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JP2008149746A - Contra-rotating propeller device for ship - Google Patents

Contra-rotating propeller device for ship Download PDF

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Publication number
JP2008149746A
JP2008149746A JP2006336731A JP2006336731A JP2008149746A JP 2008149746 A JP2008149746 A JP 2008149746A JP 2006336731 A JP2006336731 A JP 2006336731A JP 2006336731 A JP2006336731 A JP 2006336731A JP 2008149746 A JP2008149746 A JP 2008149746A
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Prior art keywords
propeller
nozzle
reverse
contra
rotating propeller
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JP2006336731A
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Japanese (ja)
Inventor
Minoru Nakajima
稔 中島
Taido Sakae
泰道 栄
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Nakashima Propeller Co Ltd
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Nakashima Propeller Co Ltd
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Priority to JP2006336731A priority Critical patent/JP2008149746A/en
Publication of JP2008149746A publication Critical patent/JP2008149746A/en
Pending legal-status Critical Current

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Abstract

<P>PROBLEM TO BE SOLVED: To prevent diffusion of stream current generated by a front propeller, and to make it act on a rear propeller efficiently in a contra-rotating propeller. <P>SOLUTION: In this contra-rotating propeller device for a ship, a normal rotation propeller 1 is attached to a stern, and a reversing propeller 2 is attached by hanging a pod 7 in the rear of the normal rotation propeller. The periphery of the normal rotation propeller is surrounded by a nozzle 10 fixed in a ship's hull. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、正逆転するプロペラを相対峙させた舶用二重反転プロペラ装置に関するものである。   The present invention relates to a marine contra-rotating propeller device in which propellers that rotate in the forward and reverse directions are opposed to each other.

船舶のプロペラ装置として、第一プロペラの後方にこれと逆回転する(ピッチも逆方向に付けられている)第二プロペラを配した二重反転プロペラ装置がある。船舶のプロペラ後流には並進成分と回転成分とがあることから、推進に寄与しない回転成分を第二プロペラの回転エネルギーに取り込もうとするものであり、エネルギー効率の向上を図ったものである。   As a propeller device of a ship, there is a contra-rotating propeller device in which a second propeller that rotates in reverse (the pitch is also attached in the reverse direction) behind the first propeller is arranged. Since the ship propeller wake has a translational component and a rotational component, the rotational component that does not contribute to propulsion is to be taken into the rotational energy of the second propeller, thereby improving the energy efficiency.

この場合、各々のプロペラの駆動軸を正逆回転する二重軸構造としているものが多いが、これによると、構造が複雑になるとともに、周速が二倍に増速されることによって軸受やシールの条件が苛酷になり、耐久性に問題があった。このため、正転(第一)プロペラは通常の駆動軸で駆動し、逆転(第二)プロペラはストラットでポッドを吊り下げ、ポッド内に設けた駆動軸によって駆動する別駆動形式の二重反転プロペラがある(例えば、特許文献1)。   In this case, many propeller drive shafts have a double-shaft structure in which the drive shaft rotates forward and reverse. According to this, the structure becomes complicated and the peripheral speed is doubled to increase the bearing speed. Sealing conditions became severe and there was a problem with durability. For this reason, the forward (first) propeller is driven by a normal drive shaft, and the reverse (second) propeller is suspended by a strut and the pod is driven by a drive shaft provided in the pod. There is a propeller (for example, Patent Document 1).

しかし、互いのプロペラの軸端側にはキャップを取り付ける必要があることから、それぞれのキャップが二つのプロペラ間に存在し、これがために相互のプロペラを必要なだけ接近させられないという問題がある。二つのプロペラ間隔が離れていると、前方のプロペラで加速されたプロペラ後流が拡散してしまい、後方のプロペラへ十分な影響を与えることができない。
特開平6−56082号公報
However, since it is necessary to attach caps to the shaft end sides of each other's propellers, each cap exists between the two propellers, which causes the problem that the mutual propellers cannot be brought as close as necessary. . When the distance between the two propellers is separated, the wake behind the propeller accelerated by the front propeller diffuses, and the rear propeller cannot be sufficiently affected.
JP-A-6-56082

本発明は、以上の課題を解決するものであり、二つのプロペラが離れている場合であっても、前方のプロペラで発生したプロペラ後流の拡散を防ぎ、後方のプロペラへ十分に影響を与えることができるようにしたものである。   The present invention solves the above-mentioned problems, and even when the two propellers are separated from each other, the diffusion of the propeller wake generated by the front propeller is prevented and the rear propeller is sufficiently affected. It is something that can be done.

以上の課題の下、本発明は、請求項1に記載した、船尾に正転プロペラを取り付け、正転プロペラの後方にポッドを吊架して逆転プロペラを取り付けた舶用二重反転プロペラ装置において、正転プロペラの外周を船体に固定されるノズルで囲包したことを特徴とする舶用二重反転プロペラ装置を提供したものである。   Under the above problems, the present invention provides a marine contra-rotating propeller device according to claim 1, wherein a forward propeller is attached to the stern, a pod is suspended behind the forward propeller, and a reverse propeller is attached. A marine contra-rotating propeller device is provided in which an outer periphery of a normal propeller is surrounded by a nozzle fixed to a hull.

また、本発明は、以上において、請求項2に記載した、ノズルの断面が内周を流線型にしている構成、請求項3に記載した、ノズルの内径が後方に行くほど絞られている構成、請求項4に記載した、逆転プロペラの翼の外径が正転プロペラの翼の外径と同じか小さい構成、請求項5に記載した、ノズルの後端が逆転プロペラの前方で止まっている構成、請求項6に記載した、ノズルの後端が逆転プロペラの外周まで延長されている構成を提供する。   In addition, the present invention has a configuration in which the cross section of the nozzle described in claim 2 has a streamlined inner periphery, and a configuration in which the inner diameter of the nozzle is narrowed toward the rear, according to claim 3, A configuration in which the outer diameter of the blade of the reverse propeller described in claim 4 is equal to or smaller than the outer diameter of the blade of the forward propeller, and a configuration in which the rear end of the nozzle is stopped in front of the reverse propeller. The rear end of the nozzle according to claim 6 is extended to the outer periphery of the reversing propeller.

本発明によると、別駆動系をとるが故に前後のプロペラをある程度離さなければならない場合であっても、前方のプロペラの外周にノズルが存在することによってこのプロペラで加速された水流(回転成分)が拡散するのが抑制されて後方のプロペラに作用するから、エネルギー損失が少ない。また、ノズルは、流漂物からプロペラを保護するガードの役割も果たす。さらに、ノズルは、プロペラ水流が直接船底を叩いて振動を起こすのを抑制するから、プロペラと船底とを接近させることができ(従来であれば、翼の外径の25%以上離す必要がある)、船体容積の増大、座礁の防止に寄与する。   According to the present invention, even if the front and rear propellers must be separated to some extent because of the use of separate drive systems, the water flow (rotational component) accelerated by the propeller due to the presence of the nozzle on the outer periphery of the front propeller Is prevented from diffusing and acts on the rear propeller, so there is little energy loss. The nozzle also serves as a guard that protects the propeller from drifting objects. Furthermore, since the nozzle prevents the propeller water stream from directly hitting the bottom of the vessel and causing vibration, the propeller and the bottom of the vessel can be brought close to each other. ), Increase hull volume and prevent grounding.

以下、本発明の実施の形態を図面を参照して説明するが、図1は船舶の船尾部分の要部一部断面側面図である。本発明に係る二重反転プロペラ装置は、進行方向前方に設置される正転プロペラ1と、その後方に設置される逆転プロペラ2とからなる。正転プロペラ1は、船尾3に突出して強制駆動される駆動軸4に取り付けられるボス1aから複数の翼1bが突出しているものである。そして、ボス1aの後方には駆動軸4の後端を覆うキャップ5が取り付けられている。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. FIG. 1 is a partial sectional side view of a main part of a stern portion of a ship. The contra-rotating propeller device according to the present invention includes a forward propeller 1 installed in front of the traveling direction and a reverse propeller 2 installed in the rear thereof. The forward propeller 1 has a plurality of blades 1b protruding from a boss 1a attached to a drive shaft 4 that protrudes toward the stern 3 and is forcibly driven. A cap 5 that covers the rear end of the drive shaft 4 is attached to the rear of the boss 1a.

逆転プロペラ2も、ボス2aから複数の翼2bが突出したものであり、正転プロペラ1の後方の船底6からポッド7を吊架するストラット8を下延するとともに、ポッド7の中に駆動軸(図示省略)を軸装し、この駆動軸に逆転プロペラ2をポッド7の前方に位置させて取り付けたものである。また、正転プロペラ1と同様にボス2aの前端にはキャップ9が取り付けられている。なお、駆動軸への動力伝達は、船内からストラット8を通してベベル機構等で導いている。   The reverse propeller 2 also has a plurality of wings 2 b protruding from the boss 2 a, extends a strut 8 that suspends the pod 7 from the bottom 6 of the rear side of the forward propeller 1, and drives a drive shaft into the pod 7. (Not shown) is mounted on the shaft, and the reverse propeller 2 is attached to the drive shaft in front of the pod 7. Similarly to the forward propeller 1, a cap 9 is attached to the front end of the boss 2a. The power transmission to the drive shaft is guided by a bevel mechanism or the like from the ship through the strut 8.

本例では、正転プロペラ1と逆転プロペラ2の芯は一致させてあり、その間隔はキャップ5、9同士が干渉しない範囲で接近させてある。また、逆転プロペラ2の翼2bの外径は、正転プロペラ1の翼1bの外径よりも小さくしてある。   In this example, the cores of the forward propeller 1 and the reverse propeller 2 are made to coincide with each other, and the distance between them is close as long as the caps 5 and 9 do not interfere with each other. Further, the outer diameter of the blade 2 b of the reverse propeller 2 is smaller than the outer diameter of the blade 1 b of the forward propeller 1.

本発明は、正転プロペラ1の外周にノズル10を取り付けたものである。このノズル10は、船底6や船尾3からステー12を延ばして取り付けており、少なくとも、正転プロペラ1の外周(翼1bの外周)を囲包している。このときのノズル10の内径と正転プロペラ1の翼1bの外周との間隙は、翼1bの外径の0.5〜5%程度にして正転プロペラ1の後流が拡散するのを抑制している。さらに、ノズル10の断面は、内周が流線型になるようにしており、水流が滑らかに入って来るようにしている。   In the present invention, a nozzle 10 is attached to the outer periphery of a normal propeller 1. The nozzle 10 is attached by extending a stay 12 from the bottom 6 or the stern 3 and surrounds at least the outer periphery of the forward propeller 1 (the outer periphery of the wing 1b). At this time, the gap between the inner diameter of the nozzle 10 and the outer periphery of the blade 1b of the forward propeller 1 is set to about 0.5 to 5% of the outer diameter of the blade 1b, thereby suppressing the wake of the forward propeller 1 from diffusing. is doing. Furthermore, the cross-section of the nozzle 10 is such that the inner periphery is streamlined so that the water flow enters smoothly.

ノズル10と正転プロペラ1との前後位置は、ノズル10の先端は、少なくとも、ボス1aの前端よりは前方に位置させ、ノズル10内に入って来た水流を正転プロペラ1で攪拌するようにしている。一方、後端は、キャップ5までのこともあるし、図2、図3の要部一部断面側面図で示されるように逆転プロペラ2のボス2aの前端位のこともあれば、翼2bにかかる位まで延長される場合もある。なお、後者の場合、ノズル10の内周径は、後方に行くほど絞るのが好ましい。正転プロペラ1の後流を絞って逆転プロペラ2に効果的に作用させるためである。   The front and rear positions of the nozzle 10 and the forward propeller 1 are such that the tip of the nozzle 10 is positioned at least in front of the front end of the boss 1a, and the water flow that has entered the nozzle 10 is stirred by the forward propeller 1. I have to. On the other hand, the rear end may be up to the cap 5, or may be the front end position of the boss 2a of the reverse propeller 2 as shown in the partial cross-sectional side view of the main part of FIGS. In some cases, it may be extended to the extent that it takes. In the latter case, it is preferable that the inner peripheral diameter of the nozzle 10 is reduced toward the rear. This is because the downstream propeller 1 is squeezed to effectively act on the reverse propeller 2.

ところで、以上のノズル10は船体抵抗を増大させることは否めないから、本発明が適用される船舶は、タンカー、バルクキャリアといった中、低速船が適している。これらの船舶は船型が肥えた形状をしていることから、プロペラに流れ込む水流は角度によって変動が大きく、プロペラ効率を下げる。しかし、このノズル10は、これら水流の変動を少なくしてプロペラ効率を高める効果があり、この意味で、拡散防止と二重の効果が期待できる。   By the way, since it cannot be denied that the above nozzle 10 increases hull resistance, the low speed ship is suitable for the ship to which this invention is applied, such as a tanker and a bulk carrier. Since these ships have a fertile shape, the flow of water flowing into the propeller varies greatly depending on the angle, reducing the propeller efficiency. However, the nozzle 10 has an effect of increasing the propeller efficiency by reducing the fluctuation of the water flow, and in this sense, a double effect can be expected.

以上は本発明の基本的な形態であるが、その周辺の形態には、正転プロペラ1と逆転プロペラ2の芯を違えている場合もあれば、回転径を同じにしている場合もある。また、正転プロペラ1、逆転プロペラ2ともに固定ピッチのものもあれば、可変ピッチのものもある。さらに、ポッド7の中に直接モータを仕込み、その出力軸に逆転プロペラ2を取り付けているものもある。この他、ストラット8は回転できるものもあり、これで舵を代用しているものもあれば、ストラット8を固定して別途に舵を設けているものもある。さらに、ポッド7の後方に逆転プロペラ2を取り付けることもある。   Although the above is a basic form of the present invention, the peripheral propeller 1 and the reverse propeller 2 may have different cores or may have the same rotation diameter. Further, both the forward propeller 1 and the reverse propeller 2 have a fixed pitch, and some have a variable pitch. Furthermore, there is a pod 7 in which a motor is directly charged and the reverse propeller 2 is attached to the output shaft. In addition, there are some that can rotate the strut 8, and there are some that use the rudder instead of this, and other that the strut 8 is fixed and the rudder is provided separately. Further, the reverse propeller 2 may be attached to the rear of the pod 7.

本発明を示す船尾部分の要部の一部断面側面図である。It is a partial cross section side view of the principal part of the stern part which shows this invention. ノズルの変形例を示す一部断面断面側面図である。It is a partial cross section side view which shows the modification of a nozzle. ノズルの変形例を示す一部断面断面側面図である。It is a partial cross section side view which shows the modification of a nozzle.

符号の説明Explanation of symbols

1 正転プロペラ
1a 〃 のボス
1b 〃 の翼
2 逆転プロペラ
2a 〃 のボス
2b 〃 の翼
3 船尾
4 駆動軸
5 正転プロペラのキャップ
6 船底
7 ポッド
8 ストラット
9 逆転プロペラのキャップ
10 ノズル
11 ステー
DESCRIPTION OF SYMBOLS 1 Forward propeller 1a Boss 1b Wings 2 Reverse propeller 2a Boss 2b Wings 3 Stern 4 Drive shaft 5 Cap for forward propeller 6 Bottom 7 Pod 8 Strut 9 Reverse propeller cap 10 Nozzle 11 Stay

Claims (6)

船尾に正転プロペラを取り付け、正転プロペラの後方にポッドを吊架して逆転プロペラを取り付けた舶用二重反転プロペラ装置において、正転プロペラの外周を船体に固定されるノズルで囲包したことを特徴とする舶用二重反転プロペラ装置。   A marine counter-rotating propeller device in which a forward propeller is attached to the stern, a pod is suspended behind the forward propeller, and a reverse propeller is attached. The outer periphery of the forward propeller is surrounded by a nozzle fixed to the hull. A marine contra-rotating propeller device. ノズルの断面が内周を流線型にしている請求項1の舶用二重反転プロペラ装置。   The marine contra-rotating propeller device according to claim 1, wherein the cross section of the nozzle has a streamlined inner periphery. ノズルの内径が後方に行くほど絞られている請求項1又は2の舶用二重反転プロペラ装置。   The marine counter rotating propeller device according to claim 1 or 2, wherein the inner diameter of the nozzle is reduced toward the rear. 逆転プロペラの翼の外径が正転プロペラの翼の外径と同じか小さい請求項1〜3いずれかの舶用二重反転プロペラ装置。   The marine counter rotating propeller device according to any one of claims 1 to 3, wherein the outer diameter of the blade of the reverse propeller is equal to or smaller than the outer diameter of the blade of the forward propeller. ノズルの後端が逆転プロペラの前方で止まっている請求項1〜4いずれかの舶用二重反転プロペラ装置。   The marine counter rotating propeller device according to any one of claims 1 to 4, wherein a rear end of the nozzle is stopped in front of the counter rotating propeller. ノズルの後端が逆転プロペラの外周まで延長されている請求項1〜4いずれかの舶用二重反転プロペラ装置。   The marine counter rotating propeller device according to any one of claims 1 to 4, wherein a rear end of the nozzle extends to an outer periphery of the counter rotating propeller.
JP2006336731A 2006-12-14 2006-12-14 Contra-rotating propeller device for ship Pending JP2008149746A (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010254293A (en) * 2009-04-01 2010-11-11 Niigata Power Systems Co Ltd Marine propulsion device
JP2012096767A (en) * 2010-11-05 2012-05-24 Niigata Power Systems Co Ltd Marine propulsion device
KR101245734B1 (en) * 2010-11-11 2013-03-25 삼성중공업 주식회사 Counter rotating azimuth propulsion divice and ship having the same
KR101245735B1 (en) * 2010-11-12 2013-03-25 삼성중공업 주식회사 Counter rotating propulsion azimuth thruster and ship having the same
WO2017158204A1 (en) * 2016-03-18 2017-09-21 Rolls-Royce Marine As Steerable contra-rotating propulsion system

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58156492A (en) * 1982-03-02 1983-09-17 ライセンテイア・パテント−フエルヴアルトウンクス−ゲゼルシヤフト・ミツト・ベシユレンクテル・ハフトウンク Marine propeller with main propeller and additional propeller
JPS62273194A (en) * 1986-04-29 1987-11-27 ホ−ルミング・オ−・ワイ Propeller device for ship
JPS6369698A (en) * 1986-09-11 1988-03-29 キヤノン株式会社 Picture reader
JP2004306947A (en) * 2003-04-07 2004-11-04 Waertsilae Finland Oy Hull propulsive unit
JP2006510532A (en) * 2002-12-20 2006-03-30 エービービー・オーワイ Propulsion system layout

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58156492A (en) * 1982-03-02 1983-09-17 ライセンテイア・パテント−フエルヴアルトウンクス−ゲゼルシヤフト・ミツト・ベシユレンクテル・ハフトウンク Marine propeller with main propeller and additional propeller
JPS62273194A (en) * 1986-04-29 1987-11-27 ホ−ルミング・オ−・ワイ Propeller device for ship
JPS6369698A (en) * 1986-09-11 1988-03-29 キヤノン株式会社 Picture reader
JP2006510532A (en) * 2002-12-20 2006-03-30 エービービー・オーワイ Propulsion system layout
JP2004306947A (en) * 2003-04-07 2004-11-04 Waertsilae Finland Oy Hull propulsive unit

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010254293A (en) * 2009-04-01 2010-11-11 Niigata Power Systems Co Ltd Marine propulsion device
JP2012096767A (en) * 2010-11-05 2012-05-24 Niigata Power Systems Co Ltd Marine propulsion device
KR101245734B1 (en) * 2010-11-11 2013-03-25 삼성중공업 주식회사 Counter rotating azimuth propulsion divice and ship having the same
KR101245735B1 (en) * 2010-11-12 2013-03-25 삼성중공업 주식회사 Counter rotating propulsion azimuth thruster and ship having the same
WO2017158204A1 (en) * 2016-03-18 2017-09-21 Rolls-Royce Marine As Steerable contra-rotating propulsion system

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