变压器空载电流的作用

2025-02-16 03:25:10
推荐回答(5个)
回答1:

1变压器空载电流的作用是使线圈产生涡流从而增大阻抗,阻抗增大空载电流就减少,如此反复直至最小,所以一开始空载电流很大,最后就最小,但这过程时间非常少。2.电流互感器的变比为100,二次侧电流表的读数为4.5A,则被测电路的电流4.5*100=450A

回答2:

变压器的空载电流是由磁化电流(产生磁通)和铁损电流(由铁芯损耗引起)组成。根据有关标准的推荐值以及大量实践表明,小功率电源变压器的空载电流Iio的最大值应不超过Ii的5~8%。如果空载电流超过额定电流的10%,变压器的损耗就会增大;当空载电流超过额定电流的20%时,变压器就不能使用,因为它的温升将超过允许值,工作时间稍长,严重的就会导致烧毁事故。所以,变压器空载电流越小越好。
为了减少空载电流,主要就是从变压器的铁芯入手。
1、提高硅钢片质量。
2、改进铁芯结构。
3、改变电源转换方式
参考链接:http://baike.baidu.com/link?url=_SCcTEXTJYlQH_vRIRAzNbDFtettMB-j0kKxvAKRl9N1NKayEozimYlxKrF4Pttv3ycfNEklrk2VRvoRCXDmxq

回答3:

变压器空载电流的____铜损____
很小,而____铁损____较大,所以变压器空载时,其功率因数___很小___,并且是___固定不变___的。
空载试验的试验电压是低压侧的额定电压,变压器空载试验主要测量空载损耗。空载损耗主要是铁损耗。铁损耗的大小可以认为与负载的大小无关,即空载时的损耗等于负载时的铁损耗,但这是指额定电压时的情况。如果电压偏离额定指,由于变压器铁芯中的磁感应强度处在磁化曲线的饱和段,空载损耗和空载电流都会急剧变化,因此,空载试验应在额定电压下进行。在测量大型变压器的空载或负载损耗时,因为功率因数很低,可达到cosφ小于和等于0.1。所以一定要求采用低功率因数的瓦特表。
如有帮助,望采纳!

回答4:

为什么电阻没变,电压没变,电流却变了呢?这是因为变压器不是一个纯电阻电路,它主要是一个感抗电路,电阻+电感抗=阻抗电流=电压/阻抗副线圈的电流改变,改变了原线圈中的感抗,所以电阻没变,电压没变,电流变化了.附:变压器的原理 当一个正弦交流电压U1加在初级线圈两端时,导线中就有交变电流I1并产生交变磁通ф1,它沿着铁心穿过初级线圈和次级线圈形成闭合的磁路。在次级线圈中感应出互感电势U2,同时ф1也会在初级线圈上感应出一个自感电势E1,E1的方向与所加电压U1方向相反而幅度相近,从而限制了I1的大小。为了保持磁通ф1的存在就需要有一定的电能消耗,并且变压器本身也有一定的损耗,尽管此时次级没接负载,初级线圈中仍有一定的电流,这个电流我们称为“空载电流”。 如果次级接上负载,次级线圈就产生电流I2,并因此而产生磁通ф2,ф2的方向与ф1相反,起了互相抵消的作用,使铁心中总的磁通量有所减少,从而使初级自感电压E1减少,其结果使I1增大,可见初级电流与次级负载有密切关系。当次级负载电流加大时I1增加,ф1也增加,并且ф1增加部分正好补充了被ф2所抵消的那部分磁通,以保持铁心里总磁通量不变。如果不考虑变压器的损耗,可以认为一个理想的变压器次级负载消耗的功率也就是初级从电源取得的电功率。变压器能根据需要通过改变次级线圈的圈数而改变次级电压,但是不能改变允许负载消耗的功率。 2回答

回答5:

4.5*100=450A

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