Thermal environment analysis for TianQin: III. Low-frequency thermal transfer inside the flat-top sun shield

Author:

Chen HouyuanORCID,Ding YanweiORCID,Pan Jiajian,Ling Chen,Sun ZeningORCID,Gu Lingyun,Zhao Xin,Tong Yelong

Abstract

Abstract Flat-top Sun shield is a part of the disturbance reducing system on the space-based gravitational wave detector TianQin. The Sun shield is expected to guards temperature stability of the satellite’s top deck from the low-frequency solar flux fluctuation. This paper introduces an analytic method to study the Sun shield’s temperature response to sinusoidal variations of incoming heat flux. Oscillation mode of temperature field is described in the form of wave equation, which satisfies globally the thermal diffusion equation. The continuity equation is solved to reveal the wave behaviours when crossing different media. Three typical boundary conditions are studied in order to solve the wave equation. By applying the method to the TianQin’s thermal model, the low-frequency temperature response of the Sun shield and the top deck are derived. The results suggest adopting insulation materials with low thermal diffusivity in the thermal design to shield the solar disturbances.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

IOP Publishing

Subject

Physics and Astronomy (miscellaneous)

Reference20 articles.

1. Tianqin: a space-borne gravitational wave detector;Luo;Class. Quantum Grav.,2016

2. The Tianqin project: current progress on science and technology;Mei;Prog. Theor. Exp. Phys.,2021

3. LISA Final Technical Report;Faulks,2000

4. Laser Interferometer Space Antenna;Amaro-Seoane,2017

5. Experimental set-up for testing alignment and measurement stability of a metrology system in silicon carbide for GAIA;van Veggel;Optomechanics,2005

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