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Online Monitoring of Corrosion in Slightly Saline Geothermal Water in Iceland

机译:在线监测冰岛微咸地热水中的腐蚀

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Online monitoring of corrosion is a valuable tool for heating systems to minimize risk of damage due to steel corrosion. Monitoring with weight loss coupons has the limitation that it takes a while to recognize the problem and a great damage may have already happened. A cost effective device for online monitoring, not relying on electricity or telecommunication at the production site is of great value in small heating systems or at a drill sites before harnessing. The current project, aimed at development and testing of such a device, was conducted at a well site under testing. By drilling near the farm site Keldunes in rural NE Iceland in 2006, a low temperature geothermal field was verified. The production water has a temperature of approximately 76°C. The water is slightly saline, 1-2 %o, depending on relative mixture of the different aquifers in the well. The origin of the water is mixed, partly derived from geothermal effluent water from the Krafla high temperature geothermal field further inland and partly of more local origin. Production testing of the well revealed severe calcite scaling. Scaling tests, performed over an extended period indicated some ongoing steel corrosion but appeared negligible. Since a production testing a corrosion test has run for a six month period, both with traditional weight loss coupons and also by online monitoring with differential ER equipment from MetriCorr. The data logger was powered by solar cells connected to batteries with the data being retrieved through a mobile phone connected to the data collection system. The operation of the system went very well in spite of harsh conditions. Even though the corrosion rate was low, it showed distinct changes by lowered wellhead pressure and innnitesmal air inflow. The device proved to be a useful and cost effective tool to monitor possible changes in corrosion conditions easily assembled and operated at remote sites outside the electric grid. There are many small heating systems where such a device would be of great use and may even prevent damage due to corrosion.
机译:在线腐蚀监测是加热系统的有用工具,它可以最大程度地减少由于钢腐蚀引起的损坏风险。使用减肥优惠券进行监控的局限性在于识别问题需要花费一些时间,并且可能已经发生了很大的损失。在生产前,在小型加热系统或钻探现场,一种经济有效的在线监测设备,不依赖于生产现场的电力或电信,具有巨大的价值。当前旨在开发和测试这种设备的项目是在一个正在测试的井场进行的。通过在2006年冰岛东北部乡村的Keldunes农场附近进行钻探,证实了一个低温地热田。采出水的温度约为76°C。水是微咸的,为1-2%o,具体取决于井中不同含水层的相对混合物。水的来源是混合的,部分是来自克拉夫拉高温地热田的内陆地热流出水,一部分来自内陆,另一部分来自本地。该井的生产测试显示方解石严重结垢。长时间进行的结垢测试表明钢仍在持续腐蚀,但可以忽略不计。自生产测试以来,腐蚀测试已经进行了六个月,既使用传统的减重试样,也使用MetriCorr的差动ER设备进行在线监控。数据记录器由连接到电池的太阳能电池供电,数据通过连接到数据收集系统的移动电话检索。尽管条件恶劣,该系统的运行还是很好。即使腐蚀速率很低,它也因井口压力降低和无规律的空气流入而显示出明显的变化。该设备被证明是监测腐蚀状况可能发生的变化的有用且具有成本效益的工具,该腐蚀状况易于在电网外部的偏远地点进行组装和操作。在许多小型加热系统中,此类设备非常有用,甚至可以防止由于腐蚀而造成的损坏。

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