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boiler design tubrbin 600 mw in fully detail

Molten salt heaters use molten potassium nitrate and sodium nitrite as heating media. Molten salt heater will heat the powder salt over the melting point until the viscosity of the molten salt allows circulating pump works, after the whole system is under circulating condition, then feed then into the thermal fluid heater for further circulating rising temperature to make it to be recycling used. Normal media working temperature is 400-550℃, top working temperature could reach 600℃.

Technical advantages

Digitized manufacture

  • The laying-off of steel tube adopts CNC 3D laser cutting machine.
  • The manufacture of square coil tube adopts CNC three-dimensional tube bending machine, no forced shaping.
  • The manufacture of serpentuator adopts serpentuator automatic production line, once-forming.

Long life span

  • The optimized radiation heating surface and convective heating surface, the medium flow is more reasonable, without overheat of the carrier and reduce the life;
  • Convection section: optimize convection heating surface and adopt effective fix and structural support to make its working life longer.
  • Set up effective flue gas partition for convection heating surface and cast partition to make it works longer.

Less fuel consumption

  • Use superior refractory brick to build inside and superior perlite in the middle. Keep the furnace temperature under 50℃ to make the minimization of loss.
  • Furnace adopts double close line coil, which makes heating surface sufficient.

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Boiler design | Boiler | Valve - Scribd - Read book

The tower type design enables a very compact design of the boiler.Modern boiler design 2012 for utility boilers. SCR and APH (air pre heater). 5|Page . Since then the main part of the 400 MW class boilers in Denmark have been of the tower type design supplied by BWE. reduced weight of boiler pressure part. In 1984 a 150 MW unit.

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325 MW in 1965 and to 600 MW in 1969. In 1974, a boiler with a capacity of 1000 MW was brought into operation. Boilers in Japan thus have been undergoing sure steam is used to drive a turbine, which in turn ro-tates the generator directly connected to the turbine to against the design pressure (maximum allowable working

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The two pass boiler has some design limitations which are difficult to avoid. Temperature difference between first pass and vestibule / second pass membrane wall will often lead to crack after some years of operation. The tower type boiler has a very simple design of membrane walls and a smooth increase in temperature.

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flow to the boiler is increased to 12,000 – 15,000 m3 h). When the load of the GTU is 15 MW, the steam tempera-ture in the boiler circuit up to the BV increases at a rate of Optimization of Start-Up of a Fully Fired Combined-Cycle Plant with GT13E2 Gas Turbine 361 t IPC =480°C t IPC =480°C t HPC =380°C t HPC =380°C t IPC =450°C t IPC

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