Optimization Study on Fluids for the Gravity-Driven Organic Power Cycle
The organic Rankine cycle (ORC) is efficient in using low-grade heat energy, while low pump efficiency and high pump leakage are usually serious problems. A gravity-driven organic power cycle (GDOPC) uses gravity instead of a pump to pressurize working fluid and has the potential to avoid problems a...
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doaj-1c185611cc2f424f95f232b899552c6f2020-11-24T20:40:18ZengMDPI AGEnergies1996-10732019-02-0112473210.3390/en12040732en12040732Optimization Study on Fluids for the Gravity-Driven Organic Power CycleWeixiu Shi0Lisheng Pan1School of Environment and Energy Engineering, Beijing University of Civil Engineering and Architecture, Beijing 100044, ChinaState Key Laboratory of High Temperature Gas Dynamics, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, ChinaThe organic Rankine cycle (ORC) is efficient in using low-grade heat energy, while low pump efficiency and high pump leakage are usually serious problems. A gravity-driven organic power cycle (GDOPC) uses gravity instead of a pump to pressurize working fluid and has the potential to avoid problems associated with the pump. A theoretical method is used to study the performance and suitability of several fluids for GDOPC. The results show that the flow efficiency in high vertical pipes and the pump efficiency determine whether GDOPC gives better performance than ORC or not. When R245fa is selected as working fluid and evaporating temperature is 62 °C, specific energy of GDOPC (flow efficiency is 80%) is 2.5% higher than that of ORC (pump efficiency is 60%). The improvement degree of specific energy and the liquid column height increase with increasing evaporating temperature. R1234yf and R227ea give good performance with specific energy of 4.84 kJ/kg and 4.82 kJ/kg, respectively, while they need a liquid column as much as 76.55 m and 45.65 m, respectively. Although R365mfc and cyclopentane do not give the most excellent cycle performance, they need liquid column height as low as 9.04 m and 10.88 m, respectively. Fluid with low saturated pressure and high density may need low liquid column height and has the advantage to be used in practical applications.https://www.mdpi.com/1996-1073/12/4/732gravity driven organic power cycle (GDOPC)organic Rankine cycle (ORC)theoretical studyfluid optimization |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Weixiu Shi Lisheng Pan |
spellingShingle |
Weixiu Shi Lisheng Pan Optimization Study on Fluids for the Gravity-Driven Organic Power Cycle Energies gravity driven organic power cycle (GDOPC) organic Rankine cycle (ORC) theoretical study fluid optimization |
author_facet |
Weixiu Shi Lisheng Pan |
author_sort |
Weixiu Shi |
title |
Optimization Study on Fluids for the Gravity-Driven Organic Power Cycle |
title_short |
Optimization Study on Fluids for the Gravity-Driven Organic Power Cycle |
title_full |
Optimization Study on Fluids for the Gravity-Driven Organic Power Cycle |
title_fullStr |
Optimization Study on Fluids for the Gravity-Driven Organic Power Cycle |
title_full_unstemmed |
Optimization Study on Fluids for the Gravity-Driven Organic Power Cycle |
title_sort |
optimization study on fluids for the gravity-driven organic power cycle |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2019-02-01 |
description |
The organic Rankine cycle (ORC) is efficient in using low-grade heat energy, while low pump efficiency and high pump leakage are usually serious problems. A gravity-driven organic power cycle (GDOPC) uses gravity instead of a pump to pressurize working fluid and has the potential to avoid problems associated with the pump. A theoretical method is used to study the performance and suitability of several fluids for GDOPC. The results show that the flow efficiency in high vertical pipes and the pump efficiency determine whether GDOPC gives better performance than ORC or not. When R245fa is selected as working fluid and evaporating temperature is 62 °C, specific energy of GDOPC (flow efficiency is 80%) is 2.5% higher than that of ORC (pump efficiency is 60%). The improvement degree of specific energy and the liquid column height increase with increasing evaporating temperature. R1234yf and R227ea give good performance with specific energy of 4.84 kJ/kg and 4.82 kJ/kg, respectively, while they need a liquid column as much as 76.55 m and 45.65 m, respectively. Although R365mfc and cyclopentane do not give the most excellent cycle performance, they need liquid column height as low as 9.04 m and 10.88 m, respectively. Fluid with low saturated pressure and high density may need low liquid column height and has the advantage to be used in practical applications. |
topic |
gravity driven organic power cycle (GDOPC) organic Rankine cycle (ORC) theoretical study fluid optimization |
url |
https://www.mdpi.com/1996-1073/12/4/732 |
work_keys_str_mv |
AT weixiushi optimizationstudyonfluidsforthegravitydrivenorganicpowercycle AT lishengpan optimizationstudyonfluidsforthegravitydrivenorganicpowercycle |
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