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加快推进微藻能源(固碳)产业化进程——访华东理工大学生物反应器工程国家重点实验室李元广教授
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《生物产业技术》 2016年第3期59-62,共4页
李元广,"973"计划能源领域微藻能源项目首席科学家。1994年博士毕业于清华大学化工系。现为华东理工大学生物反应器工程国家重点实验室教授,二级教授,博导,海洋生化工程研究室主任。长期从事微藻生物技术和微生物农药等方面的研发工作... 李元广,"973"计划能源领域微藻能源项目首席科学家。1994年博士毕业于清华大学化工系。现为华东理工大学生物反应器工程国家重点实验室教授,二级教授,博导,海洋生化工程研究室主任。长期从事微藻生物技术和微生物农药等方面的研发工作,在国内外独创了一项微藻培养领域崭新的平台技术——"异养-稀释-光诱导串联培养", 展开更多
关键词 微藻 生物反应器工程 固碳 微生物农药 海洋生化工程 平台技术 异养 博士毕业 李元 国家重点实验室
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Deep-water Riser Fatigue Monitoring Systems Based on Acoustic Telemetry 被引量:5
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作者 LI Baojun WANG Haiyan +3 位作者 SHEN Xiaohong YAN Yongsheng YANG Fuzhou HUA Fei 《Journal of Ocean University of China》 SCIE CAS 2014年第6期951-956,共6页
Marine risers play a key role in the deep and ultra-deep water oil and gas production. The vortex-induced vibration (VIV) of marine risers constitutes an important problem in deep water oil exploration and productio... Marine risers play a key role in the deep and ultra-deep water oil and gas production. The vortex-induced vibration (VIV) of marine risers constitutes an important problem in deep water oil exploration and production. VIV will result in high rates of structural failure of marine riser due to fatigue damage accumulation and diminishes the riser fatigue life. In-service monitoring or full scale testing is essential to improve our understanding of V1V response and enhance our ability to predict fatigue damage. One ma- rine riser fatigue acoustic telemetry scheme is proposed and an engineering prototype machine has been developed to monitor deep and ultra-deep water risers' fatigue and failure that can diminish the riser fatigue life and lead to economic losses and eco-catastrophe. Many breakthroughs and innovation have been achieved in the process of developing an engineering prototype machine. Sea trials were done on the 6th generation deep-water drilling platform HYSY-981 in the South China Sea. The inclination monitoring results show that the marine riser fatigue acoustic telemetry scheme is feasible and reliable and the engineering prototype machine meets the design criterion and can match the requirements of deep and ultra-deep water riser fatigue monitoring. The rich experience and field data gained in the sea trial which provide much technical support for optimization in the engineering prototype machine in the future. 展开更多
关键词 marine riser fatigue monitoring engineering prototype machine underwater telemetry
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