Waste heat recovery Organic Rankine cycles in sustainable energy conversion: A state-of-the-art review

PDF Publication Title:

Waste heat recovery Organic Rankine cycles in sustainable energy conversion: A state-of-the-art review ( waste-heat-recovery-organic-rankine-cycles-sustainable-energ )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 024

Bahram Saadatfar, Reza Fakhrai and Torsten Fransson, JMES Vol 1 Issue 1 2013 [106] Campana F, Bianchi M, Branchini L, De Pascale a., Peretto a., Baresi M, et al. ORC waste heat recovery in European energy intensive industries: Energy and GHG savings. Energy Convers Manag 2013;76:244–52. [107] Liu H, Qiu G, Shao Y, Daminabo F, Riffat SB. Preliminary experimental investigations of a biomass- fired micro-scale CHP with organic Rankine cycle. Int J Low-Carbon Technol 2010;5:81–7. [108] Piacentino A, Cardona E. Optimal design of CHCP plants in the civil sector by thermoeconomics. Appl Energy 2007;84:729–48. [109] Al-Sulaiman FA, Hamdullahpur F, Dincer I I. Performance comparison of three trigeneration systems using organic rankine cycles. Energy 2011;36:5741–54. [110] Chen M, Lund H, Rosendahl LA, Condra TJ. Energy efficiency analysis and impact evaluation of the application of thermoelectric power cycle to today’s CHP systems. Appl Energy 2010;87:1231–8. [111] Maraver D, Sin A, Sebastián F, Royo J. Environmental assessment of CCHP (combined cooling heating and power) systems based on biomass combustion in comparison to conventional generation. Energy 2013;57:17–23. [112] Iora P, Silva P, Invernizzi C. Bottoming micro-Rankine cycles for micro-gas turbines. Appl Therm Eng 2007;27:100–10. [113] Zhang S, Wang H, Guo T. Working fluids of a low-temperature geothermally-powered Rankine cycle for combined power and heat generation system. Sci China Technol Sci 2010;53:3072–8. [114] Zhang SJ, Guo T, Wang HX. Selection of working fluids for a novel low-temperature geothermally- powered ORC based cogeneration system. Energy Convers Manag 2011;52:2384–91. [115] Quoilin S, Declaye S, Legros A, Guillaume L. Working fluid selection and operating maps for Organic Rankine Cycle expansion machines. Int. Compress. Eng. Conf., 2012, p. 1–10. [116] Lemort V, Quoilin S, Cuevas C, Lebrun J. Testing and modeling a scroll expander integrated into an Organic Rankine Cycle. Appl Therm Eng 2009;29:3094–102. [117] Aungier RH. Turbine aerodynamics, axial-flow and radial-inflow turbine design and analysis. ASME 2006. [118] Kang SH, Chung DH. Design and experimental study of organic Rankine cycle and radial turbine. AMSE Turbo Expo 2010, ASME; 2011, p. 1–7. [119] I.K. Smith NRS. The expressor: an efficiency boost to vapour compression systems by power recovery from the throttling process. ASME Heat Pump Ref Sys Des 1995. [120] Declaye S, Quoilin S, Lemort V. Experimental characterization of a hermetic scroll expander for use in a micro-scale Rankine cycle. Proc Inst Mech Eng Part A J Power Energy 2012;226:126–36. [121] Yamada N, Watanabe M, Hoshi A. Experiment on pumpless Rankine-type cycle with scroll expander. Energy 2013;49:137–45. [122] Wang H, Herron T, Peterson RB. Experimental performance of a compliant scroll expander for an organic Rankine cycle. Proc Inst Mech Eng Part A J Power Energy 2009;223:863–72. [123] Wang H, Peterson RB, Herron T. Performance of a small-scale regenerative Rankine power cycle employing a scroll expander. Proc Inst Mech Eng Part A J Power Energy 2008;222:271–82. [124] Manolakos D, Papadakis G, Kyritsis S, Bouzianas K. Experimental evaluation of an autonomous low-temperature solar Rankine cycle system for reverse osmosis desalination. Desalination 2007;203:366–74. [125] Taccani R, Micheli D, Clemente S, Reini M. Energy efficiency analysis of Organic Rankine Cycles with scroll expanders for cogenerative applications. Appl Energy 2012;97:792–801. [126] Kim HJ, Yu JS, Moon JH, Cho NJ. Design of a scroll expander for an Organic Rankine Cycle with biomass energy source. 23RD IIR Int. Congr. Refrig., vol. 23, 2011, p. 3573–9. [127] Li J, Li Y, Pei G, Ji J. Evaluation of external heat loss from a small-scale expander used in organic Rankine cycle. Appl Therm Eng 2011;31:2694–701. 184

PDF Image | Waste heat recovery Organic Rankine cycles in sustainable energy conversion: A state-of-the-art review

PDF Search Title:

Waste heat recovery Organic Rankine cycles in sustainable energy conversion: A state-of-the-art review

Original File Name Searched:

12ES11Fa.242118.pdf

DIY PDF Search: Google It | Yahoo | Bing

NFT (Non Fungible Token): Buy our tech, design, development or system NFT and become part of our tech NFT network... More Info

IT XR Project Redstone NFT Available for Sale: NFT for high tech turbine design with one part 3D printed counter-rotating energy turbine. Be part of the future with this NFT. Can be bought and sold but only one design NFT exists. Royalties go to the developer (Infinity) to keep enhancing design and applications... More Info

Infinity Turbine IT XR Project Redstone Design: NFT for sale... NFT for high tech turbine design with one part 3D printed counter-rotating energy turbine. Includes all rights to this turbine design, including license for Fluid Handling Block I and II for the turbine assembly and housing. The NFT includes the blueprints (cad/cam), revenue streams, and all future development of the IT XR Project Redstone... More Info

Infinity Turbine ROT Radial Outflow Turbine 24 Design and Worldwide Rights: NFT for sale... NFT for the ROT 24 energy turbine. Be part of the future with this NFT. This design can be bought and sold but only one design NFT exists. You may manufacture the unit, or get the revenues from its sale from Infinity Turbine. Royalties go to the developer (Infinity) to keep enhancing design and applications... More Info

Infinity Supercritical CO2 10 Liter Extractor Design and Worldwide Rights: The Infinity Supercritical 10L CO2 extractor is for botanical oil extraction, which is rich in terpenes and can produce shelf ready full spectrum oil. With over 5 years of development, this industry leader mature extractor machine has been sold since 2015 and is part of many profitable businesses. The process can also be used for electrowinning, e-waste recycling, and lithium battery recycling, gold mining electronic wastes, precious metals. CO2 can also be used in a reverse fuel cell with nafion to make a gas-to-liquids fuel, such as methanol, ethanol and butanol or ethylene. Supercritical CO2 has also been used for treating nafion to make it more effective catalyst. This NFT is for the purchase of worldwide rights which includes the design. More Info

NFT (Non Fungible Token): Buy our tech, design, development or system NFT and become part of our tech NFT network... More Info

Infinity Turbine Products: Special for this month, any plans are $10,000 for complete Cad/Cam blueprints. License is for one build. Try before you buy a production license. May pay by Bitcoin or other Crypto. Products Page... More Info

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com (Standard Web Page)