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2020 | OriginalPaper | Buchkapitel

Performance Analysis of ORC with Environment-Friendly Working Fluids Novec 649 and R1233zd[E] as Alternative to R245fa

verfasst von : Pradeep Kumar Jain, Akhilesh Arora, B. B. Arora

Erschienen in: Advances in Energy and Built Environment

Verlag: Springer Singapore

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Abstract

In the present work, two low GWP fluids, viz. Novec 649 and HFO1233zd[E], have been considered to replace R245fa in ORC with and without IHE. A computational model is developed in EES software for the evaluation of cycles. The cycles are studied on the basis of the first law of thermodynamics, and exergy analysis is also carried out. The results substantiate that the first law efficiency of Novec 649 is lower than R245fa, whereas R1233zd[E] shows better first law efficiency than R245fa. The first law efficiency increases with increase in evaporator temperature, whereas it decreases with increase in condenser temperature. The usage of IHE improves the first law efficiency. The exergetic efficiency for R1233zd[E] is higher than other fluids in comparison with R245fa and Novec 649. The effect of degree of superheat in both cycles on exergetic efficiency is to decrease it.

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Literatur
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Zurück zum Zitat Moles F, Esbri JN, Peris B, Babiloni AM, Cervera AB, Kontomaris K (2014) Low GWP alternative to HFC245fa in organic Rankine cycle for low temperature heat recovery: HCFO-1233zd-E and HFO-1336mzz-Z. Appl Therm Eng 71:204–212CrossRef Moles F, Esbri JN, Peris B, Babiloni AM, Cervera AB, Kontomaris K (2014) Low GWP alternative to HFC245fa in organic Rankine cycle for low temperature heat recovery: HCFO-1233zd-E and HFO-1336mzz-Z. Appl Therm Eng 71:204–212CrossRef
Metadaten
Titel
Performance Analysis of ORC with Environment-Friendly Working Fluids Novec 649 and R1233zd[E] as Alternative to R245fa
verfasst von
Pradeep Kumar Jain
Akhilesh Arora
B. B. Arora
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-13-7557-6_5