Small-Scale Solar–Bio-Hybrid Power Generation Using Brayton and Rankine Cycles

Abstract

This study conducted a detailed technical analysis of small-scale solar–bio-hybrid power generation systems using Rankine (steam turbine) and Brayton (gas turbine) cycles. Thermodynamic models were developed to characterize the state of working fluid and select the most suitable solar collection technology for individual power generation systems. Net capacity factor of power generation and utilization efficiencies of solar and biogas energy were used as parameters to evaluate energy generation and conclude the preferred system configuration. The analysis concluded that the steam turbine system has better global efficiency (67.7%) than the gas turbine system (55.7%), while the gas turbine system has better electricity generation efficiency (27.0%) than that (5.6%) of the steam turbine system. The effects of different climates on the selection of suitable hybrid systems were also investigated to delineate suitability and feasibility of different hybrid systems. In addition, the method used in this study can also be applied to investigate and optimize other small-scale hybrid renewable energy generation systems.

Document Details

Document Type
Pub Defense Publication
Publication Date
Jan 17, 2021
Source ID
10.3390/en14020472

Entities

People

  • Abraham Engeda
  • Mauricio Bustamante
  • Wei Liao

Organizations

  • Strategic Environmental Research and Development Program

Tags

Fields of Study

  • Engineering

Readers

  • Energy Conservation and Renewable Energy Engineering.
  • Systems Analysis and Design