애스크로AIPublic Preview
← 학술논문 검색
학술논문International Journal of STEEL STRUCTURES2016.06 발행

Evaluation of Solar Temperature Field under Different Wind Speeds for Shanghai 65 m Radio Telescope

Evaluation of Solar Temperature Field under Different Wind Speeds for Shanghai 65 m Radio Telescope

Hongliang Qian(Harbin Institute of Technology); Deshen Chen(Harbin Institute of Technology); Feng Fan(Harbin Institute of Technology); Ye Liu(Harbin Institute of Technology at Weihai); Shi-zhao Shen(Harbin institute of Technology)

16권 2호, 383~393쪽

초록

The Shanghai 65 m radio telescope is currently the largest full range rotatable radio telescope in Asia. Gravity, wind and temperature are the three main factors which may have a bad effect on the reflector’s surface precision. To study the effect of the thermal deformation caused by daily non-uniform temperature fields on the surface precision of the main reflector, both the temperature field and its effect were studied in detail for two typical days (January 15th and July 15th). The method to simulate temperature fields was studied initially, considering heat conduction, solar radiation, shadowing, air convection, sky radiation and ground radiation. Then, an integral parametric thermal finite element model (FEM) of the telescope was established using the ANSYS thermal analysis module. Finally, the effect of non-uniform temperature fields on the surface precision of the main reflector was estimated in terms of the Root Mean Square (RMS) deformation based on temperature transient analysis. The proposed methods and conclusions drawn can provide valuable information for thermal design, thermal monitoring and thermal control of the Shanghai 65 m radio telescope and other similar giant antenna structures.

Abstract

The Shanghai 65 m radio telescope is currently the largest full range rotatable radio telescope in Asia. Gravity, wind and temperature are the three main factors which may have a bad effect on the reflector’s surface precision. To study the effect of the thermal deformation caused by daily non-uniform temperature fields on the surface precision of the main reflector, both the temperature field and its effect were studied in detail for two typical days (January 15th and July 15th). The method to simulate temperature fields was studied initially, considering heat conduction, solar radiation, shadowing, air convection, sky radiation and ground radiation. Then, an integral parametric thermal finite element model (FEM) of the telescope was established using the ANSYS thermal analysis module. Finally, the effect of non-uniform temperature fields on the surface precision of the main reflector was estimated in terms of the Root Mean Square (RMS) deformation based on temperature transient analysis. The proposed methods and conclusions drawn can provide valuable information for thermal design, thermal monitoring and thermal control of the Shanghai 65 m radio telescope and other similar giant antenna structures.

발행기관:
한국강구조학회
DOI:
http://dx.doi.org/10.1007/s13296-016-6011-3
분류:
토목공학

AI 법률 상담

이 논문의 주제에 대해 더 알고 싶으신가요?

460만+ 법률 자료에서 관련 판례·법령·해석례를 찾아 답변합니다

AI 상담 시작
Evaluation of Solar Temperature Field under Different Wind Speeds for Shanghai 65 m Radio Telescope | International Journal of STEEL STRUCTURES 2016 | AskLaw | 애스크로 AI