Design and manufacturing a small-scale radial-inflow turbine for clean organic Rankine power system

被引:23
作者
Al Jubori, Ayad M. [1 ,3 ]
Al-Mousawi, Fadhel N. [2 ]
Rahbar, Kiyarash [3 ]
Al-Dadah, Raya [3 ]
Mahmoud, Saad [3 ]
机构
[1] Univ Technol Baghdad, Commun Engn Dept, Baghdad, Iraq
[2] Univ Karbala, Dept Mech Engn, Karbala, Iraq
[3] Univ Birmingham, Sch Engn, Birmingham, W Midlands, England
基金
英国工程与自然科学研究理事会;
关键词
Organic Rankine cycle; Radial-inflow turbine; Preliminary design; 3D CFD simulations; Thermodynamic analysis; Organic fluids; Turbine manufacturing; PERFORMANCE ANALYSIS; CYCLE SYSTEM; OPTIMIZATION; EXPANDER; MIXTURE; R245FA;
D O I
10.1016/j.jclepro.2020.120488
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
With growing on the energy demand and availability of the low-grade temperature heat source, the organic Rankine cycle as a power system can be efficiently utilized to generate electricity. The turbine design and its performance have the main impact on determining the system power and overall system efficiency. Therefore, design a small-scale organic Rankine system requires the development of an appropriate turbine. To achieve this aim, this work offers an innovative complete design method to develop a radial-inflow turbine for small-scale organic Rankine cycle power applications, which includes a preliminary design (i.e. one-dimensional design calculation phase) and a three-dimensional flow analysis using the computational fluid dynamic technique. A thermodynamic analysis of the organic Rankine cycle was integrated with the design methodology. Where the three-dimensional geometry model was built based on the thermodynamic and aerodynamic design, and then was imported into the ANSYS-CFX software to conduct viscous numerical simulations. The optimum design of the radial-inflow turbine was manufactured using a three-dimensional printing (pioneering) technique, and the experimental testing was conducted at off-design points to validate the turbine design. The evaluation of the turbine's performance (efficiency and power) was presented under design and off-design points in terms of rotational speeds, expansion ratios, and inlet temperatures with five different organic fluids. The turbine numerical results showed that R600 as a working fluid has a higher predicted turbine efficiency of 78.32% and power of 4.8 kW with cycle thermal efficiency of 9.15% compared with 8.045% for R245fa. Depending on the experimental results at off-design points, the highest cycle thermal efficiency of 4.25% with a turbine efficiency of 45.22% was achieved. These results assured the precision of the proposed PD methodology at off-design points in making performance maps of the turbine. (C) 2020 Elsevier Ltd. All rights reserved.
引用
收藏
页数:13
相关论文
共 50 条
[41]   Detailed Design and Aerodynamic Performance Analysis of a Radial-Inflow Turbine [J].
Noughabi, Amir Karimi ;
Sammak, Shervin .
APPLIED SCIENCES-BASEL, 2018, 8 (11)
[42]   Experimental study of a small scale organic Rankine cycle waste heat recovery system for a heavy duty diesel engine with focus on the radial inflow turbine expander performance [J].
Alshammari, Fuhaid ;
Pesyridis, Apostolos ;
Karvountzis-Kontakiotis, Apostolos ;
Franchetti, Ben ;
Pesmazoglou, Yagos .
APPLIED ENERGY, 2018, 215 :543-555
[43]   Off-Design Analysis of a Small-Scale Axial Turbine in Organic Rankine Cycle [J].
Lou, Zeyu ;
He, Weifeng ;
Yao, Zhaohui ;
Wang, Chen ;
Su, Pengfei ;
Han, Dong .
SUSTAINABILITY, 2025, 17 (04)
[44]   Optimal design and tip leakage flow characteristics analysis of radial inflow turbine used in organic Rankine and vapor compression refrigeration system [J].
Yao, Yubo ;
Fang, Song ;
Zhu, Shaolong ;
Xu, Zhuoren ;
Zhang, Hanwei ;
Gan, Haoran ;
Iqbal, Qasir ;
Qiu, Limin ;
Wang, Kai .
ENERGY, 2024, 301
[45]   INFLUENCE OF SUPERSONIC NOZZLE DESIGN PARAMETERS ON THE UNSTEADY STATOR-ROTOR INTERACTION IN RADIAL-INFLOW TURBINES FOR ORGANIC RANKINE CYCLES [J].
Cappiello, Alessandro ;
Tuccillo, Raffaele .
PROCEEDINGS OF ASME TURBO EXPO 2021: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, VOL 6, 2021,
[46]   Influence of Supersonic Nozzle Design Parameters on the Unsteady Stator-Rotor Interaction in Radial-Inflow Turbines for Organic Rankine Cycles [J].
Cappiello, Alessandro ;
Tuccillo, Raffaele .
JOURNAL OF TURBOMACHINERY-TRANSACTIONS OF THE ASME, 2022, 144 (10)
[47]   Development and experimental study of a small-scale compressed air radial inflow turbine for distributed power generation [J].
Rahbar, Kiyarash ;
Mahmoud, Saad ;
Al-Dadah, Raya K. ;
Moazami, Nima ;
Mirhadizadeh, Seyed A. .
APPLIED THERMAL ENGINEERING, 2017, 116 :549-583
[48]   Modelling and parametric analysis of small-scale axial and radial outflow turbines for Organic Rankine Cycle applications [J].
Al Jubori, Ayad M. ;
Al-Dadah, Raya K. ;
Mahmoud, Saad ;
Daabo, Ahmed .
APPLIED ENERGY, 2017, 190 :981-996
[49]   Unidimensional and 3D Analyses of a Radial Inflow Turbine for an Organic Rankine Cycle under Design and Off-Design Conditions [J].
Caballero, Gaylord Carrillo ;
Escorcia, Yulineth Cardenas ;
Venturini, Osvaldo Jose ;
Lora, Electo Eduardo Silva ;
Meza, Anibal Alviz ;
Castellanos, Luis Sebastian Mendoza .
ENERGIES, 2023, 16 (08)
[50]   Design of a small-scale organic Rankine cycle engine used in a solar power plant [J].
Georges, E. ;
Declaye, S. ;
Dumont, O. ;
Quoilin, S. ;
Lemort, V. .
INTERNATIONAL JOURNAL OF LOW-CARBON TECHNOLOGIES, 2013, 8 :I34-I41