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Assessment of the Use of Nanofluids in Spacecraft Active Thermal Control Systems

机译:评估航天器主动热控制系统中纳米流体的使用

摘要

The addition of metallic nanoparticles to a base heat transfer fluid can dramatically increase its thermal conductivity. These nanofluids have been shown to have advantages in some heat transport systems. Their enhanced properties can allow lower system volumetric flow rates and can reduce the required pumping power. Nanofluids have been suggested for use as working fluids for spacecraft Active Thermal Control Systems (ATCSs). However, there are no studies showing the end-to-end effect of nanofluids on the design and performance of spacecraft ATCSs. In the present work, a parametric study is performed to assess the use of nanofluids in a spacecraft ATCSs. The design parameters of the current Orion capsule and the tabulated thermophysical properties of nanofluids are used to assess the possible benefits of nanofluids and how their incorporation affects the overall design of a spacecraft ATCS. The study shows that the unique system and component-level design parameters of spacecraft ATCSs render them best suited for pure working fluids. The addition of nanoparticles to typical spacecraft thermal control working fluids actually results in an increase in the system mass and required pumping power.
机译:将金属纳米颗粒添加到基础传热流体中可以大大提高其导热系数。这些纳米流体已经显示出在某些传热系统中具有优势。它们的增强特性可以降低系统体积流量,并降低所需的泵送功率。已经建议将纳米流体用作航天器主动热控制系统(ATCS)的工作流体。但是,没有研究表明纳米流体对航天器ATCS的设计和性能具有端到端的影响。在目前的工作中,进行了一项参数研究,以评估纳米流体在航天器ATCS中的使用。当前Orion胶囊的设计参数和纳米流体的列表热物理特性用于评估纳米流体的可能益处以及它们的掺入如何影响航天器ATCS的总体设计。研究表明,航天器ATCS的独特系统和组件级设计参数使其最适合纯工作流体。实际上,在典型的航天器热控制工作流体中添加纳米颗粒实际上会导致系统质量和所需泵送功率的增加。

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