Raw Data Library
About
Aims and ScopeAdvisory Board Members
More
Who We Are?
User Guide
Green Science
​
​
Sign inGet started
​
​

About
Aims and ScopeAdvisory Board Members
More
Who We Are?
User GuideGreen Science

Sign inGet started
RDL logo

Verified research datasets. Instant access. Built for collaboration.

Navigation

About

Aims and Scope

Advisory Board Members

More

Who We Are?

Add Raw Data

User Guide

Legal

Privacy Policy

Terms of Service

Support

Got an issue? Email us directly.

Email: info@rawdatalibrary.netOpen Mail App
​
​

© 2025 Raw Data Library. All rights reserved.
PrivacyTerms
  1. Raw Data Library
  2. /
  3. Publications
  4. /
  5. A temperature-dependent fire risk assessment framework for solar photovoltaic station

Verified authors • Institutional access • DOI aware
50,000+ researchers120,000+ datasets90% satisfaction
Article
English
2023

A temperature-dependent fire risk assessment framework for solar photovoltaic station

0 Datasets

0 Files

English
2023
Sustainable Energy Technologies and Assessments
Vol 60
DOI: 10.1016/j.seta.2023.103467

Get instant academic access to this publication’s datasets.

Create free accountHow it works

Frequently asked questions

Is access really free for academics and students?

Yes. After verification, you can browse and download datasets at no cost. Some premium assets may require author approval.

How is my data protected?

Files are stored on encrypted storage. Access is restricted to verified users and all downloads are logged.

Can I request additional materials?

Yes, message the author after sign-up to request supplementary files or replication code.

Advance your research today

Join 50,000+ researchers worldwide. Get instant access to peer-reviewed datasets, advanced analytics, and global collaboration tools.

Get free academic accessLearn more
✓ Immediate verification • ✓ Free institutional access • ✓ Global collaboration
Access Research Data

Join our academic network to download verified datasets and collaborate with researchers worldwide.

Get Free Access
Institutional SSO
Secure
This PDF is not available in different languages.
No localized PDFs are currently available.
Long Shi
Long Shi

University Of Science And Technology Of China

Verified
Ye Song
Shaokun Zou
Qichang Dong
+4 more

Abstract

Since solar photovoltaic (PV) stations are experiencing rapid growth, their potential fire risk needs to be studied as a priority to avoid catastrophic consequences. This study developed a temperature-dependent fire risk assessment framework and applied it to a typical solar PV station. To overcome the challenges of lacking probabilities and subjective judgment, the overall fire risk of a solar PV station was calculated by combining fault tree analysis, Cloud-Analytic Hierarchy Process and Weighted Average Cloud Aggregation algorithms. Additionally, as an innovative part of the developed framework, an information diffusion technique was introduced to quantify the impacts of air temperature on the probability of those influencing events and the solar PV fire spread risk. It was known that high ambient temperatures and solar radiations, which lead to overheating and installation error of solar PV modules, are the important causes of fire incidents. The results showed that influences of the air temperatures cannot be ignored as certain basic events’ probabilities are affected. The occurrence possibility of installation error decreases with increasing air temperature and then increases with a higher air temperature, whose trend is validated by previous experiments. After synthesizing the impacts, the trend of the fire spread risk considering different air temperatures was quantified, showing the lowest risk at an air temperature of 10 °C. The developed framework of this study presents a new perspective for future dynamic risk assessment of those scenarios under changing environmental and other conditions.

How to cite this publication

Ye Song, Shaokun Zou, Qichang Dong, Lin Huang, Zihao Song, Hui Yang, Long Shi (2023). A temperature-dependent fire risk assessment framework for solar photovoltaic station. Sustainable Energy Technologies and Assessments, 60, pp. 103467-103467, DOI: 10.1016/j.seta.2023.103467.

Related publications

Why join Raw Data Library?

Quality

Datasets shared by verified academics with rich metadata and previews.

Control

Authors choose access levels; downloads are logged for transparency.

Free for Academia

Students and faculty get instant access after verification.

Publication Details

Type

Article

Year

2023

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Sustainable Energy Technologies and Assessments

DOI

10.1016/j.seta.2023.103467

Join Research Community

Access datasets from 50,000+ researchers worldwide with institutional verification.

Get Free Access