...
首页> 外文期刊>Process safety progress >An Exposure Assessment Approach for Potential Thermal Degradation Compounds in 2-Phase Immersion Cooling Operations
【24h】

An Exposure Assessment Approach for Potential Thermal Degradation Compounds in 2-Phase Immersion Cooling Operations

机译:两相浸入式冷却操作中潜在热降解化合物的暴露评估方法

获取原文
获取原文并翻译 | 示例
           

摘要

Passive 2-phase immersion cooling (P2PIC) is a technique for cooling computers with the potential to reduce capital and operating costs within datacenters. Computers cooled by P2PIC are submerged in a fluorochemical liquid that boils (hence 2-phase) from the heat generating components. Although the tanks in which this is done are normally sealed and vented outdoors, they are opened periodically for maintenance. The volatility of the liquids suggests the need for risk assessments relating to inhalation of the liquids' vapor under these normal operating conditions. Fourier transfer infrared vapor concentration measurements gathered during spill and transfer simulation and at two proof-of-concept P2PIC installations show inhalation concentrations substantially below exposure guidelines. Liquids can be thermally decomposed under certain failure scenarios to create decomposition products with greater hazard and risk profiles. A methodology is presented for estimating possible human exposure to such products. The exposure levels that result are interpreted in the context of the most toxic of the thermal decomposition products known to form and suggest employee exposure substantially below published occupational exposure and emergency response guidelines. Fluid conditioning systems and gas monitoring equipment further reduce the risk of human exposure to fluid vapor and thermal decomposition products.
机译:被动式两相浸入式冷却(P2PIC)是一种用于冷却计算机的技术,可以降低数据中心内的资金和运营成本。由P2PIC冷却的计算机浸没在含氟化学液体中,该液体从发热组件中沸腾(因此为两相)。尽管通常将这些储罐密封并排至室外,但仍要定期打开以进行维护。液体的挥发性表明需要在这些正常操作条件下进行与吸入液体蒸气有关的风险评估。在溢出和转移模拟过程中以及在两个概念验证的P2PIC安装中收集的傅里叶转移红外蒸气浓度测量结果显示,吸入浓度大大低于暴露准则。在某些故障情况下,液体会发生热分解,从而产生具有更大危害和风险特征的分解产物。提出了一种方法,用于估计人类可能对此类产品的暴露。在已知形成的热分解产物毒性最高的情况下解释了所产生的暴露水平,并表明员工的暴露水平大大低于已发布的职业暴露和应急响应准则。流体调节系统和气体监测设备进一步降低了人体暴露于流体蒸气和热分解产物的风险。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号