Experimental Investigation with Steady-State Detection in a Micro-ORC Test Bench

被引:6
作者
Bianchi, M. [1 ]
Branchini, L. [1 ]
De Pascale, A. [1 ]
Orlandini, V [1 ]
Ottaviano, S. [1 ,2 ]
Peretto, A. [1 ]
Melino, F. [1 ]
Pinelli, M. [2 ]
Spina, P. R. [2 ]
Suman, A. [2 ]
机构
[1] Univ Bologna, DIN, Viale Risorgimento 2, I-40136 Bologna, Italy
[2] Univ Ferrara, ENDIF, Via Saragat 1, I-44122 Ferrara, Italy
来源
ATI 2017 - 72ND CONFERENCE OF THE ITALIAN THERMAL MACHINES ENGINEERING ASSOCIATION | 2017年 / 126卷
关键词
ORC; test bench; thermodynamic measurements; system efficiency; steady state detection;
D O I
10.1016/j.egypro.2017.08.222
中图分类号
O414.1 [热力学];
学科分类号
摘要
The exploitation of low grade thermal sources is recognized as a feasible strategy in order to pursue the primary energy saving target worldwide. This concept, adaptable to a number of different applications, is aimed at exploiting low-value heat fluxes that would be wasted otherwise; additional useful electric power can be produced locally, with ORC energy systems; this is one of the most promising heat recovery solutions. In particular, the paper refers to the test bench developed in the laboratories of the University of Bologna; a prototypal micro-ORC energy system is here investigated. The micro-ORC system presents a reciprocating three-piston expander operated with refrigerant fluid. Heat is provided to the ORC from via hot water at low temperature, in order to simulate a constant low-enthalpy heat recovery process. The system rejects unused heat via a water-cooled condenser, dependent on the external ambient conditions. The test bench layout and the real-time data acquisition system, developed in the LabVIEW environment, are here described. In particular, the paper focus is on the system steady-state detection methodology. Starting from an experimental campaign, steadystate operational points are identified through an appropriate literature approach. The measured quantities and calculated performance have been post-processed in order to evaluate the influence on steady state detection, of different hot source temperature set points. Moreover, the selected steady-state detection method is suitable for real-time implementation, due to its simple formulation and the low number of variables required to be stored at time step of acquisition. (C) 2017 The Authors. Published by Elsevier Ltd.
引用
收藏
页码:469 / 476
页数:8
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