3.8 Article Proceedings Paper

Inverse estimation of wall temperature measurement under dispersion medium shielding based on CMA-ES algorithm

Journal

Publisher

EDP SCIENCES S A
DOI: 10.2516/stet/2022013

Keywords

Inverse radiation problem; Gradient refractive index; High-temperature measurement; Special equipment

Funding

  1. National Key R&D Program of China [2019YFF0302202]

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With the deepening of research engineering application, higher requirements are put forward for the measurement technology, especially in the measurement of combustion temperature in high temperature and high pressure operating environment. This environment is often affected by the interference of high-temperature translucent media and particles, which affects the accuracy of measurement. This study proposes an inversion algorithm for wall temperature reconstruction and verifies its feasibility under different measurement error conditions.
Special equipment is often accompanied by the phenomenon of high temperature and high pressure in operation, and it needs to be measured. With the deepening of research engineering application, some new problems appear, such as how to accurately measure and control the combustion temperature field in the hydrocarbon energy system, carry out combustion diagnosis, control the combustion temperature, minimize the generation of pollutants, put forward higher requirements for measurement technology. High temperature has a core impact on equipment safety, which is a key index that must be considered in design and material selection. Near the surface of these high-temperature objects, there are usually high-temperature translucent media and particles produced by combustion, which have a great impact on radiation temperature measurement. At the same time, with the change of temperature and concentration, these translucent media often have gradient refractive index change, which has a certain impact on radiation temperature measurement. These shielding objects interfere with radiation and affect the accuracy of measurement. This topic mainly focuses on the theoretical and experimental research of this kind of problem. The inversion algorithm of wall temperature reconstruction under the shielding condition of dispersed medium is proposed. Under the condition of introducing different measurement errors, the algorithm is verified, and the corresponding numerical simulation is carried out to verify the feasibility of the algorithm model.

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