Showing posts with label Cogeneration. Show all posts
Showing posts with label Cogeneration. Show all posts

Saturday, June 30, 2012

Organic Rankine Cycle for biomass cogeneration: how it works

Organic Rankine Cycle for biomass cogeneration: how it works Tube. Duration : 1.20 Mins.


Organic Rankine Cycle technology is a reliable and efficient way to get heat and electricity from biomass. How it works: The organic fluid, in a liquid form, is fed into the closed loop through a pump. It then runs through the regenerator coil where it undergoes initial heating. The fluid is then conveyed to the pre-heater and into the evaporator. At this point, the thermal oil in the boiler increases the fluid's temperature until it reaches evaporation point. The vapor generated, then expands into the turbine to produce electrical energy through a generator. Downstream of the turbine, the vapor contributes to pre-heating the organic liquid in the regenerator, contributing to a higher efficiency as more of the thermal energy is utilized in the process. Lastly, back in its liquid form, the organic fluid is conveyed to the pump, and from there it is reintroduced into the closed loop. For more info, visit the website www.turboden.eu

Keywords: turboden, turbine, turbogenerators, ORC, cycle, biomass, cogeneration, geothermal, solar, heat, recovery, Organic, Rankine

Saturday, June 16, 2012

Samtprakarn Cogeneration, Samtprakarn, Thailand

Samtprakarn Cogeneration, Samtprakarn, Thailand Tube. Duration : 4.75 Mins.


Replacement of legacy system with CENTUM CS 3000 ensures steady supply of electricity to Thai National Grid. The Yokogawa CENTUM CS 3000 controls and monitors the plant's HRSG units and its balance of plant (BOP) facilities. Other vendors' systems such as the gas turbine and steam turbine control systems are all integrated through Modbus interfaces with the CENTUM CS 3000 system, so almost all plant data can be viewed at the CENTUM CS 3000 human machine interface (HMI) stations.

Keywords: Samutprakarn, Yokogawa, CENTUM, Industrial Automation

Thursday, April 19, 2012

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Conversion of Coal-Fired Power Plants to Cogeneration and Combined-Cycle: Thermal and Economic Effectiveness


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Conversion of Coal-Fired Power Plant to Cogeneration and Combined-Cycle presents the methodology, calculation procedures and tools used to support enterprise planning for adapting power stations to cogeneration and combined-cycle forms.

The authors analyze the optimum selection of the structure of heat exchangers in a 370 MW power block, the structure of heat recovery steam generators and gas turbines. Conversion of Coal-Fired Power Plant to Cogeneration and Combined-Cycle also addresses the problems of converting existing power plants to dual-fuel gas-steam combined-cycle technologies coupled with parallel systems.

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