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Assessment of yearly available days for wind turbine installation in the western sea of Taiwan

机译:评估台湾西海风力涡轮机安装的年度可用天

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Offshore wind farm is a renewable energy that has been commercially operated in Europe over 3.8 GW capacities in 2011 and will be targeted upon 150 GW in 2030. Taiwan also plans to install 3 GW offshore wind farms in 2030. Thus, a number of condition assessments and engineering designs are being studied, such as the site selection, the wind turbines layout, the environmental impact assessment, the maritime engineering, the installation and maintenance fleets. In this paper, we carried out the winds and waves as the critical conditions of sea status for the installation of offshore wind turbines. The winds and waves data were collected by a data buoy which was deployed near the entrance of Taichung Harbor. The wind speeds were measured at 15 m above the sea surface. In the case study, we assumed a jack-up vessel will be used for installation of wind turbines. Then, some benchmarking conditions are filled into the assessment. For example, the conditions for operated criteria were suggested as wind speeds below 15 m/s and significant wave heights below 1.5 m in a water depth of 30 m. Moreover, a continuous working duration is considered as 15 hours for installation of a wind turbine from a tower, a nacelle, and blades. Eventually, the yearly available days for the wind turbine installation were assessed about 175 days. Different working modes, such as piling, cable laying, and maintenance, were discussed those yearly available days as well. From the operation and maintenance (O&M) supporting vessels working days (260 days), an offshore wind farm owned 50 wind turbines and each needs maintenance of 260 hours every year that was a benchmark scenario. The supporting vessels require 6 at least that had been estimated.
机译:海上风电场是2011年在欧洲商业运营的可再生能源,在2011年的3.8 GW容量中,将于2030年的150 GW。台湾还计划于2030年安装3 GW海上风电场。因此,一些条件评估正在研究和工程设计,如站点选择,风力涡轮机布局,环境影响评估,海上工程,安装和维护舰队。在本文中,我们将风和波浪作为海上风力涡轮机安装的海上地位的危重条件。风和波浪数据由数据浮标收集,该数据浮标部署在台中港入口处。风速在海面上方15米处测量。在案例研究中,我们假设将用于安装风力涡轮机的升降机。然后,将一些基准标记条件填补到评估中。例如,在水深30μm的水深,在低于15米/秒的风速和低于1.5米以下的风速下方的风速。此外,连续工作持续时间被认为是从塔,机舱和叶片的风力涡轮机安装的15小时。最终,风力涡轮机安装的年度可用日期约为175天。不同的工作模式,例如打桩,电缆铺设和维护,也是每年可用的日子讨论。从运营和维护(O&M)支持船舶工作日(260天),海上风电场拥有50个风力涡轮机,每年需要维护260小时,这是一个基准方案。支撑血管至少需要估计6。

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