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Harsh environment sensor development for advanced energy systems

机译:针对先进能源系统的恶劣环境传感器开发

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摘要

Highly efficient, low emission power systems have extreme conditions of high temperature, high pressure, and corrosivity that require monitoring. Sensing in these harsh environments can provide key information that directly impacts process control and system reliability. To achieve the goals and demands of clean energy, the conditions under which fossil fuels are converted into heat and power are harsh compared to traditional combustion/steam cycles. Temperatures can extend as high as 1600 Celsius (℃) in certain systems and pressures can reach as high as 5000 pounds per square inch (psi)/340 atmospheres (atm). The lack of suitable measurement technology serves as a driver for the innovations in harsh environment sensor development. Two major considerations in the development of harsh environments sensors are the materials used for sensing and the design of the sensing device. This paper will highlight the U.S. Department of Energy's, Office of Fossil Energy and National Energy Technology Laboratory's Program in advanced sensing concepts that are aimed at addressing the technology needs and drivers through the development of new sensor materials and designs capable of withstanding harsh environment conditions. Recent developments with harsh environment sensors will be highlighted and future directions towards in advanced sensing will be introduced.
机译:高效,低排放的电力系统具有极端的高温,高压和腐蚀性条件,需要监控。在这些恶劣的环境中进行传感可以提供直接影响过程控制和系统可靠性的关键信息。为了实现清洁能源的目标和需求,与传统的燃烧/蒸汽循环相比,将化石燃料转化为热能和动力的条件更为苛刻。在某些系统中,温度最高可以扩展到1600摄氏度,压力最高可以达到5000磅/平方英寸(psi)/ 340个大气压。缺乏合适的测量技术会推动恶劣环境传感器开发的创新。在恶劣环境传感器的开发中,两个主要考虑因素是用于传感的材料和传感设备的设计。本文将重点介绍美国能源部,化石能源办公室和国家能源技术实验室计划中的先进传感概念,旨在通过开发能够承受恶劣环境条件的新型传感器材料和设计来满足技术需求和驱动因素。将重点介绍恶劣环境传感器的最新发展,并介绍高级传感的未来方向。

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