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Development of an Electroosmotic Pump-Driven Micro LiBr Absorption Heat Pump System for Controlling Microclimate in Protective Clothing: Feasibility Review and Role of the Pump

机译:电渗泵驱动的微型LiBr吸收式热泵系统的开发,用于控制防护服中的微气候:可行性审查和泵的作用

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摘要

In this study, the feasibility of using a micro LiBr/water-based absorption heat pump system embedded in protective clothing used in hazardous environments is explored and the characteristics of various microelectromechanical-system-based components are reviewed. The pump is identified as a key part of optimizing the performance of the system. An electroosmotic (EO) micro pump is suggested due to its higher flow rate together with many other advantages. A fabrication process of the EO micro pump was developed and various prototypes of the EO pump were fabricated using standard micro fabrication technology. Experiments were conducted to study the performance of the EO micro pump. The results show that a thinner pump offers a higher pressure capacity but a lower flow rate. Higher electric field strength results in an enhanced pressure capacity and flow rate. The flow rate increases at higher temperatures. The effect of the ionic concentration on pumping performance is weak even if the flow rate and pressure capacity are enhanced to some extent. Ethanol was also explored, and it was found that both the flow rate and the pressure are lower when water is used as the working liquid. The information from these results is valuable for use in the subsequent design of the overall micro heat pump system. A thermodynamic analysis using the EO pump information shows that the energy density of the micro heat pump system can be as high as 2.6 W/g and is feasible for use in protective clothing aiming at a total cooling load of about 300 W. The EO pump has been found to contribute about 45% of the total mass of the micro heat pump system.
机译:在这项研究中,探讨了使用嵌入在危险环境中的防护服中的微型LiBr /水基吸收式热泵系统的可行性,并综述了各种基于微机电系统的组件的特性。泵被认为是优化系统性能的关键部分。建议使用电渗(EO)微型泵,因为它具有更高的流速以及许多其他优点。开发了EO微型泵的制造工艺,并使用标准的微型制造技术制造了EO泵的各种原型。进行实验以研究EO微型泵的性能。结果表明,较薄的泵可提供较高的压力能力,但流速较低。较高的电场强度导致增强的压力容量和流速。在较高温度下流速增加。即使流速和压力容量有所提高,离子浓度对泵送性能的影响也很弱。还研究了乙醇,并且发现当将水用作工作液体时,流速和压力均较低。来自这些结果的信息对于整个微型热泵系统的后续设计很有用。使用EO泵信息进行的热力学分析表明,微型热泵系统的能量密度可以高达2.6 W / g,对于总冷却负荷约为300 W的防护服来说是可行的。EO泵现已发现微型热泵系统的总质量约占总质量的45%。

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