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廣州英格Engga發電機維修保養

英格Engga發電機常用機型有:EG225S-40N EG225S-50N EG225M-60N EG225M-70N EG225L-80N EG225L-90N EG225L-100N EG225L-120N EG280M-140N EG280M-160N EG280L-180N EG280L-200N EG280L-230N EG280L-250N EG315M-280N EG315M-300N EG315M-320N EG315L-360N EG315L-400N EG355M-450N EG355L-500N EG355L-560N EG355L-600N EG400S-640N EG400M-720N EG400L-800N EG400L-900N EG400L-1000N EG450S-1200N EG450M-1350N EG450L-1500N EG450L-1600N EG500M-1800N EG500L-1920N EG560S-2000N EG560M-2200N EG560L-2400N EG560L-2600N EG560L-2800N
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                         三相交流同步發電機的組成及工作原理介紹

三相同步發電機由原動機拖動直流勵磁的同步發電機轉子,以轉速n(rpm)旋轉,根據電磁應原理,三相定子繞阻便感應交流電勢。定子繞阻若接入用電負載,電機就有交流電能輸出。若認為磁路不飽和,則電樞磁勢與磁極磁勢各自產生相應的磁通,并在定子繞阻 內感因電勢。對于 極電機,電樞磁勢所感應的電勢可以表示為Ea=-jIaXa. Xa被稱為電樞反應電抗。 Xa+Xσ=Xs隱極同步發電機的同步電抗。對于凸極電機,因直軸.交軸處磁阻不同,可將電樞磁勢分解成Fad和Faq分別研究。它們所感應的電勢分別寫成Ead=-jIdXad和Eaq=-jIqXaq,式中Xad.Xaq分別是直軸及交軸電樞反應電抗。Xad+Xσ=Xd.Xaq+Xσ=Xq,Xd和Xq分別為直軸同步電抗和交交軸同步電抗。Xσ為漏磁通引起的電抗 。同步電抗是決定同步電機性能的一個重要參數,通個開路實驗和穩態實驗就可求取。
同步發電機的空載特性是一個很重要的特性,它直接影響著電機的其它特性,通個開路實驗還可以發現勵磁系統的故障。態短路特性和零功率因數特性也都屬于同步電機的重要特性,和空載特性配合,可以求出同步發電機的態參數及確定出補償電樞的勵磁電流。
同步發電機的外特性曲線用來求取電機運行時的重要指標之一及電壓調整率。
同步發電機的調整特性可使運行人員知道在功率因數一定
時,不改變端電壓值.負載電流到多小而不使勵磁電流超過規定值。
國家標準"GB1029" 對三相同步電機的實驗方法作了具體規定,適用于普通三相同步發電機的型式實驗或檢查實驗。通過實驗可以確定該電機各性 能指標。各種電機的效率和電壓調整率均在部頒標準的相應技術條件中有具體規定,將實驗結果與標準規定數據比較即可確定某同步發電機的質量和性能了。
若求取額定勵磁電流和電壓變化率,一般用做圖法,跟國家標準GB1029介紹,其具體步驟如下:
(1) 如圖1上繪制開路特性曲線,并沿縱軸額定相電壓相量UN.
(2)自原點O作額定電樞電流相量IN,與縱軸成ΦN角(cosΦN 為額定功率因數)。
(3)從相量UN終端作出電樞繞組電阻壓降INRa平行與相量 ,IN,Ra為基準工作溫度時的繞組電阻(對大型電機的Ra可忽略不計,對小型電機可進可行實際測量),從INRa終端作一垂直于相量IN的保梯電抗壓降相
量INXp(Xp的保梯電抗壓降相量INXp(Xp的求法見下(5),UN和INRa及
和INRa及INXp的相量和為相量Ep,Ep和UN的夾角δ。
(4)由開路特性確定的對應于Ep的勵磁電流為Ifp在相量終端上與縱
與縱軸成δ+ΦN角做相量Ifa
(5)額定電樞電流時電樞反應的勵磁電流Ifa和保梯電抗Xp的確定:
如右下圖上的開路特性曲線,并在圖上作F點,F點的縱坐標為額定電壓,橫坐標為零功率因數特性上對應于于額定電樞電壓.額定電樞電流的勵磁電流通過通過F點作平行于橫軸的直線CF,取CF的長度等于三相穩態短特性曲線上對應于額定樞電流的勵磁電流Ifk,自點C作直線平行于開路特性的直線部分于開路特性交于H,自CF作的垂線HK交CF于K,線段
HK的長度即為額定電樞電流時在保梯電流電抗Xp上的壓降△Up,則保梯
電抗Xp,可按下式計算。
Xp=△Up/IN
若用標么值繪制開路特性曲線時,則,即可直接得出.線段的長度代表對應于時的勵磁電流.
?(6)與的向量和即為額定勵磁電流。
(7)由開路特性曲線求出對應與開路電壓。電壓變化率按下式機算
△U=(U0-UN)/UN*100
注:實驗室里為教學實驗用的同步電機通常是小型的。
  <一> 發電機概述
    發電機是將其他形式的能源轉換成電能的機械設備,它由水輪機、汽輪機、柴油機或其他動力機械驅動,將水流,氣流,燃料燃燒或原子核裂變產生的能量轉化為機械能傳給發電機,再由發電機轉換為電能。發電機在工農業生產,國防,科技及日常生活中有廣泛的用途。
    發電機的形式很多,但其工作原理都基于電磁感應定律和電磁力定律。因此,其構造的一般原則是:用適當的導磁和導電材料構成互相進行電磁感應的磁路和電路,以產生電磁功率,達到能量轉換的目的。
    發電機已實施出口產品質量許可制度,未取得出口質量許可證的產品不準出口。
    <二>發電機的分類可歸納如下:
    發電機分:直流發電機和交流發電機
    交流發電機分:同步發電機和異步發電機(很少采用)
    交流發電機還可分為單相發電機與三相發電機。
    <三>發電機結構及工作原理
    發電機通常由定子、轉子、端蓋及軸承等部件構成。
    定子由定子鐵芯、線包繞組、機座以及固定這些部分的其他結構件組成。
    轉子由轉子鐵芯(或磁極、磁扼)繞組、護環、中心環、滑環、風扇及轉軸等部件組成。
    由軸承及端蓋將發電機的定子,轉子連接組裝起來,使轉子能在定子中旋轉,做切割磁力線的運動,從而產生感應電勢,通過接線端子引出,接在回路中,便產生了電流。
    柴油發電機工作原理
    柴油機驅動發電機運轉,將柴油的能量轉化為電能。
    在柴油機汽缸內,經過空氣濾清器過濾后的潔凈空氣與噴油嘴噴射出的高壓霧化柴油 充分混合,在活塞上行的擠壓下,體積縮小,溫度迅速升高,達到柴油的燃點。柴油被點燃,混合氣體劇烈燃燒,體積迅速膨脹,推動活塞下行,稱為‘作功’。各汽缸按一定順序依次作功,作用在活塞上的推力經過連桿變成了推動曲軸轉動的力量,從而帶動曲軸旋轉。
    將無刷同步交流發電機與柴油機曲軸同軸安裝,就可以利用柴油機的旋轉帶動發電機的轉子,利用‘電磁感應’原理,發電機就會輸出感應電動勢,經閉合的負載回路就能產生電流。
    這里只描述發電機組最基本的工作原理。要想得到可使用的、穩定的電力輸出,還需要一系列的柴油機和發電機控制、保護器件和回路。 詳細請進>>> 汽油發電機原理
    汽油機驅動發電機運轉,將汽油的能量轉化為電能。
    在汽油機汽缸內,混合氣體劇烈燃燒,體積迅速膨脹,推動活塞下行作功。各汽缸按一定順序依次作功,作用在活塞上的推力經過連桿變成了推動曲軸轉動的力量,從而帶動曲軸旋轉。將無刷同步交流發電機與汽油機曲軸同軸安裝,就可以利用汽油機的旋轉帶動發電機的轉子,利用‘電磁感應’原理,發電機就會輸出感應電動勢,經閉合的負載回路就能產生電流。
 

Three-phase synchronous generator in the composition and working principle of

Three phase synchronous generator composed of a prime mover driven DC excitation of synchronous generator rotor, with the speed of n (RPM ) rotation, according to the electromagnetic principle, three-phase stator winding is induced AC voltage. The stator winding to access electricity load, motor with AC power output. If the circuit is not saturated, then the armature MMF and magnetic potential each produce the corresponding flux, and the stator winding internal sense because of potential. For a motor, armature magnetic potential the induction electric potential can be expressed as Ea=-jIaXa. Xa is called the armature reaction reactance. Xa+X σ=Xs non-salient pole synchronous generator synchronous reactance. For salient pole motor, because the straight shaft. Shaft resistance, armature MMF can be decomposed into Fad and Faq respectively. They are Induction EMF are written as Ead=-jIdXad and Eaq=-jIqXaq, type Xad.Xaq are direct axis and axis armature reaction reactance. Xad+X σ=Xd.Xaq+Xσ =Xq, Xd and Xq respectively direct axis synchronous reactance and quadrature axis synchronous reactance. X σfor magnetic leakage flux caused by reactance. Synchronous reactance of synchronous motor performance is an important parameter, through open experiment and steady-state experiments can be obtained.

Synchronous generator no-load characteristics is a very important characteristic, it directly affects the motor characteristics, through an open experiment can also be found in excitation system fault. State of short circuit characteristic and zero power factor characteristic are the important characteristics of synchronous motor, and no-load characteristics matching, can find out the synchronous generator state parameters and determine the exciter armature current compensation.

Synchronous generator external characteristic curve is used to calculate the motor operation is one of the important indexes and voltage regulation rate.

Synchronous generator regulation characteristic can make the operation staff know the power factor is constant, does not change the terminal voltage value. The load current to the many small and not make the field current exceeds a specified value.

The national standard" GB1029" of a three-phase synchronous motor experiment method to make specific provisions, apply to ordinary3-phase synchronous generator type test or examination experiment. Through the experiment to determine the motor each performance index. A variety of motor efficiency and voltage regulation are in the standard of the corresponding technical conditions are specified, the experimental results and the standard data can determine the quality and performance of a synchronous generator.

If thou take rated excitation current and voltage change rate, usually used for graph method, with the national standard GB1029are introduced, the specific steps are as follows:

(1) as shown in Figure1is drawn on the open circuit characteristic curve, and along the longitudinal axis of rated voltage phasors UN.

(2) the origin of O rated armature current phasor IN,Φ N angle to the longitudinal axis ( COS ΦN rated power factor ).

(3) from the phasor UN terminal to the armature winding resistance drop INRa parallel and vector, IN, Ra as the benchmark when the operating temperature of the winding resistance ( for large motor Ra is negligible, the small motor into the feasible practical measurement ), from the INRa terminal as a perpendicular to the phasor IN Potier electric pressure drop phase

INXp ( Xp Potier reactance voltage phasor calculation method of INXp ( Xp see below (5), UN and INRa and

And INRa and INXp phase and phase of Ep, Ep and UNδangle.

(4) by the open circuit characteristic identification corresponding to the excitation current of Ifp in Ep phase terminal and longitudinal

With the longitudinal axis ofδ +Φ N angle phasors Ifa

(5) rated armature current of armature reaction of the excitation current of Ifa and Xp determine Potier reactance:

If the right below the open circuit characteristic curve, and on the map in the F, F point ordinate at rated voltage, the abscissa zero power factor characteristic corresponding to rated armature voltage rated armature current excitation current is passed through the F for horizontal axis parallel to the straight line CF, CF length equivalent to the three-phase steady state short characteristic curve corresponding to the rated armature current excitation current of Ifk, since C as a straight line parallel to the straight part of the open circuit characteristic in the open circuit characteristic to H, from CF CF to K vertical HK, line segment

The length of HK is rated armature current in the Potier reactance voltage drop current on Xp△ Up, then the Potier

Reactance Xp, can be calculated by the following equation.

Xp = Up / IN

If the per-unit value drawing open circuit characteristic curve, then, can be obtained directly. The length of a line segment representation corresponds to the excitation current.

? (6) and the vector and is rated excitation current.

(7) by the open circuit characteristic curve of corresponding and open circuit voltage. Voltage change rate of press machine

△ U= ( U0-UN ) /UN*100

Note: the laboratory for experimental teaching by the synchronous motor is usually small.

< a > generator overview

The generator is converted to other forms of energy into electrical energy machinery and equipment, which is composed of turbine, steam turbine, diesel or other power machinery drive, water, air, fuel combustion or nuclear fission energy into mechanical energy to pass generator, the generator is converted to electrical energy. Generators in the industrial and agricultural production, national defense, science and technology and daily life in a wide range of uses.

The generator form a lot, but the working principle is based on the law of electromagnetic induction and electromagnetic force law. Therefore, the structure is a general principle : use appropriate magnetic and conductive material to each other in the electromagnetic induction circuit and the circuit, to generate the electromagnetic power, achieve the purpose of energy conversion.

The generator has been the implementation of export product quality permit system, did not obtain a license of export quality products are not allowed to export.

< two > generator classification can be summarized as follows:

Generator: DC generator and the AC generator

Alternator: synchronous generator and induction generator ( rarely used )

AC generator can also be divided into single phase generator with a three-phase generator.

< three > generator structure and working principle

Generator stator, rotor, usually by the end cover and bearing components.

The stator consists of a stator iron core, coil winding machine, and the fixation of these parts of the other structural components.

The rotor comprises a rotor iron core ( or magnetic, magnetic yoke ) winding, retaining ring, ring, ring, a fan and a rotary shaft and other components.

By bearing and end cover of the generator stator, rotor connected together, so that the rotor can rotate in a stator, to cut magnetic force lines, thereby to generate induced electromotive force, led out through a connecting terminal, connected to the circuit, they generate electricity.

The working principle of diesel generator

Diesel driven generator, diesel energy into electrical energy.

In the diesel engine cylinder, after the air cleaner filtered clean air and nozzle ejecting pressure atomized diesel are fully mixed, in the piston upward pressure, reduced volume, temperature rises rapidly, reaching diesel ignition. Diesel fuel is ignited, mixed gas burning, the volume of rapid expansion, pushing the piston downward, known as the ' work '. Each cylinder according to a certain sequence of work, on the piston thrust through the connecting rod to drive the crankshaft strength, so as to drive the crankshaft.

The brushless synchronous AC generator and diesel engine crankshaft mounted coaxially, can use diesel rotary drives the rotor of the generator, using the ' induction ' principle, generator can output the induced electromotive force, the closure of the load circuit can produce electricity.

Here only to describe the basic principle of generating unit. To be usable, stable power output, we also need a series of diesel engine and generator control, protection devices and circuits. Detailed in gasoline generator principle.

Petrol engine driven generator, fuel energy into electrical energy.

In a gasoline engine cylinder, mixed gas burning, the volume of rapid expansion, pushes the piston down to work. Each cylinder according to a certain sequence of work, on the piston thrust through the connecting rod to drive the crankshaft strength, so as to drive the crankshaft. The brushless synchronous AC generator and the crankshaft of the gasoline engine is coaxially mounted, can use gasoline engine rotation drives the rotor of the generator, using the ' induction ' principle, generator can output the induced electromotive force, the closure of the load circuit can produce electricity.

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