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Research Article

Simulation analysis for controlling temperature stability of a radiant-board system served for thermodynamic temperature measurement laboratory

Haoxue Liu1Siqi Liu1,2Xiuming Li1( )Zongwei Han1( )Haiyang Zhang2,3Bo Gao2,3( )
Liaoning Engineering Research Center of Process Industry Energy Saving and Low-carbon Technologies, School of Metallurgy, Northeastern University, Shenyang 110819, China
State Key Laboratory of Cryogenic Science and Technology, Beijing 100190, China
TIPC-LNE Joint Laboratory on Cryogenic Metrology Science and Technology, Technical Institute of Physics and Chemistry (TIPC), Chinese Academy of Sciences (CAS), Beijing 100190, China
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Abstract

Fundamental metrology is closely tied to scientific advancement and requires well-equipped facilities to achieve low measurement uncertainty in rigorous experiments. Addressing the ±0.1 K high-stability temperature control issue of the precision laboratory radiant air conditioning system, this study investigated the influence of different radiant panel area ratios, laying methods, cold source water supply temperature fluctuations, and external environmental disturbances by simulations. The results indicate that: (1) the larger the ratio of radiant panel area, the greater the fluctuation in equipment surface temperature; (2) the surface temperature of the measurement equipment can satisfy ±0.1 K control temperature stability requirement when the fluctuations of the surface temperature of radiant panels and glass window are within ±0.5 K and ±1 K respectively without radiant panels on the ceiling; (3) the surface temperature of the measurement equipment can satisfy ±0.1 K control temperature stability requirement when the fluctuations of the surface temperature of radiant panels and glass window are within ±0.2 K and ±2 K respectively with radiant panels on the ceiling. This study provides a reference for the design and operation control of air conditioning systems in fundamental metrology.

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Building Simulation
Pages 1515-1529

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Cite this article:
Liu H, Liu S, Li X, et al. Simulation analysis for controlling temperature stability of a radiant-board system served for thermodynamic temperature measurement laboratory. Building Simulation, 2024, 17(9): 1515-1529. https://doi.org/10.1007/s12273-024-1151-4

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Received: 25 March 2024
Revised: 03 May 2024
Accepted: 19 May 2024
Published: 13 August 2024
© Tsinghua University Press 2024