TW202134534A - Wind power generator - Google Patents

Wind power generator Download PDF

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TW202134534A
TW202134534A TW109107475A TW109107475A TW202134534A TW 202134534 A TW202134534 A TW 202134534A TW 109107475 A TW109107475 A TW 109107475A TW 109107475 A TW109107475 A TW 109107475A TW 202134534 A TW202134534 A TW 202134534A
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power generation
wind
generation device
main shaft
wind power
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TW109107475A
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Chinese (zh)
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TWI720835B (en
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谷振義
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谷振義
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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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/74Wind turbines with rotation axis perpendicular to the wind direction

Abstract

A wind power generator is provided to overcome the problem of the conventional wind power generator damaged by the instantly strong wind. The wind power generator includes at least three wind-guide rollers and a drive bracket rotatably combined with a base. Each of the three wind-guide rollers has a top cover and a bottom plate respectively located on the top surface and the bottom surface of each wind-guide roller. Several upright blades are located at the side of each three wind-guide rollers. The two ends of each upright blade are respectively connected to the top cover and the bottom plate. Each of the top cover and the bottom plate has a pivot portion. The drive bracket has a shaft and several rotating arms. The drive bracket is radially surrounded by the several rotating arms. The pivot portion of each three wind-guide rollers are respectively connected to the several rotating arms.

Description

風力發電裝置Wind power plant

本發明係關於一種風力動能轉換機組,尤其是一種能夠抵抗瞬間強風破壞的風力發電裝置。The invention relates to a wind kinetic energy conversion unit, in particular to a wind power generation device capable of resisting instantaneous strong wind damage.

習知的風力發電裝置係仰賴自然風力推動扇葉,使扇葉轉動作功於發電機,係可以將風能轉換為電能以方便儲存或輸送能源,用於滿足生活中的能源需求。但是,自然界的風力強弱不穩定且無法控制,當風力減弱至不足以推動扇葉時,發電機停止輸出電力;當風力增強至超過扇葉的結構強度或發電機的負載時,可能導致扇葉壽命減少或發電機迴路過熱毀損等問題。The conventional wind power generation device relies on natural wind to drive the fan blades, so that the rotation of the fan blades is contributed to the generator, and the wind energy can be converted into electric energy to facilitate the storage or transmission of energy to meet the energy demand in life. However, the wind force in nature is unstable and uncontrollable. When the wind is weakened and is not enough to propel the fan blades, the generator stops outputting power; when the wind increases to exceed the structural strength of the fan blade or the load of the generator, the fan blade may be caused. Problems such as reduced service life or damage to the generator circuit due to overheating.

習知的風力發電裝置係透過增設變速箱克服風力不穩定的問題,變速箱可以在風力動能不足時提高轉速,避免發電機停止運轉,及在動能遽增時調降發電機運轉效率,避免發電機過載。惟,透過變速箱轉換並傳遞能量係導致額外的能量耗損,又,變速箱僅能夠保護發電機,而無法減輕扇葉所承受的瞬間風壓。The conventional wind power generation device overcomes the problem of wind instability by adding a gearbox. The gearbox can increase the speed when the kinetic energy of the wind is insufficient to prevent the generator from shutting down, and reduce the operating efficiency of the generator when the kinetic energy increases sharply to avoid generating Motor overload. However, the conversion and transmission of the energy system through the gearbox results in additional energy consumption. Moreover, the gearbox can only protect the generator, but cannot reduce the instantaneous wind pressure on the fan blades.

有鑑於此,習知的風力發電裝置確實仍有加以改善之必要。In view of this, the conventional wind power generation device does still need to be improved.

為解決上述問題,本發明的目的是提供一種風力發電裝置,可以抵抗強風侵擾發電過程。In order to solve the above-mentioned problems, the object of the present invention is to provide a wind power generation device that can resist strong wind intrusion into the power generation process.

本發明的次一目的是提供一種風力發電裝置,可以提升動能轉換電能的效率。The second objective of the present invention is to provide a wind power generation device that can improve the efficiency of kinetic energy conversion to electrical energy.

本發明的又一目的是提供一種風力發電裝置,可以改善轉動平衡及減少能量損耗。Another object of the present invention is to provide a wind power generation device that can improve rotation balance and reduce energy loss.

本發明的再一目的是提供一種風力發電裝置,操作便利且適用於不同工作環境。Another object of the present invention is to provide a wind power generation device that is convenient to operate and suitable for different working environments.

本發明全文所述方向性或其近似用語,例如「上(頂)」、「下(底)」、「內」、「外」、「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 described in the full text of the present invention or its similar terms, such as "upper (top)", "lower (bottom)", "inner", "outer", "side", etc., mainly refer to the directions of the attached drawings, each Directionality or similar terms are only used to assist in describing and understanding the 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 elements and components described in the full text of the present invention use the quantifiers "one" or "one" for convenience and to provide the 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 single The concept of also includes the plural, unless it clearly implies other meanings.

本發明的風力發電裝置,包含:至少三個導風滾筒,各該導風滾筒具有一頂蓋及一底盤分別位於各該導風滾筒的上底面及下底面,及數個直立葉片位於各該導風滾筒的側面,各該直立葉片的兩端分別連接該頂蓋及該底盤,該頂蓋及該底盤分別具有一樞轉部,各該導風滾筒由一軸線貫穿,該軸線通過該二樞轉部的中心;一傳動支架,具有一主軸及數個旋轉臂,該數個旋轉臂輻向環設於該主軸,該數個導風滾筒的樞轉部分別連接於該數個旋轉臂;及一固定座,該傳動支架之該主軸可旋轉地結合於該固定座。The wind power generation device of the present invention includes: at least three wind guide rollers, each of the wind guide rollers has a top cover and a chassis located on the upper and lower bottom surfaces of each wind guide roller, and a plurality of upright blades are located on each of the wind guide rollers. On the side of the wind guide drum, the two ends of each vertical blade are respectively connected to the top cover and the chassis. The top cover and the chassis respectively have a pivoting part. The center of the pivoting part; a transmission bracket with a main shaft and several rotating arms, the several rotating arms are radially arranged on the main shaft, and the pivoting parts of the several wind guide drums are respectively connected to the several rotating arms ; And a fixed seat, the main shaft of the transmission bracket is rotatably coupled to the fixed seat.

據此,本發明的風力發電裝置,藉由位於外側的該數個導風滾筒的分散導引風力,再由各該導風滾筒的自轉帶動內側的主軸旋轉並轉換為電能,係可以避免強風直接作用於該主軸而導致結構受損或電機過載,係具有抵抗強風及延長發電機組使用壽命等功效。Accordingly, the wind power generation device of the present invention uses the dispersed guide wind of the plurality of wind guide drums located on the outer side, and the rotation of each wind guide drum drives the inner main shaft to rotate and convert it into electric energy, which can avoid strong winds. Acting directly on the main shaft causes structural damage or motor overload, which has the functions of resisting strong wind and prolonging the service life of the generator set.

其中,各該直立葉片垂直於該頂蓋及該底盤,且該數個直立葉片等間距環設於各該導風滾筒的側面。如此,該數個直立葉片可以平均導引側向氣流並最大化轉矩,係具有提升動能轉換效率的功效。Wherein, each of the upright blades is perpendicular to the top cover and the bottom plate, and the plurality of upright blades are ringed on the side of each wind guide drum at equal intervals. In this way, the plurality of vertical blades can evenly guide the lateral airflow and maximize the torque, which has the effect of improving the efficiency of kinetic energy conversion.

其中,各該軸線通過各該導風滾筒的質量中心。如此,各該導風滾筒可以繞各自的質量中心旋轉,係具有改善轉動平衡及減少能量損耗的功效。Wherein, each axis passes through the center of mass of each wind guide drum. In this way, each of the wind guide rollers can rotate around their respective centers of mass, which has the effect of improving the rotation balance and reducing energy loss.

其中,各該導風滾筒具有數個扇葉,該數個扇葉輻向設置於該頂蓋及該底座的內圈,且該數個扇葉連接該二樞轉部的外周面。如此,該數個直立葉片與該數個扇葉可以共用結構,係具有減輕各該導風滾筒重量以提高轉速的功效。Wherein, each of the wind guide rollers has a plurality of fan blades, the plurality of fan blades are radially arranged on the inner ring of the top cover and the base, and the plurality of fan blades are connected to the outer peripheral surfaces of the two pivoting parts. In this way, the plurality of vertical blades and the plurality of fan blades can share a structure, which has the effect of reducing the weight of each wind guide drum and increasing the rotation speed.

其中,該數個扇葉形成相同攻角及等間距設置。如此,該數個扇葉可以平均導引上升氣流,係具有導風滾筒轉動平衡及減少振動的功效。Among them, the several fan blades form the same angle of attack and are arranged at equal intervals. In this way, the plurality of fan blades can evenly guide the ascending airflow, which has the effect of balancing the rotation of the wind guide drum and reducing vibration.

其中,各該旋轉臂具有一連接部,各該導風滾筒的樞轉部結合於各該旋轉臂的連接部。如此,各該導風滾筒可以樞接於旋轉臂的固定位置,係具有安裝便利及旋轉臂轉動平衡的功效。Wherein, each of the rotating arms has a connecting portion, and the pivoting portion of each of the wind guide drums is coupled to the connecting portion of each of the rotating arms. In this way, each of the wind guide rollers can be pivotally connected to the fixed position of the rotating arm, which has the functions of convenient installation and balanced rotation of the rotating arm.

其中,該數個旋轉臂分別設置於該主軸的兩端,該數個旋轉臂以該主軸為中心成等夾角輻向設置。如此,由該數個旋轉臂傳遞的向心力可以平均作用於該主軸上,係具有穩定該主軸旋轉的功效。Wherein, the plurality of rotating arms are respectively arranged at two ends of the main shaft, and the plurality of rotating arms are arranged radially at an equal included angle with the main shaft as the center. In this way, the centripetal force transmitted by the plurality of rotating arms can act on the main shaft evenly, which has the effect of stabilizing the rotation of the main shaft.

其中,該固定座具有一發電模組,該主軸結合於該發電模組之一轉子,該轉子可以隨該主軸同步且同軸旋轉,該轉子相對該發電模組之一定子旋轉。如此,該定子與該轉子相對旋轉可以產生電磁感應,係具有將動能轉換為電能的功效。Wherein, the fixed base has a power generation module, the main shaft is combined with a rotor of the power generation module, the rotor can rotate synchronously and coaxially with the main shaft, and the rotor rotates relative to a stator of the power generation module. In this way, the relative rotation of the stator and the rotor can generate electromagnetic induction, which has the effect of converting kinetic energy into electrical energy.

其中,該固定座具有一儲電模組,該儲電模組電性連接該發電模組。如此,該儲電模組可以儲存過剩的電力,係具有妥善運用電能的功效。Wherein, the fixing base has a power storage module, and the power storage module is electrically connected to the power generation module. In this way, the power storage module can store surplus power, and has the effect of proper use of power.

其中,各該軸線係鉛直線。如此,該數個導風滾筒的質量分佈容易達到平衡,係具有安裝便利的功效。Among them, each of the axes is a straight line. In this way, the mass distribution of the plurality of wind guide rollers is easily balanced, and the installation is convenient.

其中,各該軸線係沿該主軸旋轉的徑向方向朝外傾斜,各該軸線與鉛直線夾一第一傾斜角。如此,各該導風滾筒產生的向心力可以形成向上分量,藉此平衡該二樞轉部所承受的軸向力,係具有穩定旋轉過程及減少摩擦阻力的功效。Wherein, each of the axes is inclined outward along the radial direction of the rotation of the main shaft, and each of the axes and the vertical line have a first inclination angle. In this way, the centripetal force generated by each of the wind guide rollers can form an upward component, thereby balancing the axial force borne by the two pivoting parts, and has the effect of stabilizing the rotation process and reducing frictional resistance.

其中,各該軸線係沿該主軸旋轉的徑向方向朝外傾斜,在徑向方向各該軸線與鉛直線夾一第一傾斜角,各該軸線係沿該主軸旋轉的切線方向偏斜,在切線方向各該軸線與鉛直線夾一第二傾斜角。如此,除了平衡樞轉軸向力,各該導風滾筒還可以依據風向的變化調整迎風面的角度,係具有提升發電效率的功效。Wherein, each of the axes is inclined outward along the radial direction of the rotation of the main shaft, and each of the axes in the radial direction forms a first inclination angle with the vertical line, and each of the axes is skewed in the tangential direction of the rotation of the main shaft. In the tangential direction, each of the axes and the plumb line sandwich a second inclination angle. In this way, in addition to balancing the pivoting axial force, each of the wind guide drums can also adjust the angle of the windward surface according to the change of the wind direction, which has the effect of improving the power generation efficiency.

其中,該第一傾斜角及該第二傾斜角的角度是5度~45度。如此,該數個導風滾筒的傾斜程度可以依據轉體的質量分佈及風向變化調整,係具有適用於不同環境條件的功效。Wherein, the angle of the first inclination angle and the second inclination angle is 5 degrees to 45 degrees. In this way, the degree of inclination of the plurality of wind guide rollers can be adjusted according to the mass distribution of the rotating body and the change of the wind direction, which has the effect of being suitable for different environmental conditions.

其中,該傳動支架之該數個旋轉臂係可輻向擺動地連接於該主軸,且該數個連接部是萬向接頭。如此,該數個導風滾筒的傾斜角度可以即時作調整,係具有安裝及操作便利的功效。Wherein, the rotation arms of the transmission bracket are connected to the main shaft in a radially swingable manner, and the connection parts are universal joints. In this way, the inclination angles of the plurality of wind guide rollers can be adjusted in real time, which has the effect of convenient installation and operation.

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:In order to make the above and other objectives, features and advantages of the present invention more comprehensible, the following describes the preferred embodiments of the present invention in conjunction with the accompanying drawings in detail as follows:

請參照第1圖所示,其係本發明風力發電裝置的第一實施例,係包含至少三個導風滾筒1、一傳動支架2及一固定座3,該數個導風滾筒1環設於該傳動支架2,該傳動支架2可旋轉地連接於該固定座3。Please refer to Figure 1, which is the first embodiment of the wind power generation device of the present invention, which includes at least three wind guide drums 1, a transmission bracket 2 and a fixing seat 3, the plurality of wind guide drums 1 are arranged around On the transmission bracket 2, the transmission bracket 2 is rotatably connected to the fixing base 3.

請參照第2及3圖所示,各該導風滾筒1係由一頂蓋11及一底盤12分別位於各該導風滾筒1的上底面及下底面,及數個直立葉片13位於各該導風滾筒1的側面,各該直立葉片13的兩端分別連接於該頂蓋11及該底盤12,各該直立葉片13較佳垂直於該頂蓋11及該底盤12,且該數個直立葉片13較佳以等間距環設,係可以導引側向氣流進入該數個直立葉片13之間的空隙,並由氣流推動該數個直立葉片13使各該導風滾筒1轉動;各該導風滾筒1具有二樞轉部14a、14b,該二樞轉部14a、14b分別位於該頂蓋11及該底座12,並使該二樞轉部14a、14b的中心位於一軸線L上,且各該軸線L較佳通過各該導風滾筒1的質量中心,使各該導風滾筒1可以透過該二樞轉部14a、14b作平衡轉動。在本實施例中,該二樞轉部14a、14b係二軸承,各該軸線L係鉛直線。Please refer to Figures 2 and 3, each of the air guide rollers 1 consists of a top cover 11 and a chassis 12 respectively located on the upper and lower bottom surfaces of each of the air guide rollers 1, and several upright blades 13 are located on each of the On the side of the wind guide drum 1, the two ends of each vertical blade 13 are respectively connected to the top cover 11 and the chassis 12, and each vertical blade 13 is preferably perpendicular to the top cover 11 and the chassis 12, and the plurality of vertical blades 13 are The blades 13 are preferably arranged at equal intervals to guide the lateral airflow into the gaps between the plurality of vertical blades 13, and the plurality of vertical blades 13 are pushed by the airflow to rotate each of the wind guide drums 1; The wind guide drum 1 has two pivoting parts 14a, 14b, the two pivoting parts 14a, 14b are respectively located on the top cover 11 and the base 12, and the centers of the two pivoting parts 14a, 14b are located on an axis L, Moreover, each of the axes L preferably passes through the center of mass of each of the wind guide rollers 1, so that each of the wind guide rollers 1 can be rotated in a balanced manner through the two pivoting parts 14a, 14b. In this embodiment, the two pivoting parts 14a, 14b are two bearings, and each axis L is a straight line.

另外,各該導風滾筒1還可以具有數個扇葉15,該數個扇葉15輻向設置於該頂蓋11及該底座12的內圈,且該數個扇葉15連接該二樞轉部14a、14b的外周面。又,該數個扇葉15較佳成相同攻角及等間距設置,係可以導引上升氣流經由該數個扇葉15穿過各該導風滾筒1,並由氣流推動該數個扇葉15,具有驅動各該導風滾筒1旋轉的作用。In addition, each of the air guide drums 1 may also have a plurality of fan blades 15, the plurality of fan blades 15 are radially arranged on the inner ring of the top cover 11 and the base 12, and the plurality of fan blades 15 are connected to the two pivots. The outer peripheral surfaces of the turning parts 14a and 14b. In addition, the plurality of fan blades 15 are preferably arranged at the same angle of attack and equal intervals, which can guide the ascending airflow through the plurality of fan blades 15 to pass through each of the wind guide drums 1, and the plurality of fan blades are pushed by the airflow. 15. It has the function of driving each wind guide drum 1 to rotate.

請參照第1及4圖所示,該傳動支架2係由一主軸21為旋轉中心,該傳動支架2具有數個旋轉臂22,該數個旋轉臂22可供該數個導風滾筒1的樞轉部14a、14b設置,使各該導風滾筒1可以由該樞轉部14a、14b樞接於該旋轉臂22旋轉,較佳該數個旋轉臂22分別設置於該主軸21的兩端,且該數個旋轉臂22較佳以該主軸21為中心成等夾角輻向設置,在本實施例中,各該旋轉臂22各具有一連接部23,使各該導風滾筒1的該二樞轉部14a、14b分別結合於該二旋轉臂22的該二連接部23。Please refer to Figures 1 and 4, the transmission bracket 2 has a main shaft 21 as the center of rotation, the transmission bracket 2 has a plurality of rotating arms 22, the plurality of rotating arms 22 can be used for the plurality of wind guide drum 1 The pivoting portions 14a, 14b are provided so that each of the wind guide drum 1 can be pivotally connected to the rotating arm 22 by the pivoting portions 14a, 14b. Preferably, the plurality of rotating arms 22 are respectively provided at both ends of the main shaft 21 , And the plurality of rotating arms 22 are preferably arranged in radial directions with equal included angles centered on the main shaft 21. In this embodiment, each of the rotating arms 22 has a connecting portion 23 so that the The two pivoting parts 14a and 14b are respectively coupled to the two connecting parts 23 of the two rotating arms 22.

請參照第1圖所示,該傳動支架2藉由該主軸21可旋轉地結合於該固定座3,該固定座3可以具有一發電模組,該主軸21結合於該發電模組之轉子,使該轉子可以隨該主軸21同步且同軸旋轉,而該轉子相對該發電模組之定子旋轉可以產生電力。又,該固定座3還可以包含一儲電模組,該儲電模組電性連接該發電模組,該發電模組產生的電力可以存放於該儲電模組,由該儲電模組將電能重新分配並做妥善運用,發電及儲電相關技術為本領域技術人員所熟悉,於此不再贅述。Please refer to Figure 1, the transmission bracket 2 is rotatably coupled to the fixed base 3 by the main shaft 21, the fixed base 3 may have a power generation module, and the main shaft 21 is coupled to the rotor of the power generation module. The rotor can rotate synchronously and coaxially with the main shaft 21, and the rotor can rotate relative to the stator of the power generation module to generate electricity. In addition, the fixed base 3 may also include a power storage module which is electrically connected to the power generation module. The power generated by the power generation module can be stored in the power storage module. The electric energy is redistributed and properly used, and the related technologies of power generation and storage are familiar to those skilled in the art, and will not be repeated here.

請參照第4圖所示,據由前述結構,各該導風滾筒1以成對之該二旋轉臂22的該二連接部23為中心進行自轉,且各該導風滾筒1以該主軸21為中心進行公轉,其中,自轉之旋轉角速度向量的方向係垂直於自轉的旋轉平面上,且公轉之移動速度向量的方向係公轉的切線方向,依據馬格納斯效應(Magnus Effect),當一個物體旋轉的角速度向量與該物體移動的速度向量不重合時,將產生一個橫向力作用於該物體上,該橫向力的方向係垂直於該角速度向量及該速度向量,如第4圖所示,各該導風滾筒1所產生之橫向力係一向心力C,該向心力C之方向係由各該導風滾筒1中心往該主軸21延伸,該向心力C係各該導風滾筒1繞該主軸21進行公轉之圓周運動所需要的作用力,該向心力C之強度係正比於該角速度向量及該速度向量,因此,當風力持續帶動該數個導風滾筒1自轉時,該數個導風滾筒1可以維持公轉並透過該數個旋轉臂22帶動該主軸21轉動發電,而且各該導風滾筒1的自轉速度愈大所提供之各該向心力C愈大,使該主軸21獲得動力可以提升轉速並增加發電量。Please refer to Figure 4, according to the aforementioned structure, each of the wind guide rollers 1 rotates around the two connecting parts 23 of the pair of the two rotating arms 22, and each of the wind guide rollers 1 is based on the main shaft 21. The direction of the rotation angular velocity vector of the rotation is perpendicular to the rotation plane of the rotation, and the direction of the movement velocity vector of the revolution is the tangent direction of the revolution. According to the Magnus Effect, when an object When the rotating angular velocity vector does not coincide with the moving velocity vector of the object, a lateral force will be generated to act on the object. The direction of the lateral force is perpendicular to the angular velocity vector and the velocity vector. As shown in Figure 4, each The lateral force generated by the wind guide drum 1 is a centripetal force C, the direction of the centripetal force C extends from the center of each wind guide drum 1 to the main shaft 21, and the centripetal force C is caused by each wind guide drum 1 around the main shaft 21 The force required for the circular motion of revolution. The strength of the centripetal force C is proportional to the angular velocity vector and the velocity vector. Therefore, when the wind continues to drive the plurality of wind guide drums 1 to rotate, the plurality of wind guide drums 1 can Maintain the revolution and drive the main shaft 21 to rotate and generate electricity through the rotating arms 22, and the greater the rotation speed of each of the wind guide drums 1, the greater the centripetal force C provided, so that the main shaft 21 can obtain power to increase the speed and increase Power generation.

本發明的風力發電裝置還可以具有一齒輪箱(圖未繪示),該齒輪箱可以限制該主軸21的轉速,以避免該發電模組過載而毀損。藉此,各該導風滾筒1繞該主軸21的公轉速度降低,係可以導致各該導風滾筒1的切線速度向量減少而降低各該向心力C,而且該數個向心力C可以透過該傳動支架2之該數個旋轉臂22互相抵消,避免在減速過程中對該傳動支架2的結構造成破壞,達到抵抗強風吹襲的作用。另外,各該導風滾筒1的該二樞轉部14a、14b未連接該發電模組,因此,各該導風滾筒1的自轉速度不會直接影響發電效率,即使各該導風滾筒1在強風吹襲下加速自轉也不會導致發電過載。The wind power generation device of the present invention may also have a gear box (not shown in the figure), and the gear box can limit the rotation speed of the main shaft 21 to prevent the power generation module from being damaged due to overload. Thereby, the revolution speed of each wind guide drum 1 around the main shaft 21 is reduced, which can cause the reduction of the tangential velocity vector of each wind guide drum 1 to reduce the centripetal force C, and the centripetal forces C can pass through the transmission bracket 2. The several rotating arms 22 cancel each other out, so as to avoid damage to the structure of the transmission bracket 2 during the deceleration process, and achieve the effect of resisting strong wind. In addition, the two pivoting parts 14a, 14b of each wind guide drum 1 are not connected to the power generation module. Therefore, the rotation speed of each wind guide drum 1 does not directly affect the power generation efficiency, even if each wind guide drum 1 is Accelerating rotation under strong wind will not cause power generation overload.

請參照第5圖所示,本發明的風力發電裝置係可以裝設於路燈上,該數個導風滾筒1可以接收360度全方向的水平氣流作旋轉,還可以利用夜間路面的輻射熱所產生的上升氣流輔助運轉,所驅動產生的電力可立即用於夜間照明。Please refer to Figure 5, the wind power generation device of the present invention can be installed on a street lamp. The several wind guide rollers 1 can receive 360-degree horizontal airflow for rotation, and can also use the radiant heat of the road at night. The updraft assists the operation, and the power generated by the drive can be immediately used for night lighting.

請參照第6及7圖所示,其係本發明風力發電裝置的第二實施例,穿過各該導風滾筒1之該二樞轉部14a、14b的各該軸線L係沿公轉的徑向方向朝外傾斜,使各該軸線L與鉛直線夾一第一傾斜角θ1 ,且該向心力C的方向呈現上揚並與水平線夾該第一傾斜角θ1 ,如此,該向心力C的向上分力係可以平衡該二樞轉部14a、14b所承受的軸向力,避免在該二樞轉部14a、14b的位置發生軸向振動,使各該導風滾筒1的自轉過程穩定且減少摩擦阻力,能夠提升轉速達到提高發電效率的作用。在本實施例中,該第一傾斜角θ1 的角度可以是5度~45度。Please refer to Figures 6 and 7, which is the second embodiment of the wind power generation device of the present invention. Each of the axes L passing through the two pivoting portions 14a, 14b of each of the wind guide drums 1 is a diameter along the revolution. Inclined outwards in the direction so that each axis L and the vertical line sandwich a first inclination angle θ 1 , and the direction of the centripetal force C rises and intersects the first inclination angle θ 1 with the horizontal line, so that the centripetal force C is upward The force component system can balance the axial force borne by the two pivoting parts 14a, 14b, avoid axial vibration at the position of the two pivoting parts 14a, 14b, and make the rotation process of each wind guide drum 1 stable and reduce Friction resistance can increase the speed to improve the efficiency of power generation. In this embodiment, the angle of the first inclination angle θ 1 may be 5 degrees to 45 degrees.

請參照第8至10圖所示,其係本發明風力發電裝置的第三實施例,穿過各該導風滾筒1的各該軸線L係沿公轉的徑向方向朝外傾斜,且各該軸線L還可以沿公轉的切線方向偏斜,如第9圖所示,在徑向方向各該軸線L與鉛直線夾該第一傾斜角θ1 ,又,如第10圖所示,在切線方向各該軸線L與鉛直線夾一第二傾斜角θ2 ,該傳動支架2之該數個旋轉臂22係可輻向擺動地連接於該主軸21,使該數個旋轉臂22可以在旋轉平面上的扇形區域作偏擺,且該數個連接部23可以是萬向接頭,使各該導風滾筒1之該第二傾斜角θ2 的角度可以透過各該旋轉臂22的偏擺作調整,如此,該數個導風滾筒1可以依據風向的變化調整迎風面的角度,達到有效利用風力及提升發電效率的作用。在本實施例中,該第一傾斜角θ1 及該第二傾斜角θ2 的角度可以是5度~45度。Please refer to Figures 8 to 10, which is the third embodiment of the wind power generation device of the present invention. Each axis L passing through each of the wind guide rollers 1 is inclined outward in the radial direction of revolution, and each of the The axis L can also be skewed in the tangential direction of the revolution. As shown in Fig. 9, each axis L in the radial direction and the vertical line sandwich the first inclination angle θ 1 , and, as shown in Fig. 10, in the tangent Each direction of the axis L and the vertical line clamp a second inclination angle θ 2 , the rotation arms 22 of the transmission bracket 2 are connected to the main shaft 21 in a radially swingable manner, so that the rotation arms 22 can rotate The fan-shaped area on the plane is deflected, and the connecting portions 23 may be universal joints, so that the second inclination angle θ 2 of each of the wind guide drums 1 can be operated by the deflection of each of the rotating arms 22 Adjustment. In this way, the plurality of wind guide drums 1 can adjust the angle of the windward surface according to the change of the wind direction, so as to achieve the effect of effectively using the wind and improving the efficiency of power generation. In this embodiment, the angle between the first inclination angle θ 1 and the second inclination angle θ 2 may be 5 degrees to 45 degrees.

綜上所述,本發明的風力發電裝置,藉由位於外側的該數個導風滾筒的分散導引風力,再由各該導風滾筒的自轉帶動內側的主軸旋轉並轉換為電能,係可以避免強風直接作用於該主軸而導致結構受損或電機過載,係具有抵抗強風及延長發電機組使用壽命等功效。In summary, the wind power generation device of the present invention uses the dispersed guide wind of the plurality of wind guide drums located on the outer side, and the rotation of each wind guide drum drives the inner main shaft to rotate and convert it into electric energy. Avoid strong wind directly acting on the main shaft and cause structural damage or motor overload. It has the functions of resisting strong wind and prolonging the service life of the generator set.

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 using the above-mentioned preferred embodiments, it is not intended to limit the present invention. Anyone who is familiar with the art without departing from the spirit and scope of the present invention may make various changes and modifications relative to the above-mentioned embodiments. The technical scope of the invention is protected. Therefore, the scope of protection of the invention shall be subject to the scope of the attached patent application.

1:導風滾筒 11:頂蓋 12:底盤 13:直立葉片 14a,14b:樞轉部 15:扇葉 2:傳動支架 21:主軸 22:旋轉臂 23:連接部 3:固定座 L:軸線 C:向心力 θ1 :第一傾斜角 θ2 :第二傾斜角1: Air guide drum 11: Top cover 12: Chassis 13: Upright blades 14a, 14b: Pivoting part 15: Fan blade 2: Transmission bracket 21: Main shaft 22: Rotating arm 23: Connecting part 3: Fixed seat L: Axis C : Centripetal force θ 1 : First inclination angle θ 2 : Second inclination angle

[第1圖]   本發明第一實施例的立體圖。 [第2圖]   本發明第一實施例的局部構造放大圖。 [第3圖]   沿第2圖的A-A線剖面圖。 [第4圖]   本發明第一實施例的運轉情形上視圖。 [第5圖]   本發明的使用情形圖。 [第6圖]   本發明第二實施例的立體圖。 [第7圖]   本發明第二實施例的側視圖。 [第8圖]   本發明第三實施例的立體圖。 [第9圖]   本發明第三實施例的第一角度側視圖。 [第10圖] 本發明第三實施例的第二角度側視圖。[Figure 1] A perspective view of the first embodiment of the present invention. [Figure 2] An enlarged view of the partial structure of the first embodiment of the present invention. [Figure 3] A cross-sectional view along the line A-A in Figure 2. [Figure 4] The top view of the operating situation of the first embodiment of the present invention. [Figure 5] Use case diagram of the present invention. [Figure 6] A perspective view of the second embodiment of the present invention. [Figure 7] Side view of the second embodiment of the present invention. [Figure 8] A perspective view of the third embodiment of the present invention. [Figure 9] A first angle side view of the third embodiment of the present invention. [Figure 10] A second angled side view of the third embodiment of the present invention.

1:導風滾筒1: Wind guide drum

11:頂蓋11: Top cover

12:底盤12: Chassis

13:直立葉片13: Upright blade

14a,14b:樞轉部14a, 14b: pivot

2:傳動支架2: Transmission bracket

21:主軸21: Spindle

22:旋轉臂22: Rotating arm

23:連接部23: Connection part

3:固定座3: fixed seat

Claims (15)

一種風力發電裝置,包含: 至少三個導風滾筒,各該導風滾筒具有一頂蓋及一底盤分別位於各該導風滾筒的上底面及下底面,及數個直立葉片位於各該導風滾筒的側面,各該直立葉片的兩端分別連接該頂蓋及該底盤,該頂蓋及該底座分別具有一樞轉部,各該導風滾筒由一軸線貫穿,該軸線通過該二樞轉部的中心; 一傳動支架,具有一主軸及數個旋轉臂,該數個旋轉臂輻向環設於該主軸,該數個導風滾筒的樞轉部分別連接於該數個旋轉臂;及 一固定座,該傳動支架之該主軸可旋轉地結合於該固定座。A wind power generation device, including: At least three wind guide rollers, each of the wind guide rollers has a top cover and a chassis located on the upper and lower bottom surfaces of each wind guide roller, and several upright blades are located on the side of each wind guide roller, each of which is upright Two ends of the blade are respectively connected to the top cover and the chassis, the top cover and the base respectively have a pivoting part, and each of the wind guide rollers is penetrated by an axis, and the axis passes through the center of the two pivoting parts; A transmission bracket having a main shaft and several rotating arms, the several rotating arms are radially arranged on the main shaft, and the pivoting parts of the several wind guide drums are respectively connected to the several rotating arms; and A fixed seat, and the main shaft of the transmission bracket is rotatably coupled to the fixed seat. 如請求項1之風力發電裝置,其中,各該直立葉片垂直於該頂蓋及該底盤,且該數個直立葉片等間距環設於各該導風滾筒的側面。The wind power generation device of claim 1, wherein each of the upright blades is perpendicular to the top cover and the chassis, and the plurality of upright blades are arranged on the side of each wind guide drum at equal intervals. 如請求項1之風力發電裝置,其中,各該軸線通過各該導風滾筒的質量中心。The wind power generation device of claim 1, wherein each axis passes through the center of mass of each wind guide drum. 如請求項1之風力發電裝置,其中,各該導風滾筒具有數個扇葉,該數個扇葉輻向設置於該頂蓋及該底座的內圈,且該數個扇葉連接該二樞轉件的外周面。For example, the wind power generation device of claim 1, wherein each of the wind guide drum has a plurality of fan blades, the plurality of fan blades are arranged in the inner ring of the top cover and the base, and the plurality of fan blades are connected to the two The outer peripheral surface of the pivoting member. 如請求項4之風力發電裝置,其中,該數個扇葉形成相同攻角及等間距設置。Such as the wind power generation device of claim 4, wherein the plurality of fan blades form the same angle of attack and are arranged at equal intervals. 如請求項1之風力發電裝置,其中,各該旋轉臂具有一連接部,各該導風滾筒的樞轉部結合於各該旋轉臂的連接部。The wind power generation device of claim 1, wherein each of the rotating arms has a connecting portion, and the pivoting portion of each of the wind guide drums is coupled to the connecting portion of each of the rotating arms. 如請求項1之風力發電裝置,其中,該數個旋轉臂分別設置於該主軸的兩端,該數個旋轉臂以該主軸為中心成等夾角輻向設置。For example, the wind power generation device of claim 1, wherein the plurality of rotating arms are respectively arranged at two ends of the main shaft, and the plurality of rotating arms are arranged in radial directions with equal included angles centered on the main shaft. 如請求項1之風力發電裝置,其中,該固定座具有一發電模組,該主軸結合於該發電模組之一轉子,該轉子可以隨該主軸同步且同軸旋轉,該轉子相對該發電模組之一定子旋轉。The wind power generation device of claim 1, wherein the fixed base has a power generation module, the main shaft is coupled to a rotor of the power generation module, the rotor can rotate synchronously and coaxially with the main shaft, and the rotor is relative to the power generation module One of the stators rotates. 如請求項1之風力發電裝置,其中,該固定座具有一儲電模組,該儲電模組電性連接該發電模組。For example, the wind power generation device of claim 1, wherein the fixing base has a power storage module, and the power storage module is electrically connected to the power generation module. 如請求項1至9中任一項之風力發電裝置,其中,各該軸線係鉛直線。The wind power generation device according to any one of claims 1 to 9, wherein each axis is a straight line. 如請求項1至9中任一項之風力發電裝置,其中,各該軸線係沿該主軸旋轉的徑向方向朝外傾斜,各該軸線與鉛直線夾一第一傾斜角。The wind power generation device according to any one of claims 1 to 9, wherein each of the axes is inclined outward along the radial direction of the rotation of the main shaft, and each of the axes and the vertical line have a first inclination angle. 如請求項11之風力發電裝置,其中,該第一傾斜角的角度是5度~45度。Such as the wind power generation device of claim 11, wherein the angle of the first inclination angle is 5 degrees to 45 degrees. 如請求項1至9中任一項之風力發電裝置,其中,各該軸線係沿該主軸旋轉的徑向方向朝外傾斜,在徑向方向各該軸線與鉛直線夾一第一傾斜角,各該軸線係沿該主軸旋轉的切線方向偏斜,在切線方向各該軸線與鉛直線夾一第二傾斜角。The wind power generation device according to any one of claims 1 to 9, wherein each axis is inclined outward along the radial direction of the main shaft rotation, and each axis and the vertical line in the radial direction have a first inclination angle, Each of the axes is skewed along the tangential direction of the rotation of the main shaft, and each of the axes and the plumb line in the tangential direction have a second inclination angle. 如請求項13之風力發電裝置,其中,該傳動支架之該數個旋轉臂係可輻向擺動地連接於該主軸,且該數個連接部是萬向接頭。Such as the wind power generation device of claim 13, wherein the plurality of rotating arms of the transmission bracket are connected to the main shaft in a radially swingable manner, and the plurality of connecting parts are universal joints. 如請求項13之風力發電裝置,其中,該第一傾斜角及該第二傾斜角的角度是5度~45度。Such as the wind power generation device of claim 13, wherein the angle of the first inclination angle and the second inclination angle is 5 degrees to 45 degrees.
TW109107475A 2020-03-06 2020-03-06 Wind power generator TWI720835B (en)

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