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Automatic Pre-Cooling System for Large Infrared Instruments

机译:大型红外仪器的自动预冷却系统

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An infrared instrument used for observation has to keep the detector and optical components in a very cold environment during operation. However, because of maintenance, upgrades, and other routine work, there are situations that require the instrument to be warmed-up and then cooled-down again. At Subaru Observatory, our MOIRCS infrared instrument has required warm-up and cool-down several times a year for routine maintenance and filter replacement. The MOIRCS instrument has a large heat capacity and cool-down using only the closed cycle cooler is impractical due to the huge amount of time it would require. To address this problem Subaru engineers have created a mechanism to allow PRE-COOLING of the instrument via liquid nitrogen - allowing for a much faster pre-cool process. Even with liquid nitrogen, the pre-cool process requires 10 tanks and almost a week of continual monitoring in order to reach the desired target temperature. It is very difficult to work for such a long period of time at the oxygen starved summit of Mauna Kea (4205 meters),and issues of man-power and scheduling conflicts only add to the problems. To address these concerns Subaru developed an automated pre-cooling system which works continuously and remotely at the summit. The strategy was to have basic functionality for pre-cooling and user friendly interface, i.e. (1) Continuous cooling until the target temperature is reached by automated liquid nitrogen tank exchanges and precision temperature control by automated changes to the liquid nitrogen flow. (2) Remote monitoring and control of all parameter setting by Web browser as user interface (UI). The goal of the Subaru pre-cooling system was to make it both inexpensive and quick to implement by using existing technologies. The original goal (to cut down on labor and precision temperature control) has been attained through several pre-cooling and software/hardware modification cycles. We will report on the progress and status of our pre-cooling experiences in this presentation.
机译:用于观察的红外仪器必须在操作过程中将检测器和光学组件保持在非常冷的环境中。但是,由于维护,升级和其他日常工作,在某些情况下需要先对仪器进行预热然后再冷却。在斯巴鲁天文台,我们的MOIRCS红外仪器每年需要进行几次预热和冷却,以进行日常维护和更换滤镜。 MOIRCS仪器具有很大的热容量,仅使用闭式循环冷却器进行冷却是不切实际的,因为这需要大量的时间。为了解决这个问题,斯巴鲁工程师创建了一种机制,可以通过液氮对仪器进行预冷却-从而可以更快地进行预冷却过程。即使使用液氮,预冷却过程也需要10个水箱,并且需要连续近一周的持续监控才能达到所需的目标温度。在莫纳克亚山(4205米)的氧气短缺的山顶上,如此长时间的工作非常困难,而人力和日程安排的冲突只会增加问题。为了解决这些问题,斯巴鲁开发了一种自动预冷系统,该系统可以在山顶上连续且远程地工作。该策略是要具有用于预冷和用户友好界面的基本功能,即(1)连续冷却,直到通过自动液氮罐交换达到目标温度为止,并且通过自动更改液氮流量来进行精确的温度控制。 (2)通过Web浏览器作为用户界面(UI)远程监视和控制所有参数设置。斯巴鲁预冷系统的目标是通过使用现有技术使其廉价且快速实施。最初的目标(减少人工和精确的温度控制)已通过多个预冷却和软件/硬件修改周期得以实现。在此演示中,我们将报告我们的预冷经验的进度和状态。

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