va tech hydro in india - ANDRITZ Vertical volute pumps
va tech hydro in india - ANDRITZ Vertical volute pumps
va tech hydro in india - ANDRITZ Vertical volute pumps
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curement and construction (EPC)<br />
contractor for the project is a consortium<br />
<strong>in</strong>clud<strong>in</strong>g VA TECH HYDRO<br />
and Technip of Italy.<br />
VA TECH HYDRO’s Comb<strong>in</strong>ed Cycle<br />
Division will lead the consortium<br />
and be responsible for the basic layout<br />
and overall project co-ord<strong>in</strong>ation<br />
of the power plant and supply,<br />
erection and commission<strong>in</strong>g of:<br />
•2 model 9FA gas turb<strong>in</strong>es manufactured<br />
by General Electric and<br />
generators<br />
•2 heat recovery steam generators<br />
•1 steam turb<strong>in</strong>e<br />
•1 steam turb<strong>in</strong>e generator<br />
•3 step-up transformers<br />
•1 DCS system<br />
•1 balance of plant - electrical<br />
All equipment comes from first<br />
class European suppliers. VA TECH<br />
HYDRO will be the first non-Italian<br />
company to build a power plant of<br />
that k<strong>in</strong>d. TECHNIP ITALY will be responsible<br />
for the balance of the<br />
plant, the cool<strong>in</strong>g towers, a 380 kV<br />
GIS and all civil work. This contract<br />
represents an important step towards<br />
further expand<strong>in</strong>g the market<br />
position of VA TECH HYDRO <strong>in</strong><br />
Europe. It confirms the strategic<br />
direction taken by VA TECH HYDRO<br />
by focus<strong>in</strong>g on Europe as its local<br />
and key market, unlike the USA,<br />
where <strong>in</strong> the last years additional<br />
power stations have already been<br />
erected. The reason beh<strong>in</strong>d further<br />
development <strong>in</strong> Europe is the necessity<br />
of replac<strong>in</strong>g old oil or coal-<br />
fired plants. The plant, which will<br />
use natural gas, is scheduled to beg<strong>in</strong><br />
commercial operation <strong>in</strong> early<br />
2006.<br />
Technical data:<br />
Gas turb<strong>in</strong>e:<br />
1x type PG9351FA<br />
251,50 MW output<br />
fuel: s<strong>in</strong>gle fuel (natural gas)<br />
Dry Low NOx<br />
Steam turb<strong>in</strong>e:<br />
2 cas<strong>in</strong>gs:<br />
HIP/LP condens<strong>in</strong>g type<br />
291 MW output<br />
Generator:<br />
2x315 MVA, 15.75kV (for GT)<br />
1x354 MVA, 15,75kV (for ST)<br />
HRSG:<br />
HP steam:<br />
128 bar; 566°C; 279 t/h<br />
IP/HRH steam:<br />
28 bar; 565°C; 319 t/h<br />
LP steam: 5 bar; 276°C; 36,5 t/h<br />
Step-up transformer:<br />
332 MVA, 380 kV/15,75 kV<br />
Johann Schuh (project manager)<br />
Phone +43/1 89100 3338<br />
johann.schuh@<strong>va</strong><strong>tech</strong>-<strong>hydro</strong>.at<br />
Maldwyn Jones (project director)<br />
Phone +43/1 89100 3455<br />
maldwyn.jones@<strong>va</strong><strong>tech</strong>-<strong>hydro</strong>.at<br />
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