ORC technology for waste-wood to energy conversion in the furniture manufacturing industry
Author(s) -
Riccardo Moro,
Piero Pinamonti,
Mauro Reini
Publication year - 2008
Publication title -
thermal science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.339
H-Index - 43
eISSN - 2334-7163
pISSN - 0354-9836
DOI - 10.2298/tsci0804061m
Subject(s) - organic rankine cycle , environmental science , process engineering , context (archaeology) , biomass (ecology) , degree rankine , computer science , thermal efficiency , waste heat recovery unit , rankine cycle , waste heat , thermal energy , energy consumption , combustion , waste management , power (physics) , mechanical engineering , engineering , paleontology , oceanography , chemistry , physics , electrical engineering , heat exchanger , organic chemistry , quantum mechanics , geology , biology
Exploitation of low and medium temperature thermal sources, in particular those based on biomass combustion and on industrial residual heat recovery, has been increasingly investigated in the last decades, accordingly to the growing interest towards reduction in primary energy consumption and environmental issues. Organic Rankine Cycle (ORC) technology allows designing power plants that are less demanding in terms of auxiliaries, safety systems, maintenance and operating costs when compared to conventional water steam power plants. \udTo support the preliminary technical and economic design of this kind of plants in different contexts, a simulation code of part load and off-design operation of an ORC unit for Combined Heat and Power (CHP) has been developed. In the paper, taking the real situation of a furniture manufacturing factory as a starting point, it is shown how all energy flows occurring all year long inside the CHP plant, can be estimated on the basis of the thermal user duty time profile, the available biomass flow rate and the adopted operation strategy. This information is the basis in order to correctly evaluate the energetic, economic and environmental advantages of the proposed technical solution, with respect to a particular context, as it is shown in the concluding part of the paper
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