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Advances in the Lightweight Air-Liquid Composite Heat Exchanger Development for Space Exploration Applications

机译:轻型气液复合热交换器在太空探索应用中的进展

摘要

An advanced, lightweight composite modular Air/Liquid (A/L) Heat Exchanger (HX) Prototype for potential space exploration thermal management applications was successfully designed, manufactured, and tested. This full-scale Prototype consisting of 19 modules, based on recommendations from its predecessor Engineering Development unit (EDU) but with improved thermal characteristics and manufacturability, was 11.2 % lighter than the EDU and achieves potentially a 42.7% weight reduction from the existing state-of-the-art metallic HX demonstrator. However, its higher pressure drop (0.58 psid vs. 0.16 psid of the metal HX) has to be mitigated by foam material optimizations and design modifications including a more systematic air channel design. Scalability of the Prototype design was validated experimentally by comparing manufacturability and performance between the 2-module coupon and the 19-module Prototype. The Prototype utilized the thermally conductive open-cell carbon foam material but with lower density and adopted a novel high-efficiency cooling system with significantly increased heat transfer contact surface areas, improved fabricability and manufacturability compared to the EDU. Even though the Prototype was required to meet both the thermal and the structural specifications, accomplishing the thermal requirement was a higher priority goal for this first version. Overall, the Prototype outperformed both the EDU and the corresponding metal HX, particularly in terms of specific heat transfer, but achieved 93.4% of the target. The next generation Prototype to achieve the specification target, 3,450W would need 24 core modules based on the simple scaling factor. The scale-up Prototype will weigh about 14.7 Kg vs. 21.6 Kg for the metal counterpart. The advancement of this lightweight composite HX development from the original feasibility test coupons to EDU to Prototype is discussed in this paper.
机译:成功设计,制造和测试了适用于潜在空间探索热管理应用的先进,轻型复合模块化空气/液体(A / L)热交换器(HX)原型。该全尺寸原型由19个模块组成,基于其前身工程开发部门(EDU)的建议,但具有改善的热特性和可制造性,比EDU轻11.2%,并且与现有状态相比,重量减轻了42.7%。最先进的金属HX演示器。但是,必须通过泡沫材料优化和设计修改(包括更系统的空气通道设计)来缓解其较高的压降(0.58 psid与金属HX的0.16 psid)。通过比较2模块试样和19模块原型之间的可制造性和性能,实验验证了原型设计的可扩展性。该原型采用导热的开孔碳泡沫材料,但密度较低,并且采用了新型高效冷却系统,与EDU相比,该系统显着提高了热传递接触表面积,改善了可加工性和可制造性。即使要求原型同时满足散热和结构规格,对于第一个版本,满足散热要求仍然是更高优先级的目标。总体而言,该原型机的性能优于EDU和相应的金属HX,特别是在比热传递方面,但达到了目标的93.4%。要达到规格目标的下一代原型机3450W,基于简单的比例因子就需要24个核心模块。按比例放大的原型将重约14.7千克,而金属制版则为21.6千克。本文讨论了这种轻型复合材料HX从原始可行性测试试样到EDU到Prototype的发展。

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