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电控多瓶采水装置
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作者 廉双喜 《海洋技术》 1995年第3期97-104,共8页
经过多年努力,我们研制的电控多瓶采水装置,目前已由用户进行了海上试验和试用。这套装置最大工作深度为6000m,可与传输式CTD仪联用,也可单独使用,从船上手控或程控,在任意深度或任意时刻完成一系列采水功能。它的研制成... 经过多年努力,我们研制的电控多瓶采水装置,目前已由用户进行了海上试验和试用。这套装置最大工作深度为6000m,可与传输式CTD仪联用,也可单独使用,从船上手控或程控,在任意深度或任意时刻完成一系列采水功能。它的研制成功,填补了国内空白,可以取代进口,为我国深海远洋调查提供服务。本文介绍其原理和关键技术。 展开更多
关键词 海洋水文 调查 多瓶采水装置 电控采水装置
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一种新型的赤潮预报系统
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作者 史丽明 《海洋渔业》 1986年第3期139-139,共1页
日本佐贺县伊万里市名村造船所,在科学技术厅和新技术开发团的委托,开发研究“一种新型预报赤潮发生的自动观测系统”,完成了栓在海上自动观察永质变化等的“水质连续自动观察浮标”和受信记录在同一浮标中观察数据的“遥测受信记录... 日本佐贺县伊万里市名村造船所,在科学技术厅和新技术开发团的委托,开发研究“一种新型预报赤潮发生的自动观测系统”,完成了栓在海上自动观察永质变化等的“水质连续自动观察浮标”和受信记录在同一浮标中观察数据的“遥测受信记录装置”。 展开更多
关键词 赤潮 预报方法 采水装置 水质自动测量装置 温度
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Experimental study of water effects on gas desorption during highpressure water injection
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作者 ZHANG Guo-hua LIU Xian-xin BI Ye-wu PU Wen-long 《Journal of Coal Science & Engineering(China)》 2011年第4期408-413,共6页
For the question of applying high-pressure water injection to increase gas extraction efficiency by increasing the permeability of water to drive gas action, an independently designed gas desorption experimental measu... For the question of applying high-pressure water injection to increase gas extraction efficiency by increasing the permeability of water to drive gas action, an independently designed gas desorption experimental measuring device was used under the condition of external solution invasion. The law of water effect on gas desorption was obtained after water invasion through experiment for the first time. The results show that water's later invasion not only can make the quantity of gas dcsorp- tion greatly reduced, but also can make gas desorption end early. Therefore, when evaluating the applications of high-pressure water injection to increase gas extraction efficiency, we should take water damaging effects on gas desorption into account. 展开更多
关键词 gas desorption gas extraction high pressure water injection later invasion
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Floating production storage and offloading systems' cost and motion performance: A systems thinking application
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作者 Rini NISHANTH Andrew WHYTE V.John KURIAN 《Frontiers of Engineering Management》 2018年第3期357-368,共12页
Floating production storage and offloading (FPSO) units increasingly represent a practical and economic means for deep-water oil extraction and production. Systems thinking gives a unique opporamity to seek a balanc... Floating production storage and offloading (FPSO) units increasingly represent a practical and economic means for deep-water oil extraction and production. Systems thinking gives a unique opporamity to seek a balance between FPSO technical performance(s), with whole-cost; stakeholder decision-making is charged to align different fit-for-use design specification options' that address technical-motion(s), with respective life-cycle cost analyses (LCCA). Soft system methodology allows situation based analyses over set periods-of-time by diagnosing the problem-at-hand; namely, assessing the antecedents of life-cycle cost relative to FPSO sub- component design alternatives. Alternative mooring- component comparisons for either new-build hulls or refurbished hulls represent an initial necessary considera- tion to facilitate extraction, production and storage of deep- water oil reserves. Coupled dynamic analysis has been performed to generate FPSO motion in six degrees of freedom using SESAM DeepC, while life-cycle cost analysis (LCAA) studies give net-present-value comparsons reflective of market conditions. A parametric study has been conducted by varying wave heights from 4 - 8 m to understand FPSO motion behavior in the presence of wind and current, as well as comparing the motions of turreted versus spread mooring design alternatives. LCCA data has been generated to compare the cost of such different mooring options/hull conditions over 10 and 25- year periods. Systems thinking has been used to explain the interaction of problem variables; resultantly this paper is able to identify explicit factors affecting the choice of FPSO configurations in terms of motion and whole-cost, toward assisting significantly with the front-end engineering design (FEED) phase of fit-for-purpose configured FPSOs, in waters off Malaysia and Australia. 展开更多
关键词 FPSO LCCA spread/turret-mooring DeepC COST motion soft-systems
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