TWI756048B - Hydraulic control system of ship stabilizer - Google Patents

Hydraulic control system of ship stabilizer Download PDF

Info

Publication number
TWI756048B
TWI756048B TW110104757A TW110104757A TWI756048B TW I756048 B TWI756048 B TW I756048B TW 110104757 A TW110104757 A TW 110104757A TW 110104757 A TW110104757 A TW 110104757A TW I756048 B TWI756048 B TW I756048B
Authority
TW
Taiwan
Prior art keywords
oil
hydraulic
hydraulic cylinder
control system
stabilizer
Prior art date
Application number
TW110104757A
Other languages
Chinese (zh)
Other versions
TW202231541A (en
Inventor
印皖金
陳順展
崔靜觀
顏宗源
Original Assignee
協聚德股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 協聚德股份有限公司 filed Critical 協聚德股份有限公司
Priority to TW110104757A priority Critical patent/TWI756048B/en
Application granted granted Critical
Publication of TWI756048B publication Critical patent/TWI756048B/en
Publication of TW202231541A publication Critical patent/TW202231541A/en

Links

Images

Abstract

A hydraulic control system of ship stabilizer is used to solve a problem of many cost, large and heavy apparatus of the conventional hydraulic control system. The hydraulic control system includes two power modules and two hydraulic transmission modules. Each power module includes a hydraulic pump connected to a proportional valve. The hydraulic pump outputs oil and the proportional valve control switch and flow adjustment of two output port of the hydraulic pump. Each hydraulic transmission module includes a self-use valve has two pipelines, a first hydraulic cylinder and a second hydraulic cylinder. The two pipelines respectively connect to the first hydraulic cylinder and the second hydraulic cylinder. The first hydraulic cylinder and the second hydraulic cylinder respectively connect to upper and lower ends of a stabilizer.

Description

船舶穩定翼之油壓控制系統 Oil Pressure Control System for Ship Stabilizers

本發明係關於一種船舶運輸裝置,尤其是一種減少設備體積、重量並節省驅動耗能的船舶穩定翼之油壓控制系統。 The invention relates to a ship transportation device, in particular to an oil pressure control system for a ship stabilizer that reduces the volume and weight of the equipment and saves driving energy consumption.

船舶航行於海上難免受到風浪影響而產生擺盪,尤其是船舷的受力面積大,且反覆來回擺盪可能疊加搖晃的力量,使船舶的橫搖幅度最大,而干擾船員的工作及降低航行舒適性,當橫搖情況嚴重時,會造成船隻損壞甚至傾斜側翻。因此,船舶需要安裝減搖裝置,在船舷遭受風浪衝擊時,減搖裝置可以產生反向力矩以平衡風浪的作用力,達到減輕橫搖影響的作用,常見的減搖裝置有舭龍骨、平衡水艙、穩定翼、減搖陀螺儀等,其中,穩定翼係可以主動調整減搖力矩的大小及方向,以對應即時的風浪狀況,使穩定翼成為船舶普遍使用且減搖效果良好的減搖裝置。 Ships sailing at sea are inevitably affected by wind and waves and sway, especially the large force area of the ship's side, and the repeated back and forth swinging may superimpose the shaking force, making the ship roll the largest, disturbing the crew's work and reducing sailing comfort. When the rolling situation is severe, it can cause damage to the boat or even tip over. Therefore, ships need to install anti-rolling devices. When the ship's side is impacted by wind and waves, the anti-rolling device can generate a reverse moment to balance the force of wind and waves, so as to reduce the effect of rolling. Common anti-rolling devices include bilge keel, balance water Cabin, stabilizer, anti-rolling gyroscope, etc. Among them, the stabilizer system can actively adjust the magnitude and direction of the anti-rolling moment to correspond to the real-time wind and wave conditions, making the stabilizer a widely used anti-rolling device for ships with good anti-rolling effect. .

將成對的穩定翼展開於水線下並分別位於船舶兩舷的對稱位置,船舶在行進過程中,偏轉該二穩定翼形成相反之攻角,使水流分別對該二穩定翼施加正、負升力,而分別作用於船身兩側的相反升力係合成一力矩平衡側搖。惟,習知的船舶穩定翼係透過電機控制及油壓傳動改變攻角,以調整減搖力矩的大小及方向,主要利用可變轉速及轉向的伺服馬達提供油壓動力及選擇油路,在航行過程中伺服馬達必須能夠即時調整運轉速度及方向,係導致伺服馬達的運轉耗能高及容易損壞,且使用伺服馬達的設備成本高, 又,習知閥控液壓系統用油量多還需要大型油箱、冷卻器、過濾器等裝置,係導致設備維護保養困難,且佔用船舶空間及降低載重上限。 The pair of stabilizers are deployed under the waterline and located at symmetrical positions on both sides of the ship. During the course of the ship, the two stabilizers are deflected to form opposite angles of attack, so that the water current exerts positive and negative effects on the two stabilizers respectively. Lift, and the opposite lift acting on both sides of the hull is combined into a moment to balance the roll. However, the conventional ship stabilizer system changes the angle of attack through motor control and hydraulic transmission to adjust the magnitude and direction of the anti-rolling moment, and mainly uses the variable speed and steering servo motor to provide hydraulic power and select the oil circuit. During sailing, the servo motor must be able to adjust the speed and direction in real time, which results in high energy consumption and easy damage to the servo motor, and the cost of the equipment using the servo motor is high. In addition, the conventional valve-controlled hydraulic system consumes a lot of oil and requires large fuel tanks, coolers, filters and other devices, which makes equipment maintenance difficult, takes up space on the ship, and reduces the upper limit of the load.

有鑑於此,習知的船舶穩定翼之油壓控制系統確實仍有加以改善之必要。 In view of this, it is still necessary to improve the oil pressure control system of the conventional ship stabilizer.

為解決上述問題,本發明的目的是提供一種船舶穩定翼之油壓控制系統,係可以降低系統造價且提升妥善率。 In order to solve the above problems, the purpose of the present invention is to provide an oil pressure control system for a ship stabilizer, which can reduce the cost of the system and improve the availability.

本發明的次一目的是提供一種船舶穩定翼之油壓控制系統,係可以縮小油箱體積及省略冷卻器、過濾器等裝置。 Another object of the present invention is to provide an oil pressure control system for a ship stabilizer, which can reduce the volume of the oil tank and omit devices such as coolers and filters.

本發明的又一目的是提供一種船舶穩定翼之油壓控制系統,係可以提高能源利用率。 Another object of the present invention is to provide an oil pressure control system for a ship stabilizer, which can improve energy utilization.

本發明的再一目的是提供一種船舶穩定翼之油壓控制系統,係可以平衡兩翼受力並減緩橫搖情形。 Another object of the present invention is to provide an oil pressure control system for a ship stabilizer, which can balance the forces on the two wings and reduce the rolling situation.

本發明全文所述方向性或其近似用語,例如「前」、「後」、「上(頂)」、「下(底)」、「側面」等,主要係參考附加圖式的方向,各方向性或其近似用語僅用以輔助說明及理解本發明的各實施例,非用以限制本發明。 The directionality or its similar terms, such as "front", "rear", "top (top)", "bottom (bottom)", "side", etc., are mainly referred to the directions of the attached drawings. The directional or similar terms are only used to assist the description and understanding of the various embodiments of the present invention, and are not used to limit the present invention.

本發明全文所記載的元件及構件使用「一」或「一個」之量詞,僅是為了方便使用且提供本發明範圍的通常意義;於本發明中應被解讀為包括一個或至少一個,且單一的概念也包括複數的情況,除非其明顯意指其他意思。 The use of the quantifier "a" or "an" for the elements and components described throughout the present invention is only for convenience and provides a general meaning of the scope of the present invention; in the present invention, it should be construed as including one or at least one, and a single The concept of also includes the plural case unless it is obvious that it means otherwise.

本發明全文所述「結合」、「組合」或「組裝」等近似用語,主要包含連接後仍可不破壞構件地分離,或是連接後使構件不可分離等型態, 係本領域中具有通常知識者可以依據欲相連之構件材質或組裝需求予以選擇者。 Similar terms such as "combined", "combined" or "assembled" mentioned in the full text of the present invention mainly include the components that can be separated without destroying the components after being connected, or the components that cannot be separated after being connected. Those with ordinary knowledge in the art can choose according to the material of the components to be connected or the assembly requirements.

本發明的船舶穩定翼之油壓控制系統,包含:二動力模組,各該動力模組具有一油壓泵及一比例閥,該比例閥連接該油壓泵,該油壓泵加壓輸出油液,該比例閥控制該油壓泵之二輸出口的開關及調整流量;及二油壓傳動模組,各該油壓傳動模組具有一自用閥、一第一油壓缸及一第二油壓缸,該自用閥之二管道分別連通該油壓泵之該二輸出口,該二管道分別連通該第一油壓缸及該第二油壓缸,該第一油壓缸之活塞桿及該第二油壓缸之活塞桿分別連接一穩定翼的上下兩端,該二油壓傳動模組分別驅動二該穩定翼作偏擺。 The oil pressure control system of the ship stabilizer of the present invention includes: two power modules, each of which has an oil pressure pump and a proportional valve, the proportional valve is connected to the oil pressure pump, and the oil pressure pump outputs under pressure Oil, the proportional valve controls the opening and closing of two output ports of the oil pump and adjusts the flow; and two oil pressure transmission modules, each of which has a self-use valve, a first oil pressure cylinder and a first oil pressure transmission module. Two hydraulic cylinders, the two pipes of the self-use valve are respectively connected to the two output ports of the hydraulic pump, the two pipes are respectively connected to the first hydraulic cylinder and the second hydraulic cylinder, the piston of the first hydraulic cylinder The rod and the piston rod of the second hydraulic cylinder are respectively connected to the upper and lower ends of a stabilizer, and the two hydraulic transmission modules respectively drive the two stabilizers to swing.

據此,本發明的船舶穩定翼之油壓控制系統,藉由該比例閥調整油液的循環方向及流量,而該電機單元以固定轉速運轉,不需要反覆切換轉向及轉速,係具有節省設備成本及降低損壞率的功效,又,油液透過該油壓傳動模組循環及傳遞油壓,除了避免能量浪費,還可以減少油液消耗,而能夠縮小油箱體積及省略冷卻器、過濾器等裝置,係具有節省系統重量及體積的功效。 Accordingly, the oil pressure control system of the marine stabilizer of the present invention adjusts the circulation direction and flow rate of the oil through the proportional valve, and the motor unit operates at a fixed rotation speed, and does not need to switch the steering and rotation speed repeatedly, which saves equipment. The cost and the effect of reducing the damage rate. Moreover, the oil circulates and transmits the oil pressure through the hydraulic transmission module. In addition to avoiding energy waste, it can also reduce oil consumption, and can reduce the volume of the oil tank and omit coolers, filters, etc. The device has the effect of saving the weight and volume of the system.

其中,該油壓泵具有一斜盤,該斜盤分隔該二輸出口,該比例閥調整該斜盤的傾斜角度,該斜盤偏斜而關閉其中一該輸出口,由另一該輸出口輸出油液,該斜盤傾斜的角度越大油液的流量越大。如此,該比例閥可以依據船舶橫搖的程度調整該斜盤,以精確提供油壓輸出讓穩定翼擺動,係具有簡化控制及提高能源利用率的功效。 Wherein, the hydraulic pump has a swash plate, the swash plate separates the two output ports, the proportional valve adjusts the inclination angle of the swash plate, the swash plate deflects to close one of the output ports, and the other output port is Output oil, the greater the angle of the swash plate inclination, the greater the flow of oil. In this way, the proportional valve can adjust the swash plate according to the degree of rolling of the ship, so as to accurately provide the oil pressure output for the stabilizer to swing, which has the effect of simplifying the control and improving the energy efficiency.

其中,該油壓泵連接一電機單元,該電機單元驅動該油壓泵運轉,該電機單元是固定轉速馬達。如此,該電機單元可以用電動馬達取代伺服馬達,係具有降低系統造價及維修成本的功效。 Wherein, the hydraulic pump is connected to a motor unit, the motor unit drives the hydraulic pump to run, and the motor unit is a fixed-speed motor. In this way, the motor unit can replace the servo motor with an electric motor, which has the effect of reducing the system cost and maintenance cost.

其中,該電機單元連接一補油泵,該電機單元驅動該補油泵運轉,該補油泵對該油壓控制系統補充油液。如此,該補油泵可以利用該電機單元過剩的動能穩定油路,係具有提高能源利用率及穩定油壓的功效。 Wherein, the motor unit is connected with an oil charge pump, the motor unit drives the oil charge pump to run, and the oil charge pump supplements the oil pressure control system with oil. In this way, the charge pump can utilize the excess kinetic energy of the motor unit to stabilize the oil circuit, which has the effects of improving energy utilization and stabilizing oil pressure.

其中,油液分別通過該自用閥之該二管道係形成一第一油路及一第二油路,該第一油路分別連通該第一油壓缸之後出入口及該第二油壓缸之前出入口;該第二油路分別連通該第一油壓缸之前出入口及該第二油壓缸之後出入口。如此,透過該第一油路或該第二油路輸出油液,係可以切換油壓缸反向作動,係具有快速偏擺穩定翼的功效。 Wherein, the oil passes through the two pipelines of the self-use valve to form a first oil circuit and a second oil circuit, and the first oil circuit is respectively connected to the rear inlet and outlet of the first hydraulic cylinder and the front of the second hydraulic cylinder. an inlet and an outlet; the second oil passage is respectively connected to the front inlet and outlet of the first hydraulic cylinder and the rear inlet and outlet of the second hydraulic cylinder. In this way, by outputting oil through the first oil circuit or the second oil circuit, the hydraulic cylinder can be switched to act in the opposite direction, and the stabilizer can be quickly swayed.

其中,各該油壓傳動模組另包含一共用閥,各該共用閥分別連通該第一油路及該第二油路,油液從該第一油路通過該共用閥後,形成一第三油路,油液從該第二油路通過該共用閥後,形成一第四油路,該二油壓傳動模組之該二第三油路相互連通,且該二第四油路相互連通。如此,單一該動力模組可以同時驅動該二穩定翼,係具有提高能源利用率及平衡施力的功效。 Wherein, each of the hydraulic transmission modules further includes a common valve, and each of the common valves is respectively connected to the first oil circuit and the second oil circuit. After the oil passes through the common valve from the first oil circuit, a first oil circuit is formed. Three oil passages, after the oil passes through the common valve from the second oil passage, a fourth oil passage is formed, the two third oil passages of the two hydraulic transmission modules communicate with each other, and the two fourth oil passages are mutually connected Connected. In this way, a single power module can drive the two stabilizers at the same time, which has the effect of improving energy utilization and balancing force application.

其中,該二油壓傳動模組另包含二切換閥,該二切換閥分別位於該二第三油路的交界處,及該二第四油路的交界處,打開該二切換閥使該二油壓傳動模組相互連通,關閉該二切換閥使該二油壓傳動模組各自獨立運作。如此,該二切換閥可以切換共用該動力模組或分成兩組獨立循環加壓,以配合橫搖情形調整油壓輸出模式,係具有提升減搖穩定性及避免能源浪費功效。 Wherein, the two hydraulic transmission modules further include two switching valves, the two switching valves are respectively located at the junction of the two third oil circuits and the junction of the two fourth oil circuits, and opening the two switching valves makes the two The hydraulic transmission modules are communicated with each other, and the two switching valves are closed to make the two hydraulic transmission modules operate independently. In this way, the two switching valves can switch and share the power module or be divided into two groups of independent cyclic pressurization, so as to adjust the oil pressure output mode according to the rolling situation, which has the effect of improving the stability of anti-rolling and avoiding energy waste.

其中,各該油壓傳動模組另包含二洩壓閥,該二洩壓閥分別連通該第一油路及該第二油路。如此,該二洩壓閥係可以透過洩漏部分油液以降低過大油壓,係具有穩定油壓及避免管線受損的功效。 Wherein, each of the hydraulic transmission modules further includes two pressure relief valves, and the two pressure relief valves are respectively connected to the first oil circuit and the second oil circuit. In this way, the second pressure relief valve system can reduce the excessive oil pressure by leaking part of the oil, which has the effect of stabilizing the oil pressure and avoiding damage to the pipeline.

其中,一個該穩定翼之上端連動該第一油壓缸之活塞桿且下端 連動該第二油壓缸之活塞桿,另一個該穩定翼之下端連動另一該第一油壓缸之活塞桿且上端連動另一該第二油壓缸之活塞桿。如此,位於船舶兩側的該二穩定翼係可以往相反方向偏擺,進而產生最大合力矩,係具有提升減搖效率的功效。 Wherein, the upper end of the stabilizer is linked with the piston rod of the first hydraulic cylinder and the lower end The piston rod of the second hydraulic cylinder is linked, the lower end of the other stabilizer is linked to the piston rod of the other first hydraulic cylinder, and the upper end is linked to the piston rod of the other second hydraulic cylinder. In this way, the two stabilized wing systems located on both sides of the ship can sway in opposite directions, thereby generating the maximum resultant moment, which has the effect of improving the anti-rolling efficiency.

1:動力模組 1: Power module

11:油壓泵 11: Oil pressure pump

12:比例閥 12: Proportional valve

13:電機單元 13: Motor unit

14:補油泵 14: Charge pump

2:油壓傳動模組 2: Hydraulic transmission module

21:自用閥 21: Self-use valve

21a:第一油路 21a: The first oil circuit

21b:第二油路 21b: Second oil circuit

22:第一油壓缸 22: The first hydraulic cylinder

23:第二油壓缸 23: Second hydraulic cylinder

24:共用閥 24: Common valve

24a:第三油路 24a: Third oil circuit

24b:第四油路 24b: Fourth oil circuit

25:切換閥 25: Switching valve

26:洩壓閥 26: Pressure relief valve

W:穩定翼 W: stabilizer

R:後出入口 R: rear entrance

F:前出入口 F: Front entrance

〔第1圖〕本發明較佳實施例的運轉情形圖。 [FIG. 1] A diagram showing the operation of a preferred embodiment of the present invention.

〔第2圖〕本發明較佳實施例的共用動力模組之運轉情形圖。 [FIG. 2] A diagram of the operation of the shared power module according to the preferred embodiment of the present invention.

為讓本發明之上述及其他目的、特徵及優點能更明顯易懂,下文特舉本發明之較佳實施例,並配合所附圖式,作詳細說明如下:請參照第1圖所示,其係本發明船舶穩定翼之油壓控制系統的較佳實施例,係包含二動力模組1、及二油壓傳動模組2,該二動力模組1分別連接該二油壓傳動模組2,該二油壓傳動模組2互相連接,各該油壓傳動模組2連接一穩定翼W。 In order to make the above-mentioned and other objects, features and advantages of the present invention more obvious and easy to understand, the preferred embodiments of the present invention are exemplified below, and are described in detail as follows in conjunction with the accompanying drawings: please refer to Figure 1, It is a preferred embodiment of the oil pressure control system of the ship stabilizer of the present invention, and includes two power modules 1 and two oil pressure transmission modules 2, and the two power modules 1 are respectively connected to the two oil pressure transmission modules. 2. The two hydraulic transmission modules 2 are connected to each other, and each of the hydraulic transmission modules 2 is connected to a stabilizer W.

各該動力模組1係由一油壓泵11連接一比例閥12,該油壓泵11將油液加壓後輸出,油液可以通過該油壓泵11之二輸出口進入不同的油管,該比例閥12可以切換該二輸出口的開關及調整流量。在本實施例中,該比例閥12係控制該油壓泵11之一斜盤的角度,該斜盤分隔該二輸出口,當該斜盤偏斜時,可以隔擋其中一該輸出口而僅容許另一該輸出口提供油液,且該斜盤傾斜的角度越大油液的流量越大。又,該油壓泵11係連接一電機單元13,由該電機單元13驅動該油壓泵11運轉,該電機單元13可以是固定轉 速馬達,因為各該動力模組1已透過該比例閥12改變油液的流向及流量,不需要透過該電機單元13提供可變轉速及轉向,該電機單元13具有便宜且不易損壞的優點。 Each of the power modules 1 is connected by a hydraulic pump 11 to a proportional valve 12. The hydraulic pump 11 pressurizes the oil and outputs it. The oil can enter different oil pipes through the second output port of the hydraulic pump 11. The proportional valve 12 can switch the two output ports on and off and adjust the flow. In this embodiment, the proportional valve 12 controls the angle of a swash plate of the hydraulic pump 11. The swash plate separates the two output ports. When the swash plate is deflected, it can block one of the output ports and Only the other output port is allowed to supply oil, and the greater the angle of the swash plate inclination, the greater the flow of oil. In addition, the hydraulic pump 11 is connected to a motor unit 13, and the hydraulic pump 11 is driven by the motor unit 13 to operate. The motor unit 13 may be a fixed rotating Because each power module 1 has changed the flow direction and flow of oil through the proportional valve 12, it is not necessary to provide variable speed and steering through the motor unit 13, which has the advantages of being cheap and not easily damaged.

各該動力模組1還可以具有一補油泵14,該補油泵14用於對油管補充油液,使油壓管線能夠保持穩定流量及推動壓力,舉例而言,在油壓控制系統中的管路交接處、閥門等部位可能發生漏油而降低油壓,係可以將漏油導引集中於一油箱(圖未繪示),再由該補油泵14從該油箱汲取油液重新注入油管。該補油泵14可以連接於該電機單元13,使該電機單元13可以同時提供該油壓泵11及該補油泵14的運轉動力。 Each of the power modules 1 may also have a charge pump 14, which is used to replenish oil to the oil pipe, so that the oil pressure line can maintain a stable flow and push pressure. Oil leakage may occur at road junctions, valves and other parts to reduce the oil pressure. The oil leakage can be guided and concentrated in a fuel tank (not shown in the figure), and then the charge pump 14 draws oil from the fuel tank and re-injects it into the oil pipe. The charge pump 14 can be connected to the motor unit 13 , so that the motor unit 13 can simultaneously provide the operating power of the oil pressure pump 11 and the charge pump 14 .

各該油壓傳動模組2係由一自用閥21之二管道分別連通該油壓泵11之該二輸出口,該二管道之間相互不連通且工作流向相反,油液分別經過該二輸出口及該二管道係形成一第一油路21a及一第二油路21b,該第一油路21a通過該自用閥21後,分別連通一第一油壓缸22之後出入口R及一第二油壓缸23之前出入口F;該第二油路21b通過該自用閥21後,分別連通該第一油壓缸22之前出入口F及該第二油壓缸23之後出入口R,該第一油壓缸22之活塞桿及該第二油壓缸23之活塞桿分別連接該穩定翼W的上下兩端,各該油壓傳動模組2係可以精確傳遞油壓,且油液透過管線循環利用,係具有減少能量浪費及油液消耗的作用。如第1圖所示,當油液透過該第一油路21a輸出而自該第二油路21b排放時,該第一油壓缸22之活塞桿推出而該第二油壓缸23之活塞桿縮回,係可以推動該穩定翼W作順時針擺動;反之,當油液透過該第二油路21b輸出而自第一油路21a該排放時,該第一油壓缸22之活塞桿縮回而該第二油壓缸23之活塞桿推出,係可以推動該穩定翼W作逆時針擺動。 Each of the hydraulic transmission modules 2 is connected to the two output ports of the hydraulic pump 11 by two pipes of a self-use valve 21 respectively. The two pipes are not connected to each other and the working flow is opposite, and the oil passes through the two outputs respectively. The port and the two pipelines form a first oil passage 21a and a second oil passage 21b. After the first oil passage 21a passes through the self-use valve 21, it is respectively connected to a first hydraulic cylinder 22 after the inlet and outlet R and a second oil passage 21b. The port F before the hydraulic cylinder 23; the second oil passage 21b is connected to the port F before the first hydraulic cylinder 22 and the port R after the second hydraulic cylinder 23 after passing through the self-use valve 21, respectively. The first hydraulic pressure The piston rod of the cylinder 22 and the piston rod of the second hydraulic cylinder 23 are respectively connected to the upper and lower ends of the stabilizer W. Each of the hydraulic transmission modules 2 can accurately transmit the oil pressure, and the oil is recycled through the pipeline. The system has the effect of reducing energy waste and oil consumption. As shown in FIG. 1, when the oil is outputted through the first oil passage 21a and discharged from the second oil passage 21b, the piston rod of the first hydraulic cylinder 22 is pushed out and the piston of the second hydraulic cylinder 23 is pushed out. When the rod is retracted, it can push the stabilizer W to swing clockwise; on the contrary, when the oil is outputted through the second oil passage 21b and discharged from the first oil passage 21a, the piston rod of the first hydraulic cylinder 22 When retracted and the piston rod of the second hydraulic cylinder 23 is pushed out, it can push the stabilizer W to swing counterclockwise.

各該油壓傳動模組2還可以具有一共用閥24,該二油壓傳動 模組2係透過該二共用閥24相互連通,各該共用閥24具有互不連通且流向相反之二管道,各該共用閥24以該二管道分別連通該第一油路21a及該第二油路21b,油液從該第一油路21a通過該共用閥24後,形成一第三油路24a;油液從該第二油路21b通過該共用閥24後,形成一第四油路24b,該二油壓傳動模組2之該二第三油路24a係透過一切換閥25相互連通,該二油壓傳動模組2之該二第四油路24b係透過另一切換閥25相互連通。 Each of the hydraulic transmission modules 2 may also have a common valve 24, and the two hydraulic transmission modules The modules 2 are communicated with each other through the two common valves 24. Each of the common valves 24 has two pipes that are not connected to each other and flow in opposite directions. In the oil passage 21b, after the oil passes through the common valve 24 from the first oil passage 21a, a third oil passage 24a is formed; after the oil passes through the common valve 24 from the second oil passage 21b, a fourth oil passage is formed 24b, the two third oil passages 24a of the two hydraulic transmission modules 2 communicate with each other through a switching valve 25, and the two fourth oil passages 24b of the two hydraulic transmission modules 2 pass through another switching valve 25 interconnected.

請參照第2圖所示,當該二切換閥25打開使該二油壓傳動模組2連通時,可以停用其中一該動力模組1及與其連通的該自用閥21,使油液出入該第一油路21a及該第二油路21b,必須透過該共用閥24、該第三油路24a及該第四油路24b連通另一該動力模組1,如此,由單一個該動力模組1輸出油液,再透過相互連通的該二油壓傳動模組2供油液循環流動,係可以產生相同的作用力推動該二穩定翼W,使該二穩定翼W同步形成相同角度但方向相反的攻角,係具有提高能源利用率及平衡施力的作用。 Referring to FIG. 2, when the two switching valves 25 are opened to connect the two hydraulic transmission modules 2, one of the power modules 1 and the self-use valve 21 in communication with it can be deactivated to allow oil to flow in and out. The first oil passage 21a and the second oil passage 21b must communicate with the other power module 1 through the common valve 24, the third oil passage 24a and the fourth oil passage 24b. The module 1 outputs the oil, and then supplies the oil to circulate through the two hydraulic transmission modules 2 connected to each other, which can generate the same force to push the two stabilizers W, so that the two stabilizers W synchronously form the same angle However, the angle of attack in the opposite direction has the effect of improving energy utilization and balancing force.

各該油壓傳動模組2還可以具有二洩壓閥26,該二洩壓閥26分別連通該第一油路21a及該第二油路21b,且該二洩壓閥26的位置較佳靠近該油壓泵11之該二輸出口,當該油壓泵11對該第一油路21a或該第二油路21b內的油液加壓時,該二洩壓閥26係可以透過洩漏部分油液以降低油壓,避免過大的壓力破壞管線或干擾控壓工作,而自該二洩壓閥26洩漏之油液可以導引至該油箱存放再利用。 Each of the hydraulic transmission modules 2 may also have two pressure relief valves 26, the two pressure relief valves 26 are respectively connected to the first oil passage 21a and the second oil passage 21b, and the positions of the two pressure relief valves 26 are preferably Close to the two output ports of the hydraulic pump 11, when the hydraulic pump 11 pressurizes the oil in the first oil passage 21a or the second oil passage 21b, the two pressure relief valves 26 can leak through the Part of the oil is used to reduce the oil pressure, so as to avoid excessive pressure from damaging the pipeline or interfering with the pressure control work, and the oil leaking from the two pressure relief valves 26 can be led to the oil tank for storage and reuse.

請參照第1及2圖所示,本發明的船舶穩定翼之油壓控制系統用於航行中的船舶,係將該二穩定翼W對稱安裝於船舶之二舷,當船舶受外力作用開始橫搖時,一控制模組可以透過一平衡感測器(圖未繪示)觀測船舶橫向搖擺的情形,再由該控制模組依據橫搖的幅度及方向控制各該比例閥12,使各該油壓泵11以指定的流量及循環方向加壓油液進入各該油壓傳動模 組2,並驅動各該第一油壓缸22及各該第二油壓缸23作伸縮,則各該穩定翼W可以被該控制模組操控偏擺的角度及方向,如第1及2圖所示,其中一個該穩定翼W之上端連動該第一油壓缸22之活塞桿且下端連動該第二油壓缸23之活塞桿,相反地,另一個該穩定翼W之下端連動另一該第一油壓缸22之活塞桿且上端連動另一該第二油壓缸23之活塞桿,由於該二第一油壓缸22的動作一致,該第二油壓缸23的動作也一致,使該二穩定翼W被帶動後偏擺形成的攻角係方向相反,能夠與水流作用而分別在船舶兩側產生一上一下的推力,該二推力作用於該二穩定翼W所疊加形成的合力矩用以抵消船舶橫搖現象。 Referring to Figures 1 and 2, the oil pressure control system of the ship stabilizer of the present invention is used for a ship in navigation, and the two stabilizers W are symmetrically installed on the two sides of the ship. When rolling, a control module can observe the lateral sway of the ship through a balance sensor (not shown in the figure), and then the control module controls each of the proportional valves 12 according to the amplitude and direction of the roll, so that each of the The hydraulic pump 11 pressurizes the oil into each of the hydraulic transmission molds with a specified flow rate and circulation direction. group 2, and drive each of the first hydraulic cylinders 22 and each of the second hydraulic cylinders 23 to expand and contract, then each of the stabilizers W can be controlled by the control module in the angle and direction of the yaw, such as the first and second As shown in the figure, the upper end of one of the stabilizers W is linked with the piston rod of the first hydraulic cylinder 22 and the lower end is linked with the piston rod of the second hydraulic cylinder 23, on the contrary, the lower end of the other stabilizer W is linked with the other One of the piston rods of the first hydraulic cylinder 22 and the upper end of the other piston rod of the second hydraulic cylinder 23 are linked. Since the movements of the two first hydraulic cylinders 22 are the same, the movements of the second hydraulic cylinders 23 are also Consistent, the direction of the angle of attack formed by the deflection of the two stabilizers W after being driven is opposite, and the two sides of the ship can be respectively generated by the action of the water flow to generate thrusts up and down, and the two thrusts act on the superposition of the two stabilizers W. The resultant moment formed is used to counteract the rolling phenomenon of the ship.

本發明的船舶穩定翼之油壓控制系統可以同時啟用二個該動力模組1,或可以僅使用單一個該動力模組1對二個該油壓傳動模組2加壓油液,係使油液通過該二共用閥24、該二第三油路24a、該二第四油路24b及該二切換閥25,當其中一個該動力模組1啟動時,被加壓的油液可以同時循環於該二第一油路21a及該二第二油路21b,除了具有降低動力能源消耗及減少漏油的作用,輪流使用該二動力模組1還可以延長其使用壽命及作為故障時的替代裝置。 The oil pressure control system of the ship stabilizer of the present invention can activate two of the power modules 1 at the same time, or can use only one of the power modules 1 to pressurize oil on two of the oil pressure transmission modules 2, so that the The oil passes through the two common valves 24, the two third oil passages 24a, the two fourth oil passages 24b and the two switching valves 25. When one of the power modules 1 is activated, the pressurized oil can be simultaneously Circulating in the two first oil passages 21a and the two second oil passages 21b, in addition to reducing power consumption and reducing oil leakage, the use of the two power modules 1 in turn can also prolong their service life and act as a fault in the event of a failure. Alternative device.

綜上所述,本發明的船舶穩定翼之油壓控制系統,藉由該比例閥調整油液的循環方向及流量,而該電機單元以固定轉速運轉,不需要反覆切換轉向及轉速,係具有節省設備成本及降低損壞率的功效。又,油液透過該油壓傳動模組循環及傳遞油壓,除了避免能源浪費,還可以減少油液消耗,而能夠縮小油箱體積及省略冷卻器、過濾器等裝置,係具有節省系統重量及體積的功效。另外,藉由該二共用閥連通該二油壓傳動模組,係可以由單一該動力模組提供油壓同時驅動該二穩定翼,係具有提高能源利用率及平衡施力的功效。 To sum up, the oil pressure control system of the marine stabilizer of the present invention adjusts the circulation direction and flow rate of the oil through the proportional valve, and the motor unit operates at a fixed rotation speed without repeatedly switching the steering and rotation speed. The effect of saving equipment cost and reducing damage rate. In addition, the oil circulates and transmits oil pressure through the hydraulic transmission module, which not only avoids energy waste, but also reduces oil consumption, and can reduce the volume of the oil tank and omit devices such as coolers and filters, which saves system weight and The effect of volume. In addition, by connecting the two hydraulic transmission modules through the two common valves, the single power module can provide oil pressure to drive the two stabilizers simultaneously, which has the effect of improving energy utilization and balancing force application.

雖然本發明已利用上述較佳實施例揭示,然其並非用以限定本發明,任何熟習此技藝者在不脫離本發明之精神和範圍之內,相對上述實施例進行各種更動與修改仍屬本發明所保護之技術範疇,因此本發明之保護範圍當視後附之申請專利範圍所界定者為準。 Although the present invention has been disclosed by the above-mentioned preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make various changes and modifications relative to the above-mentioned embodiments without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the patent application attached hereto.

1:動力模組 1: Power module

11:油壓泵 11: Oil pressure pump

12:比例閥 12: Proportional valve

13:電機單元 13: Motor unit

14:補油泵 14: Charge pump

2:油壓傳動模組 2: Hydraulic transmission module

21:自用閥 21: Self-use valve

21a:第一油路 21a: The first oil circuit

21b:第二油路 21b: Second oil circuit

22:第一油壓缸 22: The first hydraulic cylinder

23:第二油壓缸 23: Second hydraulic cylinder

24:共用閥 24: Common valve

24a:第三油路 24a: Third oil circuit

24b:第四油路 24b: Fourth oil circuit

25:切換閥 25: Switching valve

26:洩壓閥 26: Pressure relief valve

W:穩定翼 W: stabilizer

R:後出入口 R: rear entrance

F:前出入口 F: Front entrance

Claims (9)

一種船舶穩定翼之油壓控制系統,包含:二動力模組,各該動力模組具有一油壓泵及一比例閥,該比例閥連接該油壓泵,該油壓泵加壓輸出油液,該比例閥控制該油壓泵之二輸出口的開關及調整流量;及二油壓傳動模組,各該油壓傳動模組具有一自用閥、一第一油壓缸及一第二油壓缸,該自用閥之二管道分別連通該油壓泵之該二輸出口,該二管道分別連通該第一油壓缸及該第二油壓缸,該第一油壓缸之活塞桿及該第二油壓缸之活塞桿分別連接一穩定翼的上下兩端,該二油壓傳動模組分別驅動二該穩定翼作偏擺。 An oil pressure control system for a ship stabilizer, comprising: two power modules, each of which has an oil pump and a proportional valve, the proportional valve is connected to the oil pump, and the oil pump pressurizes and outputs oil , the proportional valve controls the opening and closing of two output ports of the hydraulic pump and adjusts the flow; and two hydraulic transmission modules, each of which has a self-use valve, a first hydraulic cylinder and a second oil pressure cylinder, the two pipes of the self-use valve are respectively connected with the two output ports of the hydraulic pump, the two pipes are respectively connected with the first hydraulic cylinder and the second hydraulic cylinder, the piston rod of the first hydraulic cylinder and the The piston rod of the second hydraulic cylinder is respectively connected with the upper and lower ends of a stabilizer, and the two hydraulic transmission modules respectively drive the two stabilizers to yaw. 如請求項1之船舶穩定翼之油壓控制系統,其中,該油壓泵具有一斜盤,該斜盤分隔該二輸出口,該比例閥調整該斜盤的傾斜角度,該斜盤偏斜而關閉其中一該輸出口,由另一該輸出口輸出油液,該斜盤傾斜的角度越大油液的流量越大。 The oil pressure control system for a ship stabilizer as claimed in claim 1, wherein the oil pressure pump has a swash plate, the swash plate separates the two output ports, the proportional valve adjusts the inclination angle of the swash plate, and the swash plate deflects One of the output ports is closed, and oil is output from the other output port. The greater the angle of the swash plate inclination, the greater the flow of the oil. 如請求項1之船舶穩定翼之油壓控制系統,其中,該油壓泵連接一電機單元,該電機單元驅動該油壓泵運轉,該電機單元是固定轉速馬達。 The oil pressure control system for ship stabilizer according to claim 1, wherein the oil pressure pump is connected to a motor unit, the motor unit drives the oil pressure pump to run, and the motor unit is a fixed speed motor. 如請求項3之船舶穩定翼之油壓控制系統,其中,該電機單元連接一補油泵,該電機單元驅動該補油泵運轉,該補油泵對該油壓控制系統補充油液。 The oil pressure control system for ship stabilizer according to claim 3, wherein the motor unit is connected to a charge pump, the motor unit drives the charge pump to run, and the charge pump supplements the oil pressure control system with oil. 如請求項1之船舶穩定翼之油壓控制系統,其中,油液分別通過該自用閥之該二管道係形成一第一油路及一第二油路,該第一油路分別連通該第一油壓缸之後出入口及該第二油壓缸之前出入口;該第二油路分別連通該第一油壓缸之前出入口及該第二油壓缸之後出入口。 The oil pressure control system for a ship stabilizer as claimed in claim 1, wherein the oil passes through the two pipeline systems of the self-use valve to form a first oil passage and a second oil passage, and the first oil passage is respectively connected to the second oil passage. The rear inlet and outlet of a hydraulic cylinder and the front inlet and outlet of the second hydraulic cylinder; the second oil passage is respectively connected to the front inlet and outlet of the first hydraulic cylinder and the rear inlet and outlet of the second hydraulic cylinder. 如請求項5之船舶穩定翼之油壓控制系統,其中,各該油壓傳動模組另包含一共用閥,各該共用閥分別連通該第一油路及該第二油路,油液從該第一油路通過該共用閥後,形成一第三油路,油液從該第二油路通過該共用閥後,形成一第四油路,該二油壓傳動模組之該二第三油路相互連通,且該二第四油路相互連通。 As claimed in claim 5, the oil pressure control system for a ship stabilizer, wherein each of the oil pressure transmission modules further comprises a common valve, and each of the common valves is respectively connected to the first oil circuit and the second oil circuit, and the oil flows from the After the first oil passage passes through the common valve, a third oil passage is formed. After the oil passes through the common valve from the second oil passage, a fourth oil passage is formed. The second oil passage of the two hydraulic transmission modules forms a fourth oil passage. The three oil passages communicate with each other, and the two and fourth oil passages communicate with each other. 如請求項6之船舶穩定翼之油壓控制系統,其中,該二油壓傳動模組另包含二切換閥,該二切換閥分別位於該二第三油路的交界處,及該二第四油路的交界處,打開該二切換閥使該二油壓傳動模組相互連通,關閉該二切換閥使該二油壓傳動模組各自獨立運作。 As claimed in claim 6, the hydraulic control system for a ship stabilizer, wherein the two hydraulic transmission modules further comprise two switching valves, the two switching valves are located at the junction of the two third oil circuits, and the two fourth At the junction of the oil circuit, the two switching valves are opened to make the two hydraulic transmission modules communicate with each other, and the two switching valves are closed to make the two hydraulic transmission modules operate independently. 如請求項5之船舶穩定翼之油壓控制系統,其中,各該油壓傳動模組另包含二洩壓閥,該二洩壓閥分別連通該第一油路及該第二油路。 The oil pressure control system for a ship stabilizer according to claim 5, wherein each of the oil pressure transmission modules further comprises two pressure relief valves, and the two pressure relief valves are respectively connected to the first oil circuit and the second oil circuit. 如請求項1之船舶穩定翼之油壓控制系統,其中,一個該穩定翼之上端連動該第一油壓缸之活塞桿且下端連動該第二油壓缸之活塞桿,另一個該穩定翼之下端連動另一該第一油壓缸之活塞桿且上端連動另一該第二油壓缸之活塞桿。 The oil pressure control system for a ship stabilizer as claimed in claim 1, wherein the upper end of one stabilizer is linked with the piston rod of the first hydraulic cylinder and the lower end is linked with the piston rod of the second hydraulic cylinder, and the other stabilizer The lower end is linked with the piston rod of the other first hydraulic cylinder and the upper end is linked with the piston rod of the other second hydraulic cylinder.
TW110104757A 2021-02-08 2021-02-08 Hydraulic control system of ship stabilizer TWI756048B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW110104757A TWI756048B (en) 2021-02-08 2021-02-08 Hydraulic control system of ship stabilizer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW110104757A TWI756048B (en) 2021-02-08 2021-02-08 Hydraulic control system of ship stabilizer

Publications (2)

Publication Number Publication Date
TWI756048B true TWI756048B (en) 2022-02-21
TW202231541A TW202231541A (en) 2022-08-16

Family

ID=81329270

Family Applications (1)

Application Number Title Priority Date Filing Date
TW110104757A TWI756048B (en) 2021-02-08 2021-02-08 Hydraulic control system of ship stabilizer

Country Status (1)

Country Link
TW (1) TWI756048B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116331001A (en) * 2023-04-23 2023-06-27 武汉雄韬氢雄燃料电池科技有限公司 Marine fuel cell system mounting and fixing method and device

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20080072811A1 (en) * 2006-09-25 2008-03-27 Robert Michael Patterson Boat stabilizer
CN101962068A (en) * 2009-07-24 2011-02-02 射阳远洋船舶辅机有限公司 Hydraulic control system for fin stabilizer
TWI352045B (en) * 2008-08-22 2011-11-11 United Ship Design & Dev Ct Hydraulic control system of a ship and a method of
TWI428257B (en) * 2008-10-01 2014-03-01 Sumitomio Corp Vessel with side thruster
CN105775063A (en) * 2016-05-05 2016-07-20 哈尔滨工程大学 T-shaped hydrovane and auxiliary wing plate composite roll-stabilization device
TWM612807U (en) * 2021-02-08 2021-06-01 協聚德股份有限公司 Hydraulic control system for ship stabilizer

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20080072811A1 (en) * 2006-09-25 2008-03-27 Robert Michael Patterson Boat stabilizer
TWI352045B (en) * 2008-08-22 2011-11-11 United Ship Design & Dev Ct Hydraulic control system of a ship and a method of
TWI428257B (en) * 2008-10-01 2014-03-01 Sumitomio Corp Vessel with side thruster
CN101962068A (en) * 2009-07-24 2011-02-02 射阳远洋船舶辅机有限公司 Hydraulic control system for fin stabilizer
CN105775063A (en) * 2016-05-05 2016-07-20 哈尔滨工程大学 T-shaped hydrovane and auxiliary wing plate composite roll-stabilization device
TWM612807U (en) * 2021-02-08 2021-06-01 協聚德股份有限公司 Hydraulic control system for ship stabilizer

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116331001A (en) * 2023-04-23 2023-06-27 武汉雄韬氢雄燃料电池科技有限公司 Marine fuel cell system mounting and fixing method and device
CN116331001B (en) * 2023-04-23 2023-10-10 武汉雄韬氢雄燃料电池科技有限公司 Marine fuel cell system mounting and fixing method and device

Also Published As

Publication number Publication date
TW202231541A (en) 2022-08-16

Similar Documents

Publication Publication Date Title
US9061735B2 (en) Multi-hulled water craft including suspension
JP5139571B2 (en) Ship vibration reduction and levitation equipment
NO333766B1 (en) System and method for active and passive stabilization of vessel
AU2013335369B2 (en) Stabilizer fin and active stabilizer system for a watercraft
CN102985316A (en) Control of multi-hulled water craft
TWI756048B (en) Hydraulic control system of ship stabilizer
CN207889950U (en) A kind of attitude of ship regulating system
US7040244B1 (en) Watercraft having plural narrow hulls and having submerged passive flotation devices
TWM612807U (en) Hydraulic control system for ship stabilizer
KR20170018368A (en) The steering system of a vessel
US11932361B2 (en) Hydraulic system for stabilizer drive
KR102626908B1 (en) Driving device for side thruster of ship
CN116495149B (en) Multifunctional seawater hydraulic buoyancy adjusting system for underwater vehicle
CN216887154U (en) Intercepting plate control device for ship navigation state control
CN107972829A (en) A kind of attitude of ship regulating system
AU2013328235A1 (en) Boat
CN214084690U (en) Zero navigational speed stabilizing device of ship based on inertial force control
CN204078038U (en) One hangs formula combination dock gate
CN208248455U (en) A kind of ship navigation stabilizer
CN216895118U (en) A interceptor device servo valve block subassembly for boats and ships attitude control
CN216895119U (en) Hydraulic system of intercepting plate device for ship navigation state control
US11167822B2 (en) Integrated thruster and ballast system
DK178739B1 (en) System for vessel control
CN113638920A (en) Mounting platform hydraulic control system for large ship
CN108019389A (en) Extendible stabilizer hydraulic control system