首页> 外文会议>Annual Semiconductor Thermal Measurement and Management Symposium >VHTX: A code for simulation of steady state and dynamic response of single or multiple networked cross flow heat exchangers in data center thermal management systems
【24h】

VHTX: A code for simulation of steady state and dynamic response of single or multiple networked cross flow heat exchangers in data center thermal management systems

机译:VHTX:用于在数据中心热管理系统中模拟单网络或多网络横流热交换器的稳态和动态响应的代码

获取原文

摘要

Crossflow heat exchangers are key components of both centralized (e.g. CRACs) and decentralized (rear door, in-row) cooling equipment utilized in data center thermal management systems. Modeling of their behavior in steady state is well documented but transient or dynamic operation, whether by intent or as a result of a system failure, has not been well documented. In “smart cooling” scenarios, cooling should be modulated with heating (i.e. IT) load which can vary with time and space as IT load varies within a rack and within the data center room. Cooling is optimally utilized when the cooling load follows or even anticipates the heating (IT) load and as such the heat exchanger operates in a dynamically controlled mode. In data center operation, there is also interest in understanding their behavior in case of system malfunctions such as pump or chiller failures which results in transient operation. The MATLAB™ simulation code VHTX was developed in order to simulate the performance of crossflow heat exchangers in both steady and dynamic operation. It is a standalone code for simulation of heat exchanger networks and core code elements are also being embedded into or coupled with other simulation environments such as MATLAB SIMULINK™ for control investigations, VTAS for data center system thermodynamic and energy analysis, and CFD codes for room simulations. This paper describes the basic formulation of the VHTX solver and its validation against research quality data on heat exchanger cores. It is shown that the code can accurately predict the coolant flow distribution within the heat exchanger core and its dynamic response to temporal events such as modulation of the coolant flow rate or temperature to match the air side thermal load. A case study simulating a typical rear door heat exchanger is presented as an example of the use of the code in a data center simulation.
机译:横流式热交换器是数据中心热管理系统中使用的集中式(例如CRAC)和分散式(后门,行内)冷却设备的关键组件。它们在稳态下的行为的模型已得到很好的记录,但是无论是出于意图还是由于系统故障,都无法对瞬态或动态操作进行充分的记录。在“智能冷却”方案中,应根据供暖(即IT)负载来调节制冷,该热量随时间和空间的变化而变化,这是因为机架内和数据中心机房中IT负载的变化。当冷却负荷遵循或什至预料到加热(IT)负荷时,可以最佳地利用冷却,因此,热交换器以动态控制模式运行。在数据中心操作中,还需要了解它们在系统故障(例如泵或冷却器故障)导致瞬态操作的情况下的行为。开发了MATLAB™仿真代码VHTX是为了模拟横流热交换器在稳态和动态运行中的性能。它是用于仿真热交换器网络的独立代码,核心代码元素也已嵌入或与其他仿真环境结合使用,例如用于控制研究的MATLAB SIMULINK™,用于数据中心系统热力学和能源分析的VTAS,以及用于房间的CFD代码模拟。本文介绍了VHTX求解器的基本公式及其对换热器芯研究质量数据的验证。结果表明,该代码可以准确地预测热交换器芯内的冷却剂流量分布及其对时间事件的动态响应,例如对冷却剂流量或温度的调节以匹配空气侧热负荷。给出了一个模拟典型后门热交换器的案例研究,作为在数据中心模拟中使用该代码的示例。

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