Flux Sensor Measurement and Calibration Requirements for High-Intensity Heat Flux Applications

Luke McLaughlin, Hendrik Laubscher, Nathan Schroeder, Kenneth Armijo, Jörgen Konings, Robert Dolce, K. van den Bos
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Abstract

Stakeholders of CSP and non-CSP high-intensity broadband flux measurements were surveyed and interviewed to obtain flux sensor design and calibration requirements. Existing sensor technologies and existing calibration facilities were then compared against this standard. Stakeholders require a flux sensor designed for >5,000 kW/m2 flux measurements, >1,000 life cycles, <500 ms response time, >60-minute exposure at maximum flux, and <5% measurement uncertainty. Stakeholders also require a sensor with minimal cost, short procurement lead time, and a high-intensity broadband flux calibration. Commercial CSP stakeholders primarily rely on infrared (IR) temperature measurements of receiver equipment to control CSP plant process operation, whereas CSP research and development (R&D) and non-CSP stakeholders rely on accurate flux gauge measurements for a variety of applications. It was determined that existing flux sensor technologies and calibration facilities do not comprehensively meet stakeholder needs. This study suggests a more robust circular foil gauge with a high-intensity solar flux calibration comprehensively meets stakeholder flux measurement needs. Improved circular foil gauge designs and an improved flux sensor calibration facility are discussed.
高强度热通量应用中的通量传感器测量和校准要求
对 CSP 和非 CSP 高强度宽带通量测量的利益相关者进行了调查和访谈,以获得通量传感器的设计和校准要求。然后将现有传感器技术和现有校准设施与该标准进行比较。利益相关者要求磁通量传感器设计用于 >5,000 kW/m2 磁通量测量、>1,000 次生命周期、最大磁通量下 60 分钟曝光以及 <5% 的测量不确定性。利益相关者还要求传感器成本最低、采购周期短,并能进行高强度宽带流量校准。商业 CSP 利益相关者主要依靠接收器设备的红外温度测量来控制 CSP 工厂的工艺操作,而 CSP 研发 (R&D) 和非 CSP 利益相关者则依靠精确的流量计测量来实现各种应用。研究发现,现有的磁通量传感器技术和校准设施无法全面满足利益相关者的需求。本研究建议采用更坚固耐用的环形箔片测量仪和高强度太阳光通量校准设备,以全面满足利益相关者的光通量测量需求。本研究讨论了改进的圆箔仪设计和改进的磁通量传感器校准设施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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