arrow
返回

VISIR-2: ship weather routing in Python

delete2024-05-24
delete6
delete
OA
AI
G
Gianandrea Mannarini *
M
Mario Leonardo Salinas
L
Lorenzo Carelli
N
Nicola Petacco
J
Josip Orović
DOI:10.5194/gmd-17-4355-2024delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Ship weather routing, which involves suggesting low-emission routes, holds potential for contributing to the decarbonisation of maritime transport. However, including because of a lack of readily deployable open-source and open-language computational models, its quantitative impact has been explored only to a limited extent.As a response, the graph-search VISIR (discoVerIng Safe and effIcient Routes) model has been refactored in Python, incorporating novel features. For motor vessels, the angle of attack of waves has been considered, while for sailboats the combined effects of wind and sea currents are now accounted for. The velocity composition with currents has been refined, now encompassing leeway as well. Provided that the performance curve is available, no restrictions are imposed on the vessel type. A cartographic projection has been introduced. The graph edges are quickly screened for coast intersection via a K -dimensional tree. A least-CO 2 algorithm in the presence of dynamic graph edge weights has been implemented and validated, proving a quasi-linear computational performance. The software suite's modularity has been significantly improved, alongside a thorough validation against various benchmarks. For the visualisation of the dynamic environmental fields along the route, isochrone-bounded sectors have been introduced.The resulting VISIR-2 model has been employed in numerical experiments within the Mediterranean Sea for the entirety of 2022, utilising meteo-oceanographic analysis fields. For a 125 m long ferry, the percentage saving of overall CO 2 expenditure follows a bi-exponential distribution. Routes with a carbon dioxide saving of at least 2 % with respect to the least-distance route were found for prevailing beam or head seas. Two-digit savings, up to 49 %, were possible for about 10 d in a year. In the case of an 11 m sailboat, time savings increased with the extent of path elongation, particularly during upwind sailing. The sailboat's routes were made approximately 2.4 % faster due to optimisation, with the potential for an additional 0.8 % in savings by factoring in currents.VISIR-2 serves as an integrative model, uniting expertise from meteorology, oceanography, ocean engineering, and computer science, to evaluate the influence of ship routing on decarbonisation efforts within the shipping industry.
Keyword:
AIS DATA
SEARCH
EMISSIONS
PATH

期刊

Geoscientific Model Development 封面图
Geoscientific Model Development
IF:
4.9
论文数:
4.1K
被引数:
2.4W

机构

U
University of Zadar
学者数:
464
论文数: 349
被引数: 285
C
centro euro-mediterraneo sui cambiamenti climatici (cmcc)
学者数:
827
论文数: 610
被引数: 1
U
university of genoa
学者数:
3.0W
论文数: 2.2W
被引数: 20
学者 查看更多机构
引用论文

引用论文

Tannins as antimicrobial agents: Understanding toxic effects on pathogens
err2024-08-01
err0
PREAI
errJianzi Huang; Madiha Zaynab; Yasir Sharif; Jallat Khan; Rashid Al-Yahyai; Monther Sadder; Munawar Ali; Saber R. Alarab; Shuangfei Li
err分享
err收藏
Renewable methanol as a fuel for the shipping industry可再生甲醇作为航运业的燃料
err2018-10-01
err150
PREAI
errSvanberg, Martin; Ellis, Joanne; Lundgren, Joakim; Landalv, Ingvar
err分享
err收藏
err分享
err收藏
学者 查看更多内容