Compact heat exchangers for transfer intensification: low by Jiri Jaromir Klemes, Olga Arsenyeva, Petro Kapustenko,

By Jiri Jaromir Klemes, Olga Arsenyeva, Petro Kapustenko, Leonid Tovazhnyanskyy

Compact warmth Exchangers for power move Intensification: Low-Grade warmth and Fouling Mitigation provides theoretical and experimental historical past on warmth move intensification in glossy warmth exchangers. Emphasizing functions in advanced warmth restoration platforms for the method industries, this book:

  • Covers a variety of concerns on the topic of low-grade warmth, together with waste warmth from and constructions, garage and delivery of thermal power, and warmth move gear requirements
  • Explains the fundamental ideas, terminology, and warmth move features of compactness, in addition to the idea that of intensified warmth sector goals at approach integration
  • Pays distinct awareness to the mitigation of fouling in warmth exchangers and their structures, describing fouling deposition and threshold fouling mechanisms
  • Delivers a considerate research of the economics of implementation, contemplating energy–capital trade-off, capital rate estimation, and effort prices
  • Presents illustrative case experiences of particular functions in nutrients and chemical construction plants

Compact warmth Exchangers for power move Intensification: Low-Grade warmth and Fouling Mitigation not merely highlights key advancements in compact warmth exchangers, but in addition instills a realistic wisdom of the most recent technique integration and warmth move enhancement methodologies.

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Extra resources for Compact heat exchangers for transfer intensification: low grade heat and fouling mitigation

Sample text

Considerable amount of energy supplied to the process is discharged as latent heat of vacuum steam at the end, which is discharged to the environment with the use of a vacuum condenser as low-grade heat at temperatures 35 °C–40 °C. When there is a need for low-grade heat of higher temperatures, this can be achieved by obtaining as steam from the intermediate section of the turbine. This heat can be used for district heating or other purposes and the unit can work in a cogeneration heat and power mode.

In most places, geothermal heat has to be extracted. The temperature of the earth rises with depth. The temperature gradient is from 20 °C to 30 °C in most areas of the world, not including areas near tectonic plate boundaries. A typical method of using geothermal heat is injecting cold water deep into the ground and pumping it back when it is heated by the underground heat. Geothermal heat is cheap, sustainable, reliable and environmental friendly. 5 HEAT PUMPS TO INCREASE HEAT POTENTIAL One of the most important problems with utilisation of low-grade heat energy is to find the local consumer whose needs will be satisfied with this energy potential.

Considerable amount of energy supplied to the process is discharged as latent heat of vacuum steam at the end, which is discharged to the environment with the use of a vacuum condenser as low-grade heat at temperatures 35 °C–40 °C. When there is a need for low-grade heat of higher temperatures, this can be achieved by obtaining as steam from the intermediate section of the turbine. This heat can be used for district heating or other purposes and the unit can work in a cogeneration heat and power mode.

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