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1
The reactor would heat a working fluid which would
drive
a
turbine
.
2
This is piped onshore to
drive
a
turbine
and to create desalinated water.
3
Each would heat a working fluid that would
drive
a
turbine
hitched to an electric generator.
4
Fuel oil is used to generate steam, to
drive
a
turbine
operating three thousand, six hundred revolutions a minute.
5
This produces extra energy which you then use to turn water into steam and
drive
a
turbine
to generate electricity.
6
The steam would
drive
a
turbine
,
which would in turn drive a generator capable of producing 200 kilowatts of electricity.
7
And of course there are also new ways of making electricity beyond just burning some rocks or oil to create steam to
drive
a
turbine
.
8
Megalim's tower in Israel will generate heat of up to 540 degrees Celsius (1,000 Fahrenheit), producing steam to
drive
a
turbine
.
9
Water is run through the blocks, generating steam that
drives
a
turbine
.
10
This creates higher pressure on the sea water side,
driving
a
turbine
and producing electricity.
11
The mirrors are used to heat liquid to turn it into steam, which
drives
a
turbine
that generates energy.
12
When electricity is needed, the salt is circulated through a system where it produces steam, which
drives
a
turbine
.
13
In this type of plant, the coolant water flows directly through the fuel, boils and becomes steam, which
drives
a
turbine
.
14
The trash is burned as feedstock at high temperatures to create fuel, gas or steam that
drives
a
turbine
and churns out electricity.
drive
a
turbine
drive