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At-Sea Test of a Large Scale OTEC Pipe

机译:大型OTEC管的海上测试

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An important goal in the Ocean Thermal Energy Conversion (OTEC) development program is to demonstrate the viability of the present technology to satisfactorily design, fabricate and operate a cold water pipe (CWP) in an ocean environment. The cold water pipe, named for its use in conveying cold water from ocean depths, is the most critical element in any OTEC design. In order to provide engineering information concerning the many risk areas associated with the CWP, a significant size fiberglass reinforced plastic (FRP) pipe was designed, fabricated and deployed. The test article, a scaled representation of a 40 megawatt sized CWP, was 8 feet in diameter and 400 feet long and had a sandwich wall construction of FRP facesheets over a syntactic foam core. The CWP was fabricated in sections on the United States mainland and the sections joined in Honolulu, Hawaii. Instrumentation including strain gages, accelerometers and differential pressure transducers was installed on the CWP to provide measurement data. After attachment to a floating platform, the CWP was towed to sea and moored for a three week field test in April 1983. A major goal of this experiment is to provide data toward a better understanding of the pipe dynamics and to provide measurements for validating the analytical models used in predicting the CWP/ platform loads, dynamic responses and stress levels. During the experiment, 30 hours of data were collected from 100 channels at a 1 Hz rate by the data acquisition system. Preliminary analysis of the time series records of the environmental loading and structural response data has indicated high quality data return. All information available from the testing activities at this time indicates that the test objectives were successfully met.
机译:海洋热能转换(OTEC)开发计划中的一个重要目标是证明本技术在海洋环境中令人满意地设计,制造和操作冷水管(CWP)的可行性。以在海洋深处输送冷水而闻名的冷水管是任何OTEC设计中最关键的要素。为了提供与CWP相关的许多风险领域的工程信息,设计,制造和部署了尺寸较大的玻璃纤维增​​强塑料(FRP)管。该测试文章按比例表示40兆瓦CWP,直径为8英尺,长为400英尺,在复合泡沫芯上具有FRP面板的夹心墙结构。 CWP是在美国大陆的部分地区制造的,这些部分在夏威夷的火奴鲁鲁加入。在CWP上安装了包括应变计,加速度计和差压传感器在内的仪器,以提供测量数据。固定在浮动平台上之后,CWP在1983年4月被拖到海中并停泊了为期三周的野外试验。该实验的主要目的是提供数据,以更好地了解管道动力学并提供用于验证管道动力的测量数据。用于预测CWP /平台载荷,动态响应和应力水平的分析模型。在实验过程中,数据采集系统以1 Hz的频率从100个通道中收集了30个小时的数据。对环境载荷和结构响应数据的时间序列记录的初步分析表明,高质量的数据返回。此时测试活动提供的所有信息都表明已成功达到测试目标。

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    《OCEANS '83》|1983年|p.734-738|共5页
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  • 中图分类 海洋学;
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