On Sat, 14 Feb 2004 05:35:08 +0000 (UTC) Michael Moroney wrote: | snipped-for-privacy@ipal.net writes: | |>On Fri, 13 Feb 2004 20:33:37 +0000 (UTC) Michael Moroney wrote: | |>| Now that I think of it, you can cheat even more and use only |>| one transformer! Again, get a 240V center tapped grounded delta |>| service, and use a "Scott-T" transformer configuration. This essentially |>| generates 2 phase service from 3 phase service, and yes it is balanced |>| among the 3 phases as long as the load is balanced among the two |>| sources. The transformer is 208V-240VCT and has to be 50% beefier |>| than the transformers in the previous examples. Connect as follows: | |>I believe the current angle will be plus and minus 30 degrees reactive |>on 2 of the phases with this. A Scott-T is meant to supply a 3 phase |>load, not a 1 phase load. The power company might not like this due to |>the low power factor (0.5). | | A Scott-T converts between 90 degree 2 phase and 3 phase. It will work | fine with two equal single phase loads, the same way 3 phase Y works fine | with 3 equal single phase loads. | | I saw a mathematical discussion that shows how a (properly loaded) Scott-T | does not have any reactive power issues. While it appears at first glance | the transformer connected phase-phase would have 30 degree reactive load | on each of two phases, the current through its center tap counteracts it. | Unfortunately, I don't remember the proof other than the CT current was | the key, and it does present a unity power factor (given resistive loads | and ideal transformers) on all phases. | | I suppose one way to look is the power drawn in purely resistive loads. | The two loads differ by 90 degrees so the voltage across one will go as | sin(theta) the other as cos(theta). The power drawn will be as | sin^2(theta)*R+cos^2(theta)*R = 1*R or R. Reflected back through ideal | transformers will mean the draw on the 3 phase will also be constant, or | equal draw from all phases.
I still don't see how you're getting the current phase angle changed for the one winding that is attached to the high leg.
If this really does work, then would not a cascade of several (3 or more) T-T transformers in 120 rotation be able to spread a 1 phase load over a 3 phase supply almost in balance?