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Simulation-Based Decision Support for Agrivoltaic Systems

delete2024-09-01
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OA
AI
Y
Yuri Bellone
M
Michele Croci
G
Giorgio Impollonia
A
Amirhossein Nik Zad
M
Michele Colauzzi
P
Pietro Elia Campana
S
Stefano Amaducci *
DOI:10.1016/j.apenergy.2024.123490delete
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摘要

摘要

En 中文
In this study, a framework to compare the performances of different agrivoltaic systems, or agriphotovoltaic systems, in a range of environments was developed and tested. A set of key performance indicators derived from simulations was combined in a multi criteria decision analysis approach. The agriphotovoltaic systems were then ranked based on their similarity to the optimal solution for a specific environment. Main key performance indicators were crop ratio, energy conversion per hectare, specific energy yield, water use efficiency, and initial capital expenditure. Four agriphotovoltaics, namely vertical, interspace mono -axial, overhead mono -axial, and an overhead bi-axial, with five pitch width for each agriphotovoltaic and cultivated with processing tomato, were modelled across five sites (from the North to the South of Italy) during a ten-year period. The different scenarios were simulated in Scilab, in which a radiation model and GECROS crop model were coded. Global irradiation distribution beneath modules, and thus crop yield, were more homogeneous in vertical and overhead mono -axial than in the other agriphotovoltaic. Processing tomato demonstrated high adaptability to shading and yield was marginally affected in most of the agriphotovoltaic system alternatives. Vertical and overhead mono -axial accounted for the least yield reduction when the same pitch is compared. Overall, overhead mono -axial APV with 6 m pitch ranked first in each site when a 0.7 crop ratio threshold was considered. This framework could serve as a valuable tool for assessing the performance of different solution of agriphotovoltaics systems and their compliance with national regulation, and economic and technical targets.
Keyword:
Agrivoltaic
APV
MCDA
Crop model
Processing tomato
Irradiation distribution
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期刊

Applied Energy 封面图
Applied Energy
IF:
11
论文数:
2.6W
被引数:
17.8W

机构

C
Catholic University of the Sacred Heart
学者数:
3.1W
论文数: 2.1W
被引数: 22
M
Malardalen University
学者数:
1.2K
论文数: 1.5K
被引数: 3
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