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Temperature fields across the BES Ⅲ beam pipe

机译:BESⅢ型束管上的温度场

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摘要

During the operations of the new generation Beijing Electron and Positron Collider (BEPC Ⅱ) and the Beijing Spectrometer (BES Ⅲ), the inner surface of the beam pipe is subjected to high radiation heat loads. Continuous high temperatures or large temperature fluctuations can cause the main drift chamber (MDC) to detect particles abnormally. Hence, a beam pipe with a cooling system was designed, and temperature fields across the beam pipe and the MDC inner cylinder were studied experimentally and by finite-element simulations. When the inlet temperatures of the cooling oil and cooling water for the central and extended beam pipes were set to 291.4 K and 291.6 K, respectively, results showed that the inner surface temperature of the MDC inner cylinder can be controlled within the range of 292.8-293.9 K for various powers of radiation heat. This range satisfies the operating requirements of 293 ± 2 K.
机译:在新一代北京电子和正电子对撞机(BEPCⅡ)和北京光谱仪(BESⅢ)的运行过程中,束管的内表面承受高辐射热负荷。持续的高温或较大的温度波动会导致主漂移室(MDC)异常检测颗粒。因此,设计了带有冷却系统的束管,并通过有限元模拟对束管和MDC内筒上的温度场进行了实验研究。当将中央和扩展束管的冷却油和冷却水的入口温度分别设置为291.4 K和291.6 K时,结果表明MDC内缸的内表面温度可以控制在292.8-各种辐射热功率为293.9K。此范围满足293±2 K的工作要求。

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