センチメートルとなるように形成している。   As shown in FIG. 1, a connecting hole 21 is provided at the bottom of the water reservoir 1 so as to penetrate vertically. The connection hole 21 is a square hole having an opening width L3. As shown in FIGS. 2 (c), 2 (d), and 3 (c), a rectangular columnar tubular portion 28 is formed to project downward from the peripheral edge of the connection hole 21. The opening width in the front-rear direction and the left-right direction inside the cylindrical portion 28 is formed to be the same width as the opening width L3 of the connection hole 21. And in this embodiment, it forms so that the height dimension of this cylindrical part 28 may be set to 15 mm. In the present embodiment, the opening area of the connection hole 21 is 16 square centimeters.

接続孔21には、外部の排水筒3の上流端が接続される。なお、本実施形態では、排水筒3は、水の流れの方向を約90°変えるエルボ30であり、このエルボ30の下流端には前後方向に延びる呼び樋31の上流端が接続されている。呼び樋31の下流端は、上下に延びる竪樋(図示せず)の上流端に直接または別のエルボを介して接続される。なお、接続孔21には、エルボ30を介さず、呼び樋31や竪樋が直接接続されてもよい。   The upstream end of the external drainage cylinder 3 is connected to the connection hole 21. In the present embodiment, the drain tube 3 is an elbow 30 that changes the direction of water flow by approximately 90 °, and the downstream end of the elbow 30 is connected to the upstream end of a call bar 31 that extends in the front-rear direction. . The downstream end of the call bar 31 is connected directly or via another elbow to the upstream end of a bar (not shown) extending vertically. The call hole 31 or the hook may be directly connected to the connection hole 21 without the elbow 30 being interposed.

本実施形態の雨樋構造では、図1に示すように、水溜め容器2内部の流路面積(開口面積)が最も大きくなる部分の前後方向幅である最大幅L1を、軒樋1の排水孔10の開口幅L2より広く設けている。そして、水溜め容器2に設けた接続孔21の開口幅L3を、軒樋1の排水孔10の開口幅L2よりも狭く設けている。つまり、本実施形態の雨樋構造では、水溜め容器2内部の最大開口面積を、軒樋1の排水孔10の開口面積より大きく設け、水溜め容器2に設けた接続孔21の開口面積を、軒樋1の排水孔10の開口面積よりも小さく設けている。   In the rain gutter structure of this embodiment, as shown in FIG. 1, the maximum width L1 which is the width in the front-rear direction of the portion where the flow path area (opening area) inside the water reservoir 2 is the largest is set to the drainage of the eaves 1 The hole 10 is provided wider than the opening width L2. And the opening width L3 of the connection hole 21 provided in the water reservoir 2 is provided narrower than the opening width L2 of the drain hole 10 of the eaves bowl 1. That is, in the rain gutter structure of the present embodiment, the maximum opening area inside the water reservoir 2 is provided larger than the opening area of the drain hole 10 of the eaves 1, and the opening area of the connection hole 21 provided in the water reservoir 2 is set. The opening area of the drain hole 10 of the eaves wall 1 is provided smaller.

そして、本実施形態の雨樋構造では、軒樋1に水溜め容器2を接続した状態で、この水溜め容器2が、図1に示すように、軒樋1の前端11から垂下した仮想面S1と、軒樋1の後端12から垂下した仮想面S2の間に、収まるように形成している。なお、本実施形態では、この水溜め容器2が、軒樋1の底壁13の前端から垂下した仮想面S3と、軒樋1の後端12から垂下した仮想面S2の間に、収まっている。   And in the rain gutter structure of this embodiment, in the state which connected the water reservoir 2 to the eaves 1, as shown in FIG. 1, the virtual surface where the water reservoir 2 is suspended from the front end 11 of the eaves 1. It is formed so as to fit between S1 and a virtual surface S2 depending from the rear end 12 of the eaves bowl 1. In the present embodiment, the water reservoir 2 is contained between a virtual surface S3 hanging from the front end of the bottom wall 13 of the eaves bowl 1 and a virtual surface S2 hanging from the rear end 12 of the eaves bowl 1. Yes.

上述したように各構成が形成される本実施形態の雨樋構造は、例えば、以下のようにして組み立てられる。   As described above, the rain gutter structure of the present embodiment in which the components are formed is assembled as follows, for example.

まず、軒樋1の底壁13の左右方向の好適な箇所に排水孔10を開口する。次いで、この排水孔10の下方に水溜め容器2の蓋部22を配置し、この排水孔10と蓋部22の開口20を平面視にて一致するように連通させる。次いで、上方から取付具23の固定部25を排水孔10と開口20に差し込み、固定部25を蓋部22の筒状部24に固定する。このとき、接着剤を塗布して固定部25と筒状部24とを固定し、固定部25と筒状部24との間からの水漏れを防止する。次いで、蓋部22に下方から水溜め容器2を差し込み、固定する。次いで、水溜め容器2の底部の接続孔21に外部の排水筒3を連通するように接続する。最後に、取付具23の上方に、網状の落ち葉よけ5を設置する。   First, the drain hole 10 is opened at a suitable place in the left-right direction of the bottom wall 13 of the eaves wall 1. Next, the lid portion 22 of the water reservoir 2 is disposed below the drain hole 10, and the drain hole 10 and the opening 20 of the lid portion 22 are communicated so as to coincide with each other in plan view. Next, the fixing portion 25 of the fixture 23 is inserted into the drain hole 10 and the opening 20 from above, and the fixing portion 25 is fixed to the cylindrical portion 24 of the lid portion 22. At this time, an adhesive is applied to fix the fixing portion 25 and the cylindrical portion 24 to prevent water leakage from between the fixing portion 25 and the cylindrical portion 24. Next, the water reservoir 2 is inserted into the lid portion 22 from below and fixed. Next, the external drainage cylinder 3 is connected to the connection hole 21 at the bottom of the water reservoir 2 so as to communicate therewith. Finally, the net-like fallen leaf guard 5 is installed above the fixture 23.

以上のように組み立てた本実施形態の雨樋構造では、雨が降ると以下のようにして、雨水が排水される。   In the rain gutter structure of the present embodiment assembled as described above, rain water is drained as follows when it rains.

まず、雨水が屋根を伝って軒樋1に流れ込む。軒樋1に流れ込んだ雨水は、排水孔10に固定している落ち葉止め部27に流れ込み、その後、筒状部24を介して、水溜め容器2まで流れ込む。このとき、落ち葉止め部27と、その周りに設けている網状の落ち葉よけ5によって、落ち葉が水溜め容器2内に流れ込むのを防止できる。次いで、水溜め容器2に流れ込んだ雨水は、接続孔21を通じて、外部の排水筒3に一部流れ込みながら、この水溜め容器2内に徐々に溜まっていく。水溜め容器2内に雨水が溜まって、接続孔21が常に雨水で浸かった状態になると、この接続孔21に接続されている排水筒3内の流路が満水状態となる。すると、この排水筒3は、その下流端が地上部分(地中に設けた下水管等)まで繋がっているので、サイフォン現象が発生し、水溜め容器2内の雨水が排水筒3側に引っ張られる状態となる。すると、水溜め容器2内の雨水が、排水筒3を介して勢い良く排水される状態となる。   First, rainwater flows along the roof into the eaves 1. The rainwater that has flowed into the eaves 1 flows into the fallen leaf stopper 27 fixed to the drain hole 10, and then flows into the water reservoir 2 through the tubular portion 24. At this time, fallen leaves can be prevented from flowing into the water reservoir 2 by the fallen leaf stopper 27 and the net-like fallen leaf guard 5 provided around the fallen leaf stopper 27. Next, rainwater that has flowed into the water reservoir 2 gradually accumulates in the water reservoir 2 while partially flowing into the external drainage cylinder 3 through the connection hole 21. When rainwater accumulates in the water reservoir 2 and the connection hole 21 is always immersed in rainwater, the flow path in the drain tube 3 connected to the connection hole 21 becomes full. Then, since the downstream end of the drain tube 3 is connected to the ground part (such as a sewer pipe provided in the ground), a siphon phenomenon occurs, and the rainwater in the water reservoir 2 is pulled toward the drain tube 3 side. It will be in the state to be. Then, the rainwater in the water reservoir 2 is drained vigorously through the drain tube 3.

ここで、本実施形態の雨樋構造は、軒樋1と排水筒3を水溜め容器2を介して接続している。そのため、軒樋1に排水筒3を直接接続する場合と比べて、軒樋1に極力大きい開口幅の排水孔10を設けたうえで、排水筒3の径を小さく設けることができる。よって、水溜め容器2への流入量を多くしたうえで、排水筒3の流路を狭くしてサイフォン現象を起こしやすくできる。しかも、軒樋1と排水筒3の間に水溜め容器2を設けることで、この水溜め容器2の底部に設けた接続孔21が水に浸かった状態を極力保持できるので、この部分から排水筒3へと空気が吸い込まれて、排水筒3のサイフォン現象が遮断されてしまうことを抑制できる。   Here, in the rain gutter structure of the present embodiment, the eaves 1 and the drain tube 3 are connected via the water reservoir 2. Therefore, compared with the case where the drain tube 3 is directly connected to the eaves rod 1, the drain tube 3 can be provided with a smaller diameter after the drain hole 10 having an opening width as large as possible is provided in the eave rod 1. Therefore, after increasing the amount of inflow into the water reservoir 2, the flow path of the drain tube 3 can be narrowed to easily cause a siphon phenomenon. Moreover, by providing the water reservoir 2 between the eaves 1 and the drain tube 3, the connection hole 21 provided in the bottom of the water reservoir 2 can be kept in a state immersed in water as much as possible. It can suppress that air is suck | inhaled into the pipe | tube 3 and the siphon phenomenon of the drain pipe 3 will be interrupted | blocked.

以上のように、本実施形態の雨樋構造は、サイフォン現象を安定的に起こして、排水性能を向上させることができるものとなっている。そのため、本実施形態の雨樋構造では、例えば、軒樋1に接続する排水筒3の本数を減らすことができる。また、この軒樋1に接続する排水筒3として細いものを使用することができるので、見栄えが良くなる。   As described above, the rain gutter structure of the present embodiment can stably cause the siphon phenomenon and improve the drainage performance. Therefore, in the rain gutter structure of this embodiment, the number of the drain cylinders 3 connected to the eaves 1 can be reduced, for example. Moreover, since a thin thing can be used as the drain pipe 3 connected to this eaves bowl 1, it looks good.

以上まとめると、本実施形態の雨樋構造は、排水孔10を備えた軒樋1に、排水孔10に連通する開口20を上部に備えた水溜め容器2を接続し、水溜め容器2の下部に、外部の排水筒3に接続する接続孔21を設けたものである。そして、軒樋1の前端から垂下した面と軒樋1の後端から垂下した面の間に、水溜め容器2を設けている。   In summary, in the rain gutter structure of the present embodiment, the water reservoir 2 having an opening 20 communicating with the drain hole 10 is connected to the eaves 1 having the drain hole 10. In the lower part, a connection hole 21 connected to the external drainage cylinder 3 is provided. A water reservoir container 2 is provided between a surface that hangs down from the front end of the eaves bowl 1 and a surface that hangs down from the rear end of the eaves bowl 1.

以上のように、本実施形態の雨樋構造は、1本の軒樋1の好適な箇所に排水孔10を設け、その排水孔10に水溜め容器2を接続して設けることができる。すなわち、本実施形態の雨樋構造は、従来例のように、2本の軒樋の端部間に取り付けなくてもよいので、自由に取付位置を選択できるものとなっている。併せて、本実施形態の雨樋構造は、1本の軒樋1に設けることができるので、軒樋1の外見上の連続性を遮断しない見栄えの良いものとなっている。   As described above, the rain gutter structure of the present embodiment can be provided by providing the drain hole 10 at a suitable location of the single eaves 1 and connecting the water reservoir 2 to the drain hole 10. That is, since the rain gutter structure of this embodiment does not need to be attached between the end portions of the two eaves as in the conventional example, the attachment position can be freely selected. In addition, since the rain gutter structure of the present embodiment can be provided in one eave ridge 1, it has a good appearance that does not block the appearance continuity of the eave ridge 1.

また、軒樋1に接続される水溜め容器2は、軒樋1の前端と後端の間に収まるように設けたものである。つまり、本実施形態の雨樋構造は、水溜め容器2が、従来例のように軒樋1の前端より前側に突出したものでなく、軒樋1の後端より後側に突出したものでもないので、前後方向にコンパクトとなっている。   Further, the water reservoir 2 connected to the eaves bowl 1 is provided so as to fit between the front end and the rear end of the eaves bowl 1. In other words, the rain gutter structure of the present embodiment is such that the water reservoir 2 is not projected forward from the front end of the eaves bowl 1 as in the conventional example, but is projected from the rear end of the eave bowl 1 to the rear side. Because there is no, it is compact in the front-rear direction.

また、軒樋1の排水孔10に連通させて水溜め容器2を設けたことで、軒樋1からの排水を水溜め容器2内に一旦溜めておくことができる。よって、水溜め容器2から接続孔21を介して外部の排水筒3に一度に大量の雨水を流すことができるので、この排水筒3内の排水路を満水状態にして、この水溜め容器2内の排水が排水筒3側に引っ張られるサイフォン現象を発生させやすいものとなっている。また、水溜め容器2の底部に設けた接続孔21は雨水に全体が浸かった状態となりやすいので、この接続孔21を通じて排水筒3に空気が吸い込まれることを抑制できる。そのため、空気吸い込みによるサイフォン現象の遮断を抑制できる。よって、サイフォン現象を安定して発生させることができるので、排水性能が大幅に良くなる。   Further, by providing the water reservoir 2 in communication with the drain hole 10 of the eaves bowl 1, the drainage from the eaves bowl 1 can be temporarily stored in the water reservoir 2. Therefore, since a large amount of rain water can flow from the water reservoir 2 to the external drain tube 3 at once via the connection hole 21, the drain channel in the drain tube 3 is filled with water. It becomes easy to generate a siphon phenomenon in which the drainage inside is pulled toward the drain tube 3 side. Further, since the connection hole 21 provided at the bottom of the water reservoir 2 is likely to be entirely immersed in rainwater, it is possible to prevent air from being sucked into the drain tube 3 through the connection hole 21. Therefore, the siphon phenomenon can be prevented from being blocked by air suction. Therefore, since the siphon phenomenon can be generated stably, the drainage performance is greatly improved.

以上のように、本実施形態の雨樋構造は、軒樋1の任意の箇所に設けることができて、コンパクトで見栄えがよく、排水性能を向上させることができるものとなっている。   As described above, the rain gutter structure of the present embodiment can be provided at an arbitrary location of the eaves cage 1, is compact and good in appearance, and can improve drainage performance.

また、本実施形態の雨樋構造は、水溜め容器2の内部の最大開口面積を、軒樋1の排水孔10の開口面積よりも大きく設け、接続孔21の開口面積を、軒樋1の排水孔10の開口面積よりも小さく設けている。   Moreover, the rain gutter structure of this embodiment provides the maximum opening area inside the water reservoir 2 larger than the opening area of the drain hole 10 of the eaves 1, and the opening area of the connection hole 21 of the eaves 1. It is provided smaller than the opening area of the drain hole 10.

以上のように、本実施形態の雨樋構造は、水溜め容器2の内部の最大開口面積>軒樋1の排水孔10の開口面積>接続孔21の開口面積、となるように設けている。そのため、水溜め容器2への流入量が、水溜め容器2からの流出量よりも多く、軒樋1の排水量より、水溜め容器2の容量のほうが多いので、軒樋1からの排水を水溜め容器2内により確実に一旦溜めることができる。よって、水溜め容器2から接続孔21を介して外部の排水筒3に一度に大量の雨水を流すことができるので、この排水筒3内の排水路を満水状態にして、この水溜め容器2内の排水が排水筒3側に引っ張られるサイフォン現象を安定して発生させることができる。また、水溜め容器2の底部に設けた接続孔21は雨水に全体が浸かった状態となりやすいので、この接続孔21を通じて排水筒3に空気が吸い込まれることを抑制できる。そのため、空気吸い込みによるサイフォン現象の遮断を抑制できる。よって、サイフォン現象を安定して発生させることができるので、排水性能が大幅に良くなる。   As described above, the rain gutter structure of the present embodiment is provided so that the maximum opening area inside the water reservoir 2> the opening area of the drain hole 10 of the eaves 1> the opening area of the connection hole 21. . Therefore, the amount of inflow into the sump container 2 is larger than the amount of outflow from the sump container 2, and the capacity of the sump container 2 is larger than the amount of drainage of the eaves bowl 1. It can be once reliably stored in the storage container 2. Therefore, since a large amount of rain water can flow from the water reservoir 2 to the external drain tube 3 at once via the connection hole 21, the drain channel in the drain tube 3 is filled with water. It is possible to stably generate a siphon phenomenon in which the internal drainage is pulled toward the drain tube 3 side. Further, since the connection hole 21 provided at the bottom of the water reservoir 2 is likely to be entirely immersed in rainwater, it is possible to prevent air from being sucked into the drain tube 3 through the connection hole 21. Therefore, the siphon phenomenon can be prevented from being blocked by air suction. Therefore, since the siphon phenomenon can be generated stably, the drainage performance is greatly improved.

以上のように、本実施形態の雨樋構造は、サイフォン現象をより安定して発生させて、排水性能を向上させることができるものとなっている。   As described above, the rain gutter structure of the present embodiment can generate the siphon phenomenon more stably and improve the drainage performance.

以上、本発明を添付図面に示す実施形態に基づいて説明したが、本発明は上記の各実施形態に限定されるものではなく、本発明の意図する範囲内であれば、適宜の設計変更が可能である。   Although the present invention has been described based on the embodiments shown in the accompanying drawings, the present invention is not limited to the above-described embodiments, and appropriate design changes can be made within the intended scope of the present invention. Is possible.

1 軒樋
10 排水孔
2 水溜め容器
20 開口
21 接続孔
3 排水筒
1 eaves 10 Drain hole 2 Water reservoir 20 Opening 21 Connection hole 3 Drain tube

Claims (1)

排水孔を備えた軒樋に、
前記排水孔に連通する開口を上部に備えた水溜め容器を接続し、
前記水溜め容器の下部に、外部の排水筒に接続する接続孔を設け、
前記軒樋の前端から垂下させた面と前記軒樋の後端から垂下させた面の間に、
前記水溜め容器を設けた雨樋構造であって
前記水溜め容器の前記接続孔の開口面積を、前記軒樋の前記排水孔の開口面積よりも小さく設け
前記水溜め容器の両側面を、下側ほど容器の中心に近づくように傾斜した面に形成し、
前記水溜め容器の内部の最大開口面積を、前記軒樋の前記排水孔の開口面積よりも大きく設けることにより、前記水溜め容器内に水が溜まってサイフォン現象が発生されるようになしたことを特徴とする雨樋構造。
In eaves with drainage holes,
Connect a water reservoir with an opening at the top that communicates with the drain hole,
In the lower part of the water reservoir container, a connection hole for connecting to an external drain tube is provided,
Between the surface suspended from the front end of the eaves and the surface suspended from the rear end of the eaves,
A rain gutter structure provided with the water reservoir,
The opening area of the connection hole of the water reservoir is provided smaller than the opening area of the drain hole of the eaves ,
Both sides of the water reservoir container are formed on the inclined surface so that the lower side is closer to the center of the container,
The maximum open area of the interior of the water reservoir, the larger provided Rukoto than the opening area of the drain hole of the eaves gutter and no such siphon phenomenon is generated water accumulated in the water reservoir container A rain gutter structure characterized by that.
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