An Experimental Investigation of Water Vapor Condensation from Biofuel Flue Gas in a Model of Condenser, (1) Base Case: Local Heat Transfer without Water Injection

Author:

Poškas Robertas,Sirvydas Arūnas,Kulkovas Vladislavas,Poškas Povilas

Abstract

Waste heat recovery from flue gas based on water vapor condensation is an important issue as the waste heat recovery significantly increases the efficiency of the thermal power units. General principles for designing of this type of heat exchangers are known rather well; however, investigations of the local characteristics necessary for the optimization of those heat exchangers are very limited. Investigations of water vapor condensation from biofuel flue gas in the model of a vertical condensing heat exchanger were performed without and with water injection into a calorimetric tube. During the base-case investigations, no water was injected into the calorimetric tube. The results showed that the humidity and the temperature of inlet flue gas have a significant effect on the local and average heat transfer. For some regimes, the initial part of the condensing heat exchanger was not effective in terms of heat transfer because there the flue gas was cooled by convection until its temperature reached the dew point temperature. The results also showed that, at higher Reynolds numbers, there was an increase in the length of the convection prevailing region. After that region, a sudden increase was observed in heat transfer due to water vapor condensation.

Funder

Lietuvos Mokslo Taryba

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference21 articles.

1. Heat Exchanger Design Handbook;Thulukkanam,2013

2. Toxicological effects of particulate emissions – A comparison of oil and wood fuels in small- and medium-scale heating systems

3. Survey of the Present State of Particle Precipitation Devices for Residential Biomass Combustion with a Nominal Capacity up to 50 KW in IEA Bioenergy Task32,2013

4. Evaluation of retrofitting a conventional natural gas fired boiler into a condensing boiler

5. A Novel Modelling Approach for Condensing Boilers Based on Hybrid Dynamical Systems

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