JP6143217B2 - Watermill equipment - Google Patents

Watermill equipment Download PDF

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JP6143217B2
JP6143217B2 JP2012264316A JP2012264316A JP6143217B2 JP 6143217 B2 JP6143217 B2 JP 6143217B2 JP 2012264316 A JP2012264316 A JP 2012264316A JP 2012264316 A JP2012264316 A JP 2012264316A JP 6143217 B2 JP6143217 B2 JP 6143217B2
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cover
plate
support
water receiving
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JP2014109235A (en
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栄一 菊池
栄一 菊池
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栄一 菊池
栄一 菊池
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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Description

本発明は、所謂バケット式の水車を備えた水車装置に係り、特に、水車が水を受けて排水するまでの間に亘って水車を覆うカバーを備えた水車装置に関する。   The present invention relates to a water turbine apparatus including a so-called bucket type water turbine, and more particularly, to a water turbine apparatus including a cover that covers a water turbine until the water turbine receives and drains water.

従来、この種の水車装置として、例えば、実開昭56−88964号公報(特許文献1)に記載された技術が知られている。図14に示すように、この水車装置Saは、機台に回転軸101を中心に回転自在に設けられ外周に沿って直径方向外方に開口102aを有した水を受ける複数のバケット102を列設して構成される水車100を備えている。この水車100は、回転軸101の軸方向に沿って所定の間隔を隔てて互いに対向する一対の側板103と、側板103間に回転軸101を中心とする円周方向に沿って設けられる底板104と、側板103間であって底板104の外周に等角度且つ等間隔に設けられる複数の水受板105とを備え、側板103,底板104及び水受板105によって複数のバケット102を形成している。   Conventionally, for example, a technique described in Japanese Utility Model Publication No. 56-88964 (Patent Document 1) is known as this type of water turbine apparatus. As shown in FIG. 14, this water turbine apparatus Sa is arranged in a row with a plurality of buckets 102 that are provided on a machine base so as to be rotatable about a rotation shaft 101 and receive water having openings 102 a radially outward along the outer periphery. A water turbine 100 is provided. The water wheel 100 includes a pair of side plates 103 facing each other at a predetermined interval along the axial direction of the rotating shaft 101, and a bottom plate 104 provided between the side plates 103 along the circumferential direction around the rotating shaft 101. And a plurality of water receiving plates 105 provided between the side plates 103 and on the outer periphery of the bottom plate 104 at equal angles and at equal intervals, and a plurality of buckets 102 are formed by the side plates 103, the bottom plate 104 and the water receiving plate 105. Yes.

また、この水車装置Saは、上側に位置したバケット102に向けて水を供給し水車100を一方向に回転せしめる給水口部106と、水車100のバケット102が給水口部106から水を受けることを可能にする上側の受水空間Wa及び受水空間Waで受けた水を排出可能にする下側の排水空間Wbを形成するように、受水空間Waより水車100の回転方向に沿う排水空間Wbまでの間に亘って複数のバケット102の開口102aを覆うカバー107とを備えて構成されている。カバー107は、所要のクリアランスCaを隔てて水車100の外周面100aに沿う内周面を有した弧状の曲板108と、この曲板108の両側に連設され水車100の両側の略半分を覆う半円盤状の側面板109とを備えて構成されている。   In addition, the water turbine device Sa supplies water toward the bucket 102 located on the upper side and rotates the water turbine 100 in one direction, and the bucket 102 of the water turbine 100 receives water from the water supply port 106. Drainage space along the rotation direction of the water turbine 100 from the water receiving space Wa so as to form an upper water receiving space Wa that enables water and a lower water draining space Wb that allows water received in the water receiving space Wa to be discharged. A cover 107 that covers the openings 102a of the plurality of buckets 102 is provided over the distance up to Wb. The cover 107 has an arcuate curved plate 108 having an inner peripheral surface along the outer peripheral surface 100a of the water turbine 100 with a required clearance Ca therebetween, and substantially half of both sides of the water turbine 100 connected to both sides of the curved plate 108. A semi-disc-shaped side plate 109 is provided.

これにより、給水口部106から水がバケット102内に供給されると水受板105に動圧が作用し、水車は回転せしめられる。この場合、カバー107によって、受水空間Waより水車100の回転方向に沿う排水空間Wbまでの間に亘って複数のバケット102の開口102aが覆われているので、排水空間Waに至るまでは、水がバケット102から外方に飛び出ることが阻止され、バケット102内において略満水状態を保つことから、水の水車100に対する圧力伝達を良好にして、回転効率を良くするようにしている。   As a result, when water is supplied into the bucket 102 from the water supply port 106, dynamic pressure acts on the water receiving plate 105, and the water turbine is rotated. In this case, since the openings 102a of the plurality of buckets 102 are covered by the cover 107 from the water receiving space Wa to the drainage space Wb along the rotation direction of the water turbine 100, until the drainage space Wa is reached, Since the water is prevented from jumping out from the bucket 102 and is kept almost full in the bucket 102, the pressure transmission to the water turbine 100 is improved, and the rotation efficiency is improved.

実開昭56−88964号公報Japanese Utility Model Publication No. 56-88964

ところで、上記従来の水車装置Saにあっては、カバー107の曲板108と水車100の外周面100aとの間にクリアランスCaがあるとともに、このクリアランスCaに連通し、カバー107の側面板109と水車100の側板103との間にも間隙Cbがあるので、この間隙Cbを通って水が漏出し、それだけ、少なからず、エネルギーの伝達ロスを生じてしまうという問題があった。これを防止するために、カバー100の曲板108と水受板105の先端との間のクリアランスをゼロにすることも考えられるが、摩擦抵抗が生じるのでかえって効率が悪くなる。
本発明は上記の問題点に鑑みて為されたもので、できるだけ、摩擦抵抗を生じないようにして、バケットからの水の漏出を抑止し、水の水車に対する圧力伝達効率の向上を図った水車装置を提供することを目的とする。また、水の漏出を抑止する分、水受板に作用する圧力も上昇するので、必要に応じ、強度の向上も図ることも課題とした。
By the way, in the conventional water turbine device Sa, there is a clearance Ca between the curved plate 108 of the cover 107 and the outer peripheral surface 100a of the water turbine 100, and the clearance Ca communicates with the side plate 109 of the cover 107. Since there is a gap Cb also between the side plate 103 of the water wheel 100, there is a problem that water leaks through the gap Cb, resulting in a loss of energy transfer. In order to prevent this, the clearance between the curved plate 108 of the cover 100 and the tip of the water receiving plate 105 may be zero. However, since frictional resistance is generated, the efficiency is rather deteriorated.
The present invention has been made in view of the above-described problems, and is a water turbine that suppresses leakage of water from a bucket and suppresses the leakage of water as much as possible to improve pressure transmission efficiency with respect to the water turbine. An object is to provide an apparatus. Moreover, since the pressure which acts on a water receiving plate also rises by the part which suppresses the leakage of water, it also made it the subject to improve intensity | strength as needed.

このような目的を達成するための本発明の水車装置は、機台と、該機台に回転軸を中心に回転自在に設けられ外周に沿って直径方向外方に開口を有した水を受ける複数のバケットを列設して構成される水車と、上側に位置したバケットに向けて水を供給し上記水車を一方向に回転せしめる給水口部と、上記水車のバケットが上記給水口部から水を受けることを可能にする上側の受水空間及び該受水空間で受けた水を排出可能にする下側の排水空間を形成するように、上記受水空間より水車の回転方向に沿う上記排水空間までの間に亘って上記複数のバケットの開口を覆うカバーとを備えた水車装置において、
上記水車の軸方向両側の外周縁部と上記カバーの軸方向両側縁部との間をシールするシール部材を設けた構成としている。
In order to achieve such an object, a watermill device of the present invention receives a machine base and water that is provided on the machine base so as to be rotatable about a rotation shaft and has an opening radially outward along the outer periphery. A water turbine configured by arranging a plurality of buckets, a water supply port for supplying water toward the bucket located on the upper side and rotating the water turbine in one direction, and a bucket of the water turbine from the water supply port The drainage along the rotation direction of the water turbine from the water receiving space so as to form an upper water receiving space that allows the water to be received and a lower drainage space that allows the water received in the water receiving space to be discharged In the watermill device provided with a cover that covers the openings of the plurality of buckets over the space,
A seal member is provided to seal between the outer peripheral edge portions on both sides in the axial direction of the water wheel and the both side edges in the axial direction of the cover.

これにより、給水口部から水がバケット内に供給されると水受板に動圧が作用し、水車は回転せしめられる。この場合、カバーによって、受水空間より水車の回転方向に沿う排水空間までの間に亘って複数のバケットの開口が覆われているので、排水空間に至るまでは、水がバケットから外方に飛び出ることが阻止され、バケット内において略満水状態を保つことから、水の水車に対する圧力伝達が確実に行われる。このとき、カバーとバケットの開口との間にクリアランスがあると、このクリアランスを通して水が漏出するが、水車の軸方向両側であってその外周縁部とカバーの両側縁部との間はシール部材によってシールされているので、この間から水が漏出することが阻止される。そのため、水の漏出が阻止される分、エネルギーの伝達ロスが防止され、それだけ、回転エネルギーを増すことができ、回転効率を向上させることができる。また、シール部材によるシールなので、直接水車の外周とカバーとを接触させる場合に比較して、摩擦抵抗を極めて低く押えることができる。   As a result, when water is supplied into the bucket from the water supply port, dynamic pressure acts on the water receiving plate, and the water turbine is rotated. In this case, since the cover covers the openings of the plurality of buckets from the receiving space to the drainage space along the direction of rotation of the water turbine, the water is discharged outward from the bucket until the drainage space is reached. Since it is prevented from popping out and kept in a substantially full state in the bucket, the pressure transmission to the water turbine is reliably performed. At this time, if there is a clearance between the cover and the opening of the bucket, water leaks through this clearance, but the seal member is located on both sides in the axial direction of the water turbine and between the outer peripheral edge portion and both side edge portions of the cover. Since it is sealed by this, water is prevented from leaking out during this period. Therefore, energy transmission loss is prevented as much as leakage of water is prevented, so that rotational energy can be increased and rotational efficiency can be improved. Further, since the seal is made by the seal member, it is possible to keep the frictional resistance extremely low as compared with the case where the outer periphery of the water turbine is directly brought into contact with the cover.

そして、必要に応じ、上記水車を、上記回転軸の軸方向に沿って所定の間隔を隔てて該回転軸に支持され互いに対向する一対の側板と、該側板間に上記回転軸を中心とする円周方向に沿って設けられる底板と、上記側板間であって上記底板の外周に等角度且つ等間隔に設けられる複数の水受板とを備えて構成し、上記側板,底板及び水受板によって複数のバケットを形成し、上記シール部材を、上記側板の外周縁部及び上記カバーの側縁部のいずれか一方に、何れか他方が摺接するように設けた構成としている。
これにより、シール部材は、側板の外周縁部とカバーの側縁部との間に介在させられ、水車の回転方向に沿う方向に設けられることになるので、シール部材による摺接が円滑に行われ、確実に、摩擦抵抗を低減することができる。
Then, if necessary, the water turbine is centered on the rotation shaft between a pair of side plates supported by the rotation shaft and opposed to each other at a predetermined interval along the axial direction of the rotation shaft. A bottom plate provided along a circumferential direction, and a plurality of water receiving plates provided at equal angles and at equal intervals between the side plates and on the outer periphery of the bottom plate, the side plate, the bottom plate, and the water receiving plate. A plurality of buckets are formed, and the seal member is provided so that either one of the outer peripheral edge of the side plate and the side edge of the cover is in sliding contact with the other.
Accordingly, the seal member is interposed between the outer peripheral edge portion of the side plate and the side edge portion of the cover, and is provided in a direction along the rotation direction of the water turbine, so that the sliding contact with the seal member is smoothly performed. Therefore, the frictional resistance can be surely reduced.

この場合、上記水車の外周面に沿う曲板と、該カバーの両側縁部を構成し上記曲板から上記回転軸方向に突設されて上記側板の外周縁部に対峙する帯状の一対の対峙板とを備えて構成し、上記シール部材を上記対峙板に取り付けて該シール部材に上記側板の外周縁部が摺接するようにしたことが有効である。これにより、帯状の対峙板にシール部材を取り付けたので、取付けが容易に行われるとともに、従来のように、水車の側面を覆う側面板が不要になり、それだけ構造を簡単にすることができる。   In this case, a curved plate along the outer peripheral surface of the water wheel, and a pair of belt-shaped facings that constitute both side edges of the cover and project from the curved plate in the direction of the rotation axis and face the outer peripheral edge of the side plate. It is effective to include a plate and attach the seal member to the counter plate so that the outer peripheral edge of the side plate is in sliding contact with the seal member. Thus, since the seal member is attached to the belt-like counter plate, the attachment can be easily performed, and the side plate for covering the side surface of the water turbine is not required as in the prior art, and the structure can be simplified accordingly.

また、必要に応じ、上記各側板を夫々支持する支持フレームを設け、該支持フレームを、上記回転軸に固定される円盤状の基材と、上記側板の外周縁に対応しパイプを折曲形成した円環と、上記基材と円環との間に架設され放射方向に延びパイプで形成された複数のスポークとを備えて構成している。各側板をスポーク状の支持フレームで支持するので、水車の強度を増すことができる。特に水圧が高い場合の対応が確実になる。また、スポークなので軽量であり、回転効率が極めて良い。   Further, if necessary, a support frame for supporting each of the side plates is provided, and the support frame is formed by bending a pipe corresponding to the disk-shaped base material fixed to the rotating shaft and the outer peripheral edge of the side plate. And a plurality of spokes extending between the base material and the ring and extending in the radial direction and formed of pipes. Since each side plate is supported by the spoke-like support frame, the strength of the water turbine can be increased. In particular, the response when the water pressure is high is ensured. Moreover, since it is a spoke, it is lightweight, and rotation efficiency is very good.

この場合、必要に応じ、上記側板を上記支持フレームの内側に固定し、上記水受板をその基端が底板に接合され先端が側板の外周縁部より上記回転軸側に位置するように設け、上記カバーを、上記水車の外周面に沿う曲板と、該カバーの両側縁部を構成し上記曲板から上記回転軸方向に突設されて上記側板の外周縁部に対峙する帯状の一対の対峙板とを備えて構成し、上記シール部材を上記対峙板に取り付けて該シール部材に上記側板の外周縁部の内面が摺接するようにした構成としている。支持フレームは側板をその外側から押えることになるので水圧に確実に対応できるとともに、側板の外周縁部の内面においてシール部材でシールするので、シール性も向上させられる。   In this case, if necessary, the side plate is fixed to the inside of the support frame, and the water receiving plate is provided so that its base end is joined to the bottom plate and the tip is positioned on the rotating shaft side from the outer peripheral edge of the side plate. The cover includes a curved plate along the outer peripheral surface of the water wheel, and a pair of belt-shaped pairs that constitute both side edges of the cover and project from the curved plate in the direction of the rotation axis and face the outer peripheral edge of the side plate. And the seal member is attached to the counter plate so that the inner surface of the outer peripheral edge of the side plate is in sliding contact with the seal member. Since the support frame presses the side plate from the outside, the support frame can reliably cope with water pressure, and the sealing is improved by sealing with the seal member on the inner surface of the outer peripheral edge of the side plate.

また、必要に応じ、上記水車の水受板の先端と上記カバーとのクリアランスを調整するクリアランス調整機構を設けた構成としている。
クリアランス調整機構によって、水車の水受板の先端とカバーとのクリアランスを調整できるので、このクリアランスから漏出する水の量を調整して、シール部材にかかる負荷を調整することができ、そのため、水受板とカバーとの接触を回避しつつ、シール部材によるシールをより一層確実に確保することができるようになる。
Moreover, it is set as the structure which provided the clearance adjustment mechanism which adjusts the clearance gap between the front-end | tip of the water receiving plate of the said water turbine, and the said cover as needed.
Since the clearance adjustment mechanism can adjust the clearance between the tip of the water receiving plate of the water wheel and the cover, the amount of water leaking from this clearance can be adjusted to adjust the load applied to the seal member. While avoiding the contact between the receiving plate and the cover, the seal by the seal member can be more reliably ensured.

この場合、必要に応じ、上記クリアランス調整機構を、上記カバーの外側にあって上記回転軸方向に沿って延び該カバーが取り付けられる複数の支持バーと、該各支持バーに対応して夫々設けられ該支持バーの両端を上記機台に対して固定可能な一対の固定部材の複数の組と、上記固定部材に設けた支持ボルトと、上記支持バーに形成され上記支持ボルトに挿通される挿通孔と、上記支持バーより固定部材側にあって上記支持ボルトに螺合する支持ナットと、上記支持バーの外側にあって上記支持ボルトに螺合する固定ナットとを備え、上記支持ナットと固定ナットの螺合位置調整によりカバーの位置調整を行うようにした構成としている。支持ナットと固定ナットの螺合位置調整によりカバーの位置調整を行うので、構造が簡単で、容易に位置調整を行うことができるとともに、複数の支持バーにより、カバーを外側から支持するので機台に確実に支持することができる。   In this case, if necessary, the clearance adjusting mechanism is provided corresponding to each of the plurality of support bars that extend outside the cover and extend along the direction of the rotation axis, and to which the cover is attached. A plurality of sets of a pair of fixing members capable of fixing both ends of the support bar to the machine base, a support bolt provided on the fixing member, and an insertion hole formed in the support bar and inserted into the support bolt A support nut that is on the fixing member side from the support bar and is screwed to the support bolt; and a fixing nut that is outside the support bar and is screwed to the support bolt, the support nut and the fixing nut The position of the cover is adjusted by adjusting the screw position. The position of the cover is adjusted by adjusting the screwing position of the support nut and the fixing nut, so that the structure is simple and the position can be adjusted easily, and the cover is supported from the outside by a plurality of support bars. Can be reliably supported.

また、必要に応じ、上記固定部材を、一端が上記機台に固定され他端が上記支持バーが固定される棒状部材で構成し、該棒状部材を上記支持バーに対応させて複数設けるとともに、各棒状部材を上記機台に放射状に配置した構成としている。複数の棒状部材を放射状に設けたので、支持バーの支持を確実に行うことができる。   Further, if necessary, the fixing member is constituted by a rod-shaped member having one end fixed to the machine base and the other end fixed to the support bar, and a plurality of the rod-shaped members corresponding to the support bar are provided. Each rod-like member is configured to be arranged radially on the machine base. Since the plurality of rod-shaped members are provided radially, the support bar can be reliably supported.

そしてまた、必要に応じ、上記水受板を、回転方向上流側が凹になるように湾曲形成した構成としている。水受板の面積を大きくして水を確実に受けることができる。   Further, if necessary, the water receiving plate is configured to be curved so that the upstream side in the rotational direction is concave. The area of the water receiving plate can be increased to reliably receive water.

また、必要に応じ、上記隣接する水受板間に、アームを架設した構成としている。上記のシール部材により、漏水が抑止されることから、それだけ、水受板に作用する力が大きくなるが、水受板間にアームを架設し、アームによっても水受板に作用する荷重を受けることができるので、それだけ、強度が高くなり、漏水を抑止して確実に水車を回転させることができる。また、給水口部からの水はアームにも当接するが、アーム自身でも水を受けることになるので、それだけ、水受板への負担を低減することができる。   Moreover, it is set as the structure which constructed the arm between the said adjacent water receiving plates as needed. Since the water leakage is suppressed by the sealing member, the force acting on the water receiving plate increases accordingly. However, an arm is installed between the water receiving plates, and the arm also receives a load acting on the water receiving plate. Therefore, the strength is increased, and the water turbine can be reliably rotated while suppressing water leakage. Further, the water from the water supply port part also comes into contact with the arm, but the arm itself receives water, so that the burden on the water receiving plate can be reduced accordingly.

更に、必要に応じ、上記アームを、上記回転軸の軸方向に沿って複数列設した構成としている。より一層、強度が高くなり、漏水を抑止して確実に水車を回転させることができる。また、アームによっても水を受け易くなり、それだけ、水受板への負担を低減することができる。   Furthermore, it is set as the structure which provided the said arm in multiple rows along the axial direction of the said rotating shaft as needed. The strength is further increased, and the water turbine can be reliably rotated while suppressing water leakage. Moreover, it becomes easy to receive water also by an arm, The burden to a water receiving plate can be reduced only that much.

更にまた、必要に応じ、上記アームを、回転方向上流側が凹になるように湾曲形成した構成としている。アームが湾曲形成されているので、給水口部からの水がアームに当接した際、水を受け易くなり、それだけ、水受板への負担を低減することができる。   Furthermore, if necessary, the arm is configured to be curved so that the upstream side in the rotational direction is concave. Since the arm is curved, it becomes easier to receive water when water from the water supply port abuts on the arm, and the burden on the water receiving plate can be reduced accordingly.

また、必要に応じ、上記排水空間より回転方向に沿う上記受水空間までの間に亘って上記複数のバケットの開口を覆う別のカバーを備えて構成している。これにより、別のカバーがない場合(従来)に比較して、排水空間を狭めることができ、排水が後側に飛散する事態を防止することができる。   Further, if necessary, another cover is provided to cover the openings of the plurality of buckets from the drainage space to the water receiving space along the rotation direction. Thereby, compared with the case where there is no other cover (conventional), the drainage space can be narrowed, and the situation where the drainage is scattered to the rear side can be prevented.

この場合、上記別のカバーの排水空間側の端部に該排水空間に排水される水が衝止する衝止板を突設したことが有効である。衝止板に排水が衝止するので、排水が後側に飛散する事態を確実に防止することができる。   In this case, it is effective to project a stop plate for stopping water drained into the drain space at the end of the other cover on the drain space side. Since the drainage stops against the stop plate, it is possible to reliably prevent the wastewater from scattering to the rear side.

本発明によれば、カバーによって、受水空間より水車の回転方向に沿う排水空間までの間に亘って複数のバケットの開口が覆われているので、排水空間に至るまでは、水がバケットから外方に飛び出ることが阻止され、バケット内において満水状態を保つことから、水の水車に対する圧力伝達が確実に行われる。このとき、カバーとバケットの開口との間にクリアランスがあると、このクリアランスを通して水が漏出するが、水車の軸方向両側であってその外周縁部とカバーの両側縁部との間はシール部材によってシールされているので、この間からは水が漏出することが阻止される。そのため、水の漏出が阻止される分、エネルギーの伝達ロスが防止され、それだけ、回転エネルギーを増すことができ、回転効率を向上させることができる。また、シール部材によるシールなので、直接水車の外周とカバーとを接触させる場合に比較して、摩擦抵抗を極めて低く押えることができる。   According to the present invention, since the openings of the plurality of buckets are covered by the cover from the water receiving space to the drainage space along the rotation direction of the water turbine, the water is discharged from the bucket until the drainage space is reached. Since it is prevented from jumping outward and the bucket is kept full of water, pressure transmission to the water turbine is reliably performed. At this time, if there is a clearance between the cover and the opening of the bucket, water leaks through this clearance, but the seal member is located on both sides in the axial direction of the water turbine and between the outer peripheral edge portion and both side edge portions of the cover. Because of this, water is prevented from leaking out during this period. Therefore, energy transmission loss is prevented as much as leakage of water is prevented, so that rotational energy can be increased and rotational efficiency can be improved. Further, since the seal is made by the seal member, it is possible to keep the frictional resistance extremely low as compared with the case where the outer periphery of the water turbine is directly brought into contact with the cover.

本発明の実施の形態に係る水車装置を示す斜視図である。It is a perspective view which shows the water turbine apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る水車装置を示す正面図である。It is a front view which shows the watermill apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る水車装置を示す側面図である。It is a side view which shows the water turbine apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る水車装置を示す平面図である。It is a top view which shows the watermill apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る水車装置を示す正面断面図である。It is front sectional drawing which shows the water turbine apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る水車装置を示す側面断面図である。It is side surface sectional drawing which shows the water turbine apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る水車装置を、側板を取り除いて透視して示す斜視図である。It is a perspective view which shows the watermill apparatus which concerns on embodiment of this invention by removing a side plate and seeing through. 本発明の実施の形態に係る水車装置において、水車の構造を示す分解斜視図である。It is a disassembled perspective view which shows the structure of a water turbine in the water turbine apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る水車装置において、アームの構造を示し、(a)は斜視図、(b)は(a)中A−A線断面図である。In the watermill device concerning an embodiment of the invention, the structure of an arm is shown, (a) is a perspective view and (b) is an AA line sectional view in (a). 本発明の実施の形態に係る水車装置において、機台に対する第一カバー,第二カバー及びクリアランス調整機構との関係を示す分解斜視図である。It is a disassembled perspective view which shows the relationship between the 1st cover with respect to a machine base, a 2nd cover, and a clearance adjustment mechanism in the water turbine apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る水車装置において、クリアランス調整機構を示す断面図である。It is sectional drawing which shows a clearance adjustment mechanism in the water turbine apparatus which concerns on embodiment of this invention. 本発明の実施の形態に係る水車装置において、水車と第一カバー(第二カバー)とのシール構造を示す図6中B部拡大断面図である。FIG. 7 is an enlarged cross-sectional view of a portion B in FIG. 6 showing a seal structure between the water wheel and the first cover (second cover) in the water wheel device according to the embodiment of the present invention. 本発明の実施の形態に係る水車装置が用いられる堰の例を示す斜視図である。It is a perspective view which shows the example of the weir in which the water turbine apparatus which concerns on embodiment of this invention is used. 従来の水車装置の一例を示し、(a)は正面断面図、(b)は側面断面図である。An example of the conventional watermill apparatus is shown, (a) is front sectional drawing, (b) is side sectional drawing.

以下、添付図面に基づいて、本発明の実施の形態に係る水車装置について詳細に説明する。
図1乃至図12には、本発明の実施の形態に係る水車装置Sを示している。この水車装置Sの基本的構成は、機台1と、機台1に回転軸11を中心に回転自在に設けられ外周に沿って直径方向外方に開口16を有した水を受ける複数のバケット15を列設して構成される水車10と、上側に位置したバケット15に向けて水を供給し水車10を一方向に回転せしめる給水口部40と、水車10のバケット15が給水口部40から水を受けることを可能にする上側の受水空間Wa及び受水空間Waで受けた水を排出可能にする下側の排水空間Wbを形成するように、受水空間Waより水車10の回転方向に沿う排水空間Wbまでの間に亘って複数のバケット15の開口16を覆う第一カバー50と、排水空間Wbより回転方向に沿う受水空間Waまでの間に亘って複数のバケット15の開口16を覆う第一カバー50とは別の第二カバー60と、回転軸11の回転を取り出す回転機構部90とを備えて構成されている。
Hereinafter, based on an accompanying drawing, a watermill device concerning an embodiment of the invention is explained in detail.
1 to 12 show a water turbine apparatus S according to an embodiment of the present invention. The basic configuration of the water turbine apparatus S includes a machine base 1 and a plurality of buckets that are provided on the machine base 1 so as to be rotatable about a rotating shaft 11 and receive water having an opening 16 radially outward along the outer periphery. 15, a water supply port 40 configured to supply water toward the bucket 15 located on the upper side and rotate the water wheel 10 in one direction, and a bucket 15 of the water turbine 10 is connected to the water supply port 40. Rotation of the water turbine 10 from the water receiving space Wa so as to form an upper water receiving space Wa that allows water to be received from the water and a lower drainage space Wb that allows the water received in the water receiving space Wa to be discharged. The first cover 50 covering the openings 16 of the plurality of buckets 15 over the drainage space Wb along the direction, and the buckets 15 between the drainage space Wb and the water receiving space Wa along the rotation direction. A first cover 50 covering the opening 16; Another second cover 60 is configured by a rotary mechanism 90 for taking out a rotation of the rotary shaft 11.

機台1は、図1乃至図7,図10に示すように、鉄等の金属製の中空棒状部材を溶接して構築されており、ベース2と、ベース2の中間部に所定間隔離間して立設され水車10を支持する一対の第一支持体3と、ベース2の一端部に立設され給水口部40を支持する第二支持体4とを備えている。図10に示すように、第一支持体3は、上端側で収束する2本の支柱3a,3aと、この支柱3a,3a間に架設される架設杆3bと、架設杆3bを支持する支持杆3cとを備えてなる。一対の第一支持体3の上端間には架設板5が架設されている。第二支持体4は、上記第一支持体3の支柱3a,3aに対応した所定間隔でベース上に立設される2本の支柱4a,4aと、この支柱4a,4aの上端間に架設される上端杆4bと、この上端杆4bと第一支持体3の支柱3a,3aとの間に架設される補強杆4cとを備えて構成されている。   As shown in FIGS. 1 to 7 and 10, the machine base 1 is constructed by welding a hollow metal rod member made of metal such as iron, and is separated from the base 2 and the intermediate portion of the base 2 by a predetermined interval. A pair of first supports 3 that support the water wheel 10 and a second support 4 that supports the water supply port 40 and is provided at one end of the base 2. As shown in FIG. 10, the first support body 3 includes two support columns 3a and 3a that converge at the upper end side, a support rod 3b that is installed between the support columns 3a and 3a, and a support that supports the support rod 3b. And 3c. A construction plate 5 is constructed between the upper ends of the pair of first supports 3. The second support body 4 is constructed between two support pillars 4a and 4a standing on the base at predetermined intervals corresponding to the support pillars 3a and 3a of the first support body 3, and between the upper ends of the support pillars 4a and 4a. The upper end rod 4b is provided, and the upper end rod 4b and the reinforcing rod 4c installed between the support columns 3a and 3a of the first support 3 are provided.

水車10は、図1乃至図8に示すように、回転軸11の軸方向に沿って所定の間隔を隔てて回転軸11に支持され互いに対向する一対の円環状(リング状)の側板12と、側板12間に回転軸11を中心とする円周方向に沿って設けられる底板13と、側板12間であって底板13の外周に等角度且つ等間隔に設けられる複数の水受板14とを備えて構成されており、側板12,底板13及び水受板14によって複数(実施の形態では12個)のバケット15を形成している。底板13及び水受板14はビスなどで側板12に固定される。図5及び図8に示すように、水受板14は、回転方向上流側が凹になるように湾曲形成されており、基端が底板13に接合され、先端14aは側板12の外周縁部17より回転軸11側に位置するように設けられている。   As shown in FIGS. 1 to 8, the water turbine 10 includes a pair of annular (ring-shaped) side plates 12 that are supported by the rotary shaft 11 and opposed to each other at a predetermined interval along the axial direction of the rotary shaft 11. A bottom plate 13 provided between the side plates 12 along the circumferential direction centering on the rotation axis 11, and a plurality of water receiving plates 14 provided between the side plates 12 and at the outer periphery of the bottom plate 13 at equal angles and at equal intervals. The side plate 12, the bottom plate 13, and the water receiving plate 14 form a plurality (12 in the embodiment) of buckets 15. The bottom plate 13 and the water receiving plate 14 are fixed to the side plate 12 with screws or the like. As shown in FIGS. 5 and 8, the water receiving plate 14 is curved so that the upstream side in the rotational direction is concave, the base end is joined to the bottom plate 13, and the tip 14 a is the outer peripheral edge portion 17 of the side plate 12. It is provided so as to be positioned closer to the rotating shaft 11 side.

また、各側板12は、その外側から夫々支持フレーム20にビス等で止着されて支持されている。即ち、側板12は、支持フレーム20の内側に固定されている。支持フレーム20は、回転軸11に固定される円盤状の基材21と、側板12の外周縁に対応しパイプを折曲形成した円環22と、基材21と円環22との間に架設され放射方向に延びパイプで形成された複数のスポーク23とを備えて構成されている。各側板12をスポーク23状の支持フレーム20で支持するので、水車10の強度を増すことができる。特に水圧が高い場合の対応が確実になる。また、スポーク23なので軽量であり、回転効率が極めて良い。   Further, each side plate 12 is supported by being fixed to the support frame 20 from the outside by screws or the like. That is, the side plate 12 is fixed inside the support frame 20. The support frame 20 includes a disk-shaped base material 21 fixed to the rotary shaft 11, an annular ring 22 formed by bending a pipe corresponding to the outer peripheral edge of the side plate 12, and the base material 21 and the annular ring 22. A plurality of spokes 23 that are installed and extend in the radial direction and are formed of pipes. Since each side plate 12 is supported by the spoke-like support frame 20, the strength of the water turbine 10 can be increased. In particular, the response when the water pressure is high is ensured. Moreover, since it is the spoke 23, it is lightweight and rotation efficiency is very good.

図6に示すように、左右の基材21間には、回転軸11が通されて固定される固定管24が架設されている。回転軸11の両端は支持フレーム20より突出形成され、その突出部分が、機台1の第一支持体3において、2本の支柱間に架設した架設杆3bに軸受部25を介して回転自在に支持されている。水車10の大きさは、例えば、直径が2000mm、軸方向の幅が600mmに設定される。大きさは、これに限定されるものではない。   As shown in FIG. 6, between the left and right base materials 21, a fixed tube 24 is installed to which the rotary shaft 11 is passed and fixed. Both ends of the rotating shaft 11 are formed to project from the support frame 20, and the projecting portions of the rotating shaft 11 can be freely rotated via a bearing portion 25 on a construction rod 3 b constructed between two support columns in the first support 3 of the machine base 1. It is supported by. The size of the water turbine 10 is set to, for example, a diameter of 2000 mm and an axial width of 600 mm. The size is not limited to this.

また、図5,図6,図7及び図9に示すように、隣接する水受板14間には、アーム30が架設されている。アーム30は、回転方向上流側が凹になるように湾曲形成されて、樋状に形成されている。アーム30は、回転軸11の軸方向に沿って複数列設されている。詳しくは、アーム30の一対を並設したアーム集合体31を用いている。アーム集合体31は、一対のアーム30の両端を夫々取付け板32,32に固定して構成されており、この取付け板32,32を隣接する水受板14にビス等で固定することにより、取り付けられる。実施の形態では、アーム集合体31は、図7に示すように、間隔を隔てて、回転軸11の軸方向に沿って3つ列設されている。   In addition, as shown in FIGS. 5, 6, 7, and 9, an arm 30 is installed between adjacent water receiving plates 14. The arm 30 is curved and formed in a bowl shape so that the upstream side in the rotation direction is concave. The arms 30 are arranged in a plurality of rows along the axial direction of the rotary shaft 11. Specifically, an arm assembly 31 in which a pair of arms 30 are arranged side by side is used. The arm assembly 31 is configured by fixing both ends of a pair of arms 30 to mounting plates 32 and 32, respectively, and by fixing the mounting plates 32 and 32 to the adjacent water receiving plate 14 with screws or the like, It is attached. In the embodiment, as shown in FIG. 7, three arm assemblies 31 are arranged in a row along the axial direction of the rotating shaft 11 with an interval therebetween.

給水口部40は、図5に示すように、管体41であり、機台1の第二支持体4において、軸線を略水平方向にして、上端杆4bにブラケット42を介して固定されている。給水口部40の先端43は、隣接する水受板14の先端間の幅に対応させて斜めに切断形成され、上側に位置したバケット15に向けて水を供給して、水車10を一方向に回転せしめる。   As shown in FIG. 5, the water supply port portion 40 is a tube body 41, and is fixed to the upper end flange 4 b via a bracket 42 with the axis line being substantially horizontal in the second support body 4 of the machine base 1. Yes. The tip 43 of the water supply port 40 is cut and formed obliquely in correspondence with the width between the tips of the adjacent water receiving plates 14, and supplies water toward the bucket 15 located on the upper side so that the water wheel 10 is unidirectional. Rotate to.

第一カバー50は、図1乃至図5,図7,図10乃至図12に示すように、機台1に設けられており、上述もしたように、水車10のバケット15が給水口部40から水を受けることを可能にする上側の受水空間Wa及び受水空間Waで受けた水を排出可能にする下側の排水空間Wbを形成するように、受水空間Waより水車10の回転方向に沿う排水空間Wbまでの間に亘って複数のバケット15の開口16を覆うものである。そして、第一カバー50は、水車10の外周面に沿う曲板51と、第一カバー50の両側縁部を構成し曲板51から回転軸11方向に突設されて側板12の外周縁部17の内面に対峙する帯状の一対の対峙板52とを備えて構成されている。図5及び図12に示すように、対峙板52の先端縁53は、各水受板14の先端14aを結んで形成される外周面54に沿うように形成されている。   As shown in FIGS. 1 to 5, 7, and 10 to 12, the first cover 50 is provided in the machine base 1, and as described above, the bucket 15 of the water turbine 10 is connected to the water inlet 40. Rotation of the water turbine 10 from the water receiving space Wa so as to form an upper water receiving space Wa that allows water to be received from the water and a lower drainage space Wb that allows the water received in the water receiving space Wa to be discharged. The openings 16 of the plurality of buckets 15 are covered between the drainage space Wb along the direction. And the 1st cover 50 comprises the curved board 51 in alignment with the outer peripheral surface of the water wheel 10, and the both-sides edge part of the 1st cover 50, and is protrudingly provided in the rotating shaft 11 direction from the curved board 51, and the outer-periphery edge part of the side plate 12 17 is provided with a pair of strip-shaped opposing plates 52 facing the inner surface of 17. As shown in FIGS. 5 and 12, the leading edge 53 of the counter plate 52 is formed along the outer peripheral surface 54 formed by connecting the leading ends 14 a of the water receiving plates 14.

第二カバー60は、機台1に設けられており、上述もしたように、排水空間Wbより回転方向に沿う受水空間Waまでの間に亘って複数のバケット15の開口16を覆うものである。そして、第二カバー60は、第一カバー50と同様に、水車10の外周面に沿う曲板61と、第二カバー60の両側縁部を構成し曲板61から回転軸11方向に突設されて側板12の外周縁部17の内面に対峙する帯状の一対の対峙板62とを備えて構成されている。対峙板62の先端縁63は、各水受板14の先端14aを結んで形成される外周面54に沿うように形成されている。   The second cover 60 is provided on the machine base 1 and covers the openings 16 of the plurality of buckets 15 from the drainage space Wb to the water receiving space Wa along the rotation direction as described above. is there. And the 2nd cover 60 comprises the curved plate 61 along the outer peripheral surface of the water turbine 10, and the both-sides edge part of the 2nd cover 60 similarly to the 1st cover 50, and protrudes from the curved plate 61 to the rotating shaft 11 direction. And a pair of strip-shaped opposing plates 62 facing the inner surface of the outer peripheral edge portion 17 of the side plate 12. The leading edge 63 of the counter plate 62 is formed along the outer peripheral surface 54 formed by connecting the leading ends 14 a of the water receiving plates 14.

実施の形態では、第一カバー50の上端と第二カバー60の上端との間に、給水口部40の先端が臨む受水空間Waが形成され、第一カバー50の下端と第二カバー60の下端との間に、排水空間Wbが形成される。受水空間Waと排水空間Wbの位置は、適宜に定められるが、実施の形態では、図5に示すように、受水空間Waは、その終端が回転軸11の中心を通る垂直軸上に位置し、始端が回転軸11の中心を通り垂直軸から角度θ1(45°)回転逆方向がわの軸上に位置するように形成され、排水空間Wbは、その始端が回転軸11の中心を通る垂直軸上に位置し、終端が回転軸11の中心を通り垂直軸から角度θ2(45°)回転方向がわの軸上に位置するように形成されている。そして、第二カバー60の排水空間Wb側の端部には、排水空間Wbに排水される水が衝止する衝止板65が突設されている。   In the embodiment, a water receiving space Wa where the tip of the water supply port 40 faces is formed between the upper end of the first cover 50 and the upper end of the second cover 60, and the lower end of the first cover 50 and the second cover 60 are formed. A drainage space Wb is formed between the lower ends of the two. The positions of the water receiving space Wa and the drainage space Wb are appropriately determined. However, in the embodiment, as shown in FIG. 5, the water receiving space Wa is on the vertical axis passing through the center of the rotating shaft 11. The drainage space Wb is formed such that the start end passes through the center of the rotary shaft 11 and the opposite direction of rotation of the angle θ1 (45 °) from the vertical axis is located on the axis of the drain. , And the terminal end passes through the center of the rotary shaft 11 and is formed so that the rotational direction of the angle θ2 (45 °) from the vertical axis is on the axis of the hook. A stop plate 65 is provided at the end of the second cover 60 on the drain space Wb side so as to stop water drained into the drain space Wb.

また、実施の形態では、図1乃至図5,図7,図10及び図11に示すように、水車10の水受板14の先端14aと第一カバー50とのクリアランスを調整するクリアランス調整機構70が備えられている。また、水車10の水受板14の先端14aと第二カバー60とのクリアランスを調整する同様のクリアランス調整機構70が備えられている。第一カバー50及び第二カバー60のクリアランス調整機構70とは同様の構成なので、第一カバー50においてその構成を説明する。   In the embodiment, as shown in FIGS. 1 to 5, 7, 10, and 11, a clearance adjustment mechanism that adjusts the clearance between the tip 14 a of the water receiving plate 14 of the water turbine 10 and the first cover 50. 70 is provided. Further, a similar clearance adjustment mechanism 70 that adjusts the clearance between the tip 14 a of the water receiving plate 14 of the water turbine 10 and the second cover 60 is provided. Since the clearance adjustment mechanism 70 of the first cover 50 and the second cover 60 has the same configuration, the configuration of the first cover 50 will be described.

クリアランス調整機構70は、第一カバー50の外側にあって回転軸11方向に沿って延び第一カバー50が取付け突起71を介して取り付けられる複数の支持バー72と、各支持バー72に対応して夫々設けられ支持バー72の両端を機台1に対して固定可能な一対の固定部材73の複数の組とを備えている。機台1の第一支持体3の支柱3aには、回転軸11を中心とする一部切り欠かれパイプを折曲形成した円環体74が固定されており、固定部材73は、一端が円環体74若しくは支柱3aに固定され他端が支持バー72が固定されるパイプからなる棒状部材で構成され、この棒状部材は支持バー72に対応させて複数設けられるとともに、各棒状部材は機台1の円環体74に対して放射状に配置されている。   The clearance adjustment mechanism 70 corresponds to each of the support bars 72 and a plurality of support bars 72 that are outside the first cover 50 and extend along the direction of the rotation axis 11 and to which the first cover 50 is attached via attachment protrusions 71. And a plurality of sets of a pair of fixing members 73 that are provided respectively and can fix both ends of the support bar 72 to the machine base 1. An annular body 74 that is partially cut away around the rotation shaft 11 and is formed by bending a pipe is fixed to the column 3 a of the first support 3 of the machine base 1. The rod-shaped member 74 is fixed to the torus 74 or the column 3a and the other end is formed of a pipe-shaped member to which the support bar 72 is fixed. A plurality of the rod-shaped members are provided corresponding to the support bar 72. They are arranged radially with respect to the torus 74 of the table 1.

また、クリアランス調整機構70は、図11に示すように、固定部材73の先端に設けたキャップ73aに螺合しナット75でロックされた支持ボルト76と、支持バー72に形成され支持ボルト76に挿通される挿通孔77と、支持バー72より固定部材73側にあって支持ボルト76に螺合する支持ナット78と、支持バー72の外側にあって支持ボルト76に螺合する固定ナット79とを備え、支持ナット78と固定ナット79の螺合位置調整により第一カバー50の位置調整を行うようにしている。複数の支持バー72により、第一カバー50が外側から支持されるので機台1に確実に支持することができる。また、複数の固定部材73としての棒状部材を放射状に設けたので、支持バー72の支持を確実に行うことができる。クリアランス調整機構70による調整は、例えば、水受板14の先端14aと第一カバー50の対峙板52の先端縁53との間において、1mm〜10mm程度になる。   Further, as shown in FIG. 11, the clearance adjustment mechanism 70 includes a support bolt 76 screwed into a cap 73 a provided at the tip of the fixing member 73 and locked by a nut 75, and a support bolt 72 formed on the support bar 72. An insertion hole 77 to be inserted, a support nut 78 on the fixing member 73 side of the support bar 72 and screwed to the support bolt 76, and a fixing nut 79 on the outside of the support bar 72 and screwed to the support bolt 76 The position of the first cover 50 is adjusted by adjusting the screwing position of the support nut 78 and the fixing nut 79. Since the first cover 50 is supported from the outside by the plurality of support bars 72, it can be reliably supported on the machine base 1. Moreover, since the rod-shaped members as the plurality of fixing members 73 are provided radially, the support bar 72 can be reliably supported. The adjustment by the clearance adjustment mechanism 70 is, for example, about 1 mm to 10 mm between the tip 14 a of the water receiving plate 14 and the tip edge 53 of the counter plate 52 of the first cover 50.

そして、実施の形態に係る水車装置Sにおいては、図6及び図12に示すように、水車10の軸方向両側の外周縁部17と第一カバー50の軸方向両側縁部との間をシールするシール部材80が設けられている。また、水車10の軸方向両側の外周縁部17と第二カバー60の軸方向両側縁部との間をシールする同様のシール部材80が設けられている。第一カバー50及び第二カバー60におけるシール部材80はその構成が同様なので、第一カバー50におけるシール部材80について説明する。   And in the water turbine apparatus S which concerns on embodiment, as shown in FIG.6 and FIG.12, it seals between the outer-periphery edge part 17 of the axial direction both sides of the water turbine 10, and the axial direction both sides edge part of the 1st cover 50. A sealing member 80 is provided. Further, a similar seal member 80 is provided for sealing between the outer peripheral edge portion 17 on both sides in the axial direction of the water turbine 10 and both side edges in the axial direction of the second cover 60. Since the seal member 80 in the first cover 50 and the second cover 60 has the same configuration, the seal member 80 in the first cover 50 will be described.

シール部材80は、図12に示すように、水車10の側板12の外周縁部17及び第一カバー50の側縁部のいずれか一方(実施の形態では第一カバー50の側縁部)に、何れか他方(実施の形態では側板12の側縁部)が摺接するように設けられている。
詳しくは、シール部材80は、可撓性のゴム,樹脂等で形成され、帯状の基部81と該基部81の一側縁から突出する帯状のリップ82とからなる。そして、シール部材80は、そのリップ82に側板12の外周縁部17の内面が摺接するように、その基部81が対峙板52に接着剤などで取り付けられている。
シール部材80は、帯状の対峙板52に取り付けられるので、取付けが容易に行われるとともに、従来のように、水車10の側面を覆う側面板が不要になり、それだけ構造を簡単にすることができる。
As shown in FIG. 12, the seal member 80 is provided on one of the outer peripheral edge 17 of the side plate 12 of the water turbine 10 and the side edge of the first cover 50 (in the embodiment, the side edge of the first cover 50). , Either one (in the embodiment, the side edge portion of the side plate 12) is provided so as to be in sliding contact.
Specifically, the seal member 80 is formed of a flexible rubber, resin, or the like, and includes a strip-shaped base portion 81 and a strip-shaped lip 82 protruding from one side edge of the base portion 81. The seal member 80 has a base portion 81 attached to the counter plate 52 with an adhesive or the like so that the inner surface of the outer peripheral edge portion 17 of the side plate 12 is in sliding contact with the lip 82.
Since the seal member 80 is attached to the strip-shaped counter plate 52, the attachment is easily performed, and a side plate covering the side surface of the water turbine 10 is not required as in the prior art, and the structure can be simplified accordingly. .

回転機構部90は、図1乃至図4,図6に示すように、回転軸11の延設された一端側に連携しており、回転軸11を軸受で台座91に支持し、ベルト伝動機構92を介して動力プーリ93に回転を伝達している。動力プーリ93には、例えば、図示外の発電機が連携される。   As shown in FIG. 1 to FIG. 4 and FIG. 6, the rotation mechanism unit 90 is linked to one end side of the rotation shaft 11, and supports the rotation shaft 11 on the pedestal 91 with a bearing. The rotation is transmitted to the power pulley 93 through 92. For example, a generator (not shown) is linked to the power pulley 93.

このように構成される水車装置Sは、例えば、図13に示すように、湖沼等の堰Kに付設して設置される。
従って、この実施の形態に係る水車装置Sによれば、予め、クリアランス調整機構70において、水車10の水受板14の先端と第一カバー50及び第二カバー60とのクリアランスを調整しておく。この場合、図11に示すように、支持ナット78と固定ナット79の螺合位置調整によりカバー50,60の位置調整を行う。構造が簡単で、容易に位置調整を行うことができる。
For example, as shown in FIG. 13, the water turbine apparatus S configured as described above is attached to a weir K such as a lake.
Therefore, according to the watermill device S according to this embodiment, the clearance between the tip of the water receiving plate 14 of the watermill 10 and the first cover 50 and the second cover 60 is adjusted in advance in the clearance adjustment mechanism 70. . In this case, as shown in FIG. 11, the positions of the covers 50 and 60 are adjusted by adjusting the screwing position of the support nut 78 and the fixing nut 79. The structure is simple and the position can be adjusted easily.

そして、この状態で、例えば上記の堰Kから水を取り入れて、水車装置Sに供給する。給水口部40から水がバケット15内に供給されると水受板14に動圧が作用し、水車10は回転せしめられる。この場合、図8に示すように、水受板14が回転方向上流側が凹になるように湾曲形成されているので、水受板14の面積が大きくなっており、水を確実に受けることができる。   In this state, for example, water is taken from the weir K and supplied to the water turbine device S. When water is supplied from the water supply port 40 into the bucket 15, dynamic pressure acts on the water receiving plate 14, and the water turbine 10 is rotated. In this case, as shown in FIG. 8, since the water receiving plate 14 is curved so that the upstream side in the rotation direction is concave, the area of the water receiving plate 14 is large and water can be received reliably. it can.

また、この場合、第一カバー50によって、受水空間Waより水車10の回転方向に沿う排水空間Wbまでの間に亘って複数のバケット15の開口16が覆われているので、排水空間Wbに至るまでは、水がバケット15から外方に飛び出ることが阻止され、バケット15内において略満水状態を保つことから、水の水車10に対する圧力伝達が確実に行われる。このとき、第一カバー50とバケット15の開口16との間にクリアランスがあると、このクリアランスを通して水が漏出するが、図12に示すように、水車10の軸方向両側であってその外周縁部17と第一カバー50の両側縁部である対峙板52との間はシール部材80によってシールされているので、この間から水が漏出することが阻止される。そのため、水の漏出が阻止される分、エネルギーの伝達ロスが防止され、それだけ、回転エネルギーを増すことができ、回転効率を向上させることができる。また、シール部材80によるシールなので、直接水車10の外周とカバーとを接触させる場合に比較して、摩擦抵抗を極めて低く押えることができる。   In this case, since the first cover 50 covers the openings 16 of the plurality of buckets 15 from the water receiving space Wa to the drainage space Wb along the rotation direction of the water turbine 10, the drainage space Wb Until then, the water is prevented from jumping out of the bucket 15 and is kept almost full in the bucket 15, so that the pressure is reliably transmitted to the water turbine 10. At this time, if there is a clearance between the first cover 50 and the opening 16 of the bucket 15, water leaks through this clearance. However, as shown in FIG. Since the gap between the portion 17 and the facing plate 52 which is both side edge portions of the first cover 50 is sealed by the sealing member 80, water is prevented from leaking from this space. Therefore, energy transmission loss is prevented as much as leakage of water is prevented, so that rotational energy can be increased and rotational efficiency can be improved. Further, since the seal is made by the seal member 80, the frictional resistance can be suppressed to be extremely low as compared with the case where the outer periphery of the water turbine 10 is directly brought into contact with the cover.

特に、シール部材80は、側板12の外周縁部17と第一カバー50の両側縁部である対峙板52との間に介在させられ、水車10の回転方向に沿う方向に設けられることになるので、シール部材80による摺接が円滑に行われ、確実に、摩擦抵抗を低減することができる。また、この場合、支持フレーム20は側板12をその外側から押えることになるので水圧に確実に対応できるとともに、側板12の外周縁部17の内面においてシール部材80でシールするので、シール性も向上させられる。更に、この場合、クリアランス調整機構70によって、水車10の水受板14の先端14aと第一カバー50とのクリアランスが調整されているので、このクリアランスから漏出する水の量を調整して、シール部材80にかかる負荷を調整することができ、そのため、水受板14と第一カバー50との接触を回避しつつ、シール部材80によるシールをより一層確実に確保することができるようになる。   In particular, the seal member 80 is interposed between the outer peripheral edge portion 17 of the side plate 12 and the facing plate 52 that is both side edge portions of the first cover 50, and is provided in a direction along the rotation direction of the water turbine 10. Therefore, the sliding contact by the seal member 80 is performed smoothly, and the frictional resistance can be reliably reduced. In this case, since the support frame 20 presses the side plate 12 from the outside, the support frame 20 can reliably cope with the water pressure and is sealed by the sealing member 80 on the inner surface of the outer peripheral edge portion 17 of the side plate 12, so that the sealing performance is improved. Be made. Further, in this case, since the clearance between the tip 14a of the water receiving plate 14 of the water turbine 10 and the first cover 50 is adjusted by the clearance adjusting mechanism 70, the amount of water leaking from this clearance is adjusted to The load applied to the member 80 can be adjusted, so that the seal by the seal member 80 can be more reliably ensured while avoiding contact between the water receiving plate 14 and the first cover 50.

そしてまた、シール部材80により、漏水が抑止されることから、それだけ、水受板14に作用する力が大きくなるが、図6及び図9に示すように、水受板14間にアーム30を架設し、アーム30によっても水受板14に作用する荷重を受けることができるので、それだけ、強度が高くなり、漏水を抑止して確実に水車10を回転させることができる。また、給水口部40からの水はアーム30にも当接するが、アーム30自身でも水を受けることになるので、それだけ、水受板14への負担を低減することができる。   Further, since the water leakage is suppressed by the seal member 80, the force acting on the water receiving plate 14 is increased accordingly. However, as shown in FIGS. Since it is constructed and can receive the load acting on the water receiving plate 14 by the arm 30 as well, the strength is increased, and the water turbine 10 can be reliably rotated while suppressing water leakage. Moreover, although the water from the water supply port part 40 also contacts the arm 30, the arm 30 itself receives water, so that the burden on the water receiving plate 14 can be reduced accordingly.

この場合、アーム30を回転軸11の軸方向に沿って複数列設しているので、より一層、強度が高くなり、漏水を抑止して確実に水車10を回転させることができる。また、アーム30によっても水を受け易くなり、それだけ、水受板14への負担を低減することができる。更にまた、アーム30が湾曲形成されているので、給水口部40からの水がアーム30に当接した際、水を受け易くなり、それだけ、水受板14への負担を低減することができる。   In this case, since the arms 30 are arranged in a plurality of rows along the axial direction of the rotary shaft 11, the strength is further increased, and the water turbine 10 can be reliably rotated while suppressing water leakage. Moreover, it becomes easy to receive water also by the arm 30, and the burden to the water receiving plate 14 can be reduced by that much. Furthermore, since the arm 30 is formed in a curved shape, when water from the water supply port 40 comes into contact with the arm 30, it becomes easy to receive water, and the load on the water receiving plate 14 can be reduced accordingly. .

受水空間Waからバケット15内に入れられた水は、排水空間Wbから排水されていく。この場合、排水空間Wbより回転方向に沿う受水空間Waまでの間に亘って複数のバケット15の開口16を覆う第二カバー60が備えられているので、この第二カバー60がない従来に比較して、排水空間Wbを狭めることができ、排水が後側に飛散する事態を防止することができる。また、第二カバー60に設けた衝止板65に排水が衝止するので、排水が後側に飛散する事態を確実に防止することができる。   The water put into the bucket 15 from the water receiving space Wa is drained from the drainage space Wb. In this case, since the second cover 60 covering the openings 16 of the plurality of buckets 15 is provided from the drainage space Wb to the water receiving space Wa along the rotation direction, there is no conventional second cover 60. In comparison, the drainage space Wb can be narrowed, and the situation where the drainage is scattered to the rear side can be prevented. Further, since the drainage stops at the stop plate 65 provided on the second cover 60, it is possible to reliably prevent the situation where the drainage is scattered to the rear side.

尚、上記実施の形態においては、第一カバー50において、対峙板52を側板12の外周縁部17の内面に対峙させて、シール部材80を対峙板52に取り付けたが、必ずしもこれに限定されるものではなく、対峙板52を側板12の外周縁部17の外面に対峙させて、シール部材80を対峙板52に取り付けても良く、適宜変更して差し支えない。またシール部材80の形状や材質も上述したものに限定されるものではなく、例えば、O−リング,クッションゴムで構成する等、適宜変更して差し支えない。   In the above embodiment, in the first cover 50, the facing plate 52 is opposed to the inner surface of the outer peripheral edge portion 17 of the side plate 12, and the seal member 80 is attached to the facing plate 52. However, the present invention is not limited to this. The sealing member 80 may be attached to the facing plate 52 with the facing plate 52 facing the outer surface of the outer peripheral edge portion 17 of the side plate 12, and may be changed as appropriate. Further, the shape and material of the seal member 80 are not limited to those described above, and may be appropriately changed, for example, constituted by an O-ring or cushion rubber.

S 水車装置
1 機台
2 ベース
3 第一支持体
4 第二支持体
10 水車
11 回転軸
12 側板
13 底板
14 水受板
14a 先端
15 バケット
16 開口
17 外周縁部
20 支持フレーム
21 基材
22 円環
23 スポーク
24 固定管
25 軸受部
30 アーム
31 アーム集合体
32 取付け板
40 給水口部
50 第一カバー
51 曲板
52 対峙板
53 先端縁
54 外周面
60 第二カバー
61 曲板
62 対峙板
63 先端縁
65 衝止板
Wa 受水空間
Wb 排水空間
70 クリアランス調整機構
71 突起
72 支持バー
73 固定部材
74 円環体
75 ナット
76 支持ボルト
77 挿通孔
78 支持ナット
79 固定ナット
80 シール部材
81 基部
82 リップ
90 回転機構部
91 台座
92 ベルト伝動機構
93 動力プーリ
S water turbine device 1 machine base 2 base 3 first support 4 second support 10 water wheel 11 rotating shaft 12 side plate 13 bottom plate 14 water receiving plate 14a tip 15 bucket 16 opening 17 outer peripheral edge 20 support frame 21 base material 22 ring 23 Spoke 24 Fixed pipe 25 Bearing portion 30 Arm 31 Arm assembly 32 Mounting plate 40 Water supply port portion 50 First cover 51 Curved plate 52 Opposite plate 53 Tip edge 54 Outer peripheral surface 60 Second cover 61 Curved plate 62 Opposite plate 63 Tip edge 65 Stop plate Wa Receiving space Wb Drainage space 70 Clearance adjusting mechanism 71 Protrusion 72 Support bar 73 Fixing member 74 Toroidal body 75 Nut 76 Support bolt 77 Insertion hole 78 Support nut 79 Fixing nut 80 Seal member 81 Base 82 Lip 90 Rotation Mechanism 91 Pedestal 92 Belt transmission mechanism 93 Power pulley

Claims (17)

機台と、該機台に回転軸を中心に回転自在に設けられ外周に沿って直径方向外方に開口を有した水を受ける複数のバケットを列設して構成される水車と、上側に位置したバケットに向けて水を供給し上記水車を一方向に回転せしめる給水口部と、上記水車のバケットが上記給水口部から水を受けることを可能にする上側の受水空間及び該受水空間で受けた水を排出可能にする下側の排水空間を形成するように、上記受水空間より水車の回転方向に沿う上記排水空間までの間に亘って上記複数のバケットの開口を覆うカバーとを備えた水車装置において、
上記水車の軸方向両側の外周縁部と上記カバーの軸方向両側縁部との間をシールするシール部材を設け、
上記水車を、上記回転軸の軸方向に沿って所定の間隔を隔てて該回転軸に支持され互いに対向する一対の側板と、該側板間に上記回転軸を中心とする円周方向に沿って設けられる底板と、上記側板間であって上記底板の外周に等角度且つ等間隔に設けられる複数の水受板とを備えて構成し、上記側板,底板及び水受板によって複数のバケットを形成し、上記シール部材を、上記側板の外周縁部及び上記カバーの側縁部のいずれか一方に、何れか他方が摺接するように設け、
上記各側板を夫々支持する支持フレームを設け、該支持フレームを、上記回転軸に固定される円盤状の基材と、上記側板の外周縁に対応しパイプを折曲形成した円環と、上記基材と円環との間に架設され放射方向に延びパイプで形成された複数のスポークとを備えて構成したことを特徴とする水車装置。
A water turbine comprising a machine base and a plurality of buckets arranged in the machine base so as to be rotatable about a rotation axis and receiving water having an opening radially outward along the outer periphery; A water supply port for supplying water toward the bucket located and rotating the water wheel in one direction; an upper water receiving space for allowing the bucket of the water wheel to receive water from the water supply port; A cover that covers the openings of the plurality of buckets from the water receiving space to the water discharging space along the rotation direction of the water turbine so as to form a lower water discharging space that allows the water received in the space to be discharged. In a watermill device comprising:
Setting a sealing member to seal between the outer peripheral edge of the axial sides and the axial side edges of the cover of the water wheel,
A pair of side plates that are supported by the rotary shaft at a predetermined interval along the axial direction of the rotary shaft and that face each other, and a circumferential direction around the rotary shaft between the side plates. And a plurality of water receiving plates provided at equal angles and at equal intervals between the side plates and on the outer periphery of the bottom plate, and forming a plurality of buckets by the side plates, the bottom plate, and the water receiving plate. The sealing member is provided so that either one of the outer peripheral edge of the side plate and the side edge of the cover is in sliding contact with the other,
A support frame that supports each of the side plates is provided, the support frame is a disk-shaped base that is fixed to the rotating shaft, a ring that is formed by bending a pipe corresponding to the outer periphery of the side plate, and A watermill device comprising a plurality of spokes that are provided between a base material and an annular ring and extend in a radial direction and formed by pipes .
上記側板を上記支持フレームの内側に固定し、上記水受板をその基端が底板に接合され先端が側板の外周縁部より上記回転軸側に位置するように設け、上記カバーを、上記水車の外周面に沿う曲板と、該カバーの両側縁部を構成し上記曲板から上記回転軸方向に突設されて上記側板の外周縁部の内面に対峙する帯状の一対の対峙板とを備えて構成し、上記シール部材を上記対峙板に取り付けて該シール部材に上記側板の外周縁部の内面が摺接するようにしたことを特徴とする請求項1記載の水車装置。 The side plate is fixed to the inside of the support frame, the water receiving plate is provided such that its base end is joined to the bottom plate and the tip is positioned on the rotating shaft side from the outer peripheral edge of the side plate, and the cover is provided with the water wheel. And a pair of strip-shaped counter plates that form both side edges of the cover and project from the curved plate in the direction of the rotation axis and face the inner surface of the outer peripheral edge of the side plate. 2. The watermill device according to claim 1 , wherein the water turbine device is configured to be provided so that the inner surface of the outer peripheral edge portion of the side plate is slidably contacted to the sealing member by attaching the sealing member to the facing plate. 上記水車の水受板の先端と上記カバーとのクリアランスを調整するクリアランス調整機構を設けたことを特徴とする請求項1または2記載の水車装置。 The water turbine apparatus according to claim 1 or 2 , further comprising a clearance adjusting mechanism for adjusting a clearance between a tip of a water receiving plate of the water wheel and the cover. 上記クリアランス調整機構を、上記カバーの外側にあって上記回転軸方向に沿って延び該カバーが取り付けられる複数の支持バーと、該各支持バーに対応して夫々設けられ該支持バーの両端を上記機台に対して固定可能な一対の固定部材の複数の組と、上記固定部材に設けた支持ボルトと、上記支持バーに形成され上記支持ボルトに挿通される挿通孔と、上記支持バーより固定部材側にあって上記支持ボルトに螺合する支持ナットと、上記支持バーの外側にあって上記支持ボルトに螺合する固定ナットとを備え、上記支持ナットと固定ナットの螺合位置調整によりカバーの位置調整を行うようにしたことを特徴とする請求項3記載の水車装置。 The clearance adjustment mechanism includes a plurality of support bars that extend outside the cover and extend along the direction of the rotation axis, and are attached to the respective support bars. A plurality of sets of a pair of fixing members that can be fixed to the machine base, a support bolt provided on the fixing member, an insertion hole formed in the support bar and inserted through the support bolt, and fixed from the support bar A support nut which is on the member side and is screwed to the support bolt; and a fixing nut which is outside the support bar and is screwed to the support bolt, and is covered by adjusting a screwing position of the support nut and the fixing nut. 4. The watermill device according to claim 3 , wherein the position adjustment is performed. 上記固定部材を、一端が上記機台に固定され他端が上記支持バーが固定される棒状部材で構成し、該棒状部材を上記支持バーに対応させて複数設けるとともに、各棒状部材を上記機台に放射状に配置したことを特徴とする請求項4記載の水車装置。 The fixing member is composed of a rod-shaped member having one end fixed to the machine base and the other end fixed to the support bar. A plurality of the rod-shaped members are provided corresponding to the support bar, and each rod-shaped member is attached to the machine. The watermill device according to claim 4 , wherein the waterwheel device is arranged radially on the table. 機台と、該機台に回転軸を中心に回転自在に設けられ外周に沿って直径方向外方に開口を有した水を受ける複数のバケットを列設して構成される水車と、上側に位置したバケットに向けて水を供給し上記水車を一方向に回転せしめる給水口部と、上記水車のバケットが上記給水口部から水を受けることを可能にする上側の受水空間及び該受水空間で受けた水を排出可能にする下側の排水空間を形成するように、上記受水空間より水車の回転方向に沿う上記排水空間までの間に亘って上記複数のバケットの開口を覆うカバーとを備えた水車装置において、  A water turbine comprising a machine base and a plurality of buckets arranged in the machine base so as to be rotatable about a rotation axis and receiving water having an opening radially outward along the outer periphery; A water supply port for supplying water toward the bucket located and rotating the water wheel in one direction; an upper water receiving space for allowing the bucket of the water wheel to receive water from the water supply port; A cover that covers the openings of the plurality of buckets from the water receiving space to the water discharging space along the rotation direction of the water turbine so as to form a lower water discharging space that allows the water received in the space to be discharged. In a watermill device comprising:
上記水車の軸方向両側の外周縁部と上記カバーの軸方向両側縁部との間をシールするシール部材を設け、  A seal member is provided for sealing between the outer peripheral edge portions on both sides in the axial direction of the water wheel and both side edges in the axial direction of the cover,
上記水車を、上記回転軸の軸方向に沿って所定の間隔を隔てて該回転軸に支持され互いに対向する一対の側板と、該側板間に上記回転軸を中心とする円周方向に沿って設けられる底板と、上記側板間であって上記底板の外周に等角度且つ等間隔に設けられる複数の水受板とを備えて構成し、上記側板,底板及び水受板によって複数のバケットを形成し、上記シール部材を、上記側板の外周縁部及び上記カバーの側縁部のいずれか一方に、何れか他方が摺接するように設け、  A pair of side plates that are supported by the rotary shaft at a predetermined interval along the axial direction of the rotary shaft and that face each other, and a circumferential direction around the rotary shaft between the side plates. And a plurality of water receiving plates provided at equal angles and at equal intervals between the side plates and on the outer periphery of the bottom plate, and forming a plurality of buckets by the side plates, the bottom plate, and the water receiving plate. The sealing member is provided so that either one of the outer peripheral edge of the side plate and the side edge of the cover is in sliding contact with the other,
上記水車の水受板の先端と上記カバーとのクリアランスを調整するクリアランス調整機構を設け、  A clearance adjustment mechanism for adjusting the clearance between the tip of the water receiving plate of the water wheel and the cover is provided,
上記クリアランス調整機構を、上記カバーの外側にあって上記回転軸方向に沿って延び該カバーが取り付けられる複数の支持バーと、該各支持バーに対応して夫々設けられ該支持バーの両端を上記機台に対して固定可能な一対の固定部材の複数の組と、上記固定部材に設けた支持ボルトと、上記支持バーに形成され上記支持ボルトに挿通される挿通孔と、上記支持バーより固定部材側にあって上記支持ボルトに螺合する支持ナットと、上記支持バーの外側にあって上記支持ボルトに螺合する固定ナットとを備え、上記支持ナットと固定ナットの螺合位置調整によりカバーの位置調整を行うようにしたことを特徴とする水車装置。  The clearance adjustment mechanism includes a plurality of support bars that extend outside the cover and extend along the direction of the rotation axis, and are attached to the respective support bars. A plurality of sets of a pair of fixing members that can be fixed to the machine base, a support bolt provided on the fixing member, an insertion hole formed in the support bar and inserted through the support bolt, and fixed from the support bar A support nut which is on the member side and is screwed to the support bolt; and a fixing nut which is outside the support bar and is screwed to the support bolt, and is covered by adjusting a screwing position of the support nut and the fixing nut. A watermill device characterized by adjusting the position of the turbine.
上記固定部材を、一端が上記機台に固定され他端が上記支持バーが固定される棒状部材で構成し、該棒状部材を上記支持バーに対応させて複数設けるとともに、各棒状部材を上記機台に放射状に配置したことを特徴とする請求項6記載の水車装置。  The fixing member is composed of a rod-shaped member having one end fixed to the machine base and the other end fixed to the support bar. A plurality of the rod-shaped members are provided corresponding to the support bar, and each rod-shaped member is attached to the machine. The watermill device according to claim 6, wherein the watermill device is arranged radially on the table. 上記隣接する水受板間に、アームを架設したことを特徴とする請求項1乃至7何れかに記載の水車装置。 The watermill device according to any one of claims 1 to 7 , wherein an arm is installed between the adjacent water receiving plates. 上記アームを、上記回転軸の軸方向に沿って複数列設したことを特徴とする請求項8記載の水車装置。 9. The water turbine apparatus according to claim 8 , wherein a plurality of the arms are arranged along the axial direction of the rotating shaft. 上記アームを、回転方向上流側が凹になるように湾曲形成したことを特徴とする請求項8または9記載の水車装置。 The watermill device according to claim 8 or 9 , wherein the arm is curved so that the upstream side in the rotational direction is concave. 機台と、該機台に回転軸を中心に回転自在に設けられ外周に沿って直径方向外方に開口を有した水を受ける複数のバケットを列設して構成される水車と、上側に位置したバケットに向けて水を供給し上記水車を一方向に回転せしめる給水口部と、上記水車のバケットが上記給水口部から水を受けることを可能にする上側の受水空間及び該受水空間で受けた水を排出可能にする下側の排水空間を形成するように、上記受水空間より水車の回転方向に沿う上記排水空間までの間に亘って上記複数のバケットの開口を覆うカバーとを備えた水車装置において、  A water turbine comprising a machine base and a plurality of buckets arranged in the machine base so as to be rotatable about a rotation axis and receiving water having an opening radially outward along the outer periphery; A water supply port for supplying water toward the bucket located and rotating the water wheel in one direction; an upper water receiving space for allowing the bucket of the water wheel to receive water from the water supply port; A cover that covers the openings of the plurality of buckets from the water receiving space to the water discharging space along the rotation direction of the water turbine so as to form a lower water discharging space that allows the water received in the space to be discharged. In a watermill device comprising:
上記水車の軸方向両側の外周縁部と上記カバーの軸方向両側縁部との間をシールするシール部材を設け、  A seal member is provided for sealing between the outer peripheral edge portions on both sides in the axial direction of the water wheel and both side edges in the axial direction of the cover,
上記水車を、上記回転軸の軸方向に沿って所定の間隔を隔てて該回転軸に支持され互いに対向する一対の側板と、該側板間に上記回転軸を中心とする円周方向に沿って設けられる底板と、上記側板間であって上記底板の外周に等角度且つ等間隔に設けられる複数の水受板とを備えて構成し、上記側板,底板及び水受板によって複数のバケットを形成し、上記シール部材を、上記側板の外周縁部及び上記カバーの側縁部のいずれか一方に、何れか他方が摺接するように設け、  A pair of side plates that are supported by the rotary shaft at a predetermined interval along the axial direction of the rotary shaft and that face each other, and a circumferential direction around the rotary shaft between the side plates. And a plurality of water receiving plates provided at equal angles and at equal intervals between the side plates and on the outer periphery of the bottom plate, and forming a plurality of buckets by the side plates, the bottom plate, and the water receiving plate. The sealing member is provided so that either one of the outer peripheral edge of the side plate and the side edge of the cover is in sliding contact with the other,
上記隣接する水受板間に、アームを架設したことを特徴とする水車装置。  A watermill device, wherein an arm is installed between the adjacent water receiving plates.
上記アームを、上記回転軸の軸方向に沿って複数列設したことを特徴とする請求項11記載の水車装置。  12. The watermill device according to claim 11, wherein a plurality of the arms are arranged along the axial direction of the rotating shaft. 上記アームを、回転方向上流側が凹になるように湾曲形成したことを特徴とする請求項11または12記載の水車装置。  13. The watermill device according to claim 11 or 12, wherein the arm is curved so that the upstream side in the rotational direction is concave. 上記カバーを、上記水車の外周面に沿う曲板と、該カバーの両側縁部を構成し上記曲板から上記回転軸方向に突設されて上記側板の外周縁部に対峙する帯状の一対の対峙板とを備えて構成し、上記シール部材を上記対峙板に取り付けて該シール部材に上記側板の外周縁部が摺接するようにしたことを特徴とする請求項1乃至13何れかに記載の水車装置。 The cover includes a curved plate along the outer peripheral surface of the water wheel, and a pair of belt-shaped pairs that form both side edges of the cover and project from the curved plate in the direction of the rotation axis and face the outer peripheral edge of the side plate. constituted by a facing plate, the seal member according to any one of claims 1 to 13 the outer peripheral edge portion of the side plate to the seal member attached to the facing plate, characterized in that the sliding contact with Watermill equipment. 上記水受板を、回転方向上流側が凹になるように湾曲形成したことを特徴とする請求項1乃至14何れかに記載の水車装置。 The watermill device according to any one of claims 1 to 14 , wherein the water receiving plate is curved so that the upstream side in the rotation direction is concave. 上記排水空間より回転方向に沿う上記受水空間までの間に亘って上記複数のバケットの開口を覆う別のカバーを備えて構成したことを特徴とする請求項1乃至15何れかに記載の水車装置。 The water turbine according to any one of claims 1 to 15 , further comprising another cover that covers the openings of the plurality of buckets from the drainage space to the water receiving space along the rotation direction. apparatus. 上記別のカバーの排水空間側の端部に該排水空間に排水される水が衝止する衝止板を突設したことを特徴とする請求項16記載の水車装置。 17. A watermill device according to claim 16, wherein a stop plate for stopping water drained into the drainage space is provided at an end of the other cover on the drainage space side.
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