作者描述了一种多环监测解决方案,可测量每个井环空的压力和温度。这些关键参数由基于微机电系统技术的传感器捕获。使用的传输方法允许供电和数据检索,甚至对于 B 环带之外的环带也是如此。该解决方案的所有电子元件都将通过国际推荐协议[先进油井设备标准 (AWES)] 的认证,该协议包括一系列机械和长期测试,以确保系统在 125°C 下能存活 20 年。该解决方案可用于所有存储应用,特别是与能源转型相关的应用。
介绍
智能管道解决方案的最初目标是通过将微型传感器嵌入到管体中来为管材添加功能。
作者描述了一种多环监测解决方案,可测量每个井环空的压力和温度。这些关键参数由基于微机电系统技术的传感器捕获。使用的传输方法允许供电和数据检索,甚至对于 B 环带之外的环带也是如此。该解决方案的所有电子元件都将通过国际推荐协议[先进油井设备标准 (AWES)] 的认证,该协议包括一系列机械和长期测试,以确保系统在 125°C 下能存活 20 年。该解决方案可用于所有存储应用,特别是与能源转型相关的应用。
智能管道解决方案的最初目标是通过将微型传感器嵌入到管体中来为管材添加功能。
The authors describe a multiannular monitoring solution that measures pressure and temperature for each well annulus. These key parameters are captured by sensors based on microelectromechanical-system technology. A transmission methodology is used that allows power supply and data retrieval even for annuli beyond the B annulus. All electronic elements of the solution will be qualified through an international recommendation protocol [Advanced Well Equipment Standards (AWES)] that consists of a series of mechanical and long-term tests to ensure that the system will survive for 20 years at 125°C. The solution could be used in all storage applications, especially those related to the energy transition.
The initial goal of the intelligent-pipe solution was to add functionality to tubulars by embedding miniaturized sensors into the pipe body.