The effects of being at the end of a 33KV transmission line will result in a higher voltage. This is due to variation in the perameters that dictate how the transmission is sent and received.
High voltage reduces the amount of energy wasted in transmission lines.
Single Circuit PantherACSR Conductor
220v, 415v, 6.6 kv, 11kv,33kv,132kv,400kv
750MVA to 1000MVA for 33kV and 350MVA for 11kV
It isn't. In the UK, transmission and distribution voltages are 400 kV, 275 kV, 132 kV, 66 kV, 33kV, and 11 kV.
Usage of such high voltages will increase the efficiency of the transmission lines and decreases the losses in the line. It also reduces the requirement of conductor size.
Its just a matter of standard. In my area, for instance, we use 13.2 KV for distribution lines, and 69 KV / 138 KV for transmission lines.
33kv
what is the value of the capacitance in the transmission line to earth, i know it is different for different values ,i mean for 11KV,33Kv and so on, but don't know how much
transmission and distribution of electricity are the way of regulate voltage to the minimum rate in which can be benefit to the consumers. From generating station , voltage generated is up 16/25kv which step up upto 330kv this generating voltage now step down in the transmission station through the step down transformer which is 132kv this voltage now transmitting to distribution station where voltage now step down to 33kv, this 33kv now stepdown to 415v for three line and 240/220v for a line for the uses of consumers.
1.2 meter