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首页> 外文期刊>Acta astronautica >Experimental and numerical studies on the treatment of wet astronaut trash by forced-convection drying
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Experimental and numerical studies on the treatment of wet astronaut trash by forced-convection drying

机译:对流干燥处理湿宇航员垃圾的实验与数值研究

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摘要

During long-term space missions, astronauts generate wet trash, including food containers with uneaten portions, moist hygiene wipes and wet paper towels. This waste produces two problems: the loss of water and the generation of odors and health hazards by microbial growth. These problems are solved by a closed-loop, forced convection, heat-pump drying system which stops microbial activity by both pasteurization and desiccation, and recovers water in a gravity-independent porous media condensing heat exchanger. A transient, pseudo homogeneous continuum model for the drying of wet ersatz trash was formulated for this system. The model is based on the conservation equations for energy and moisture applied to the air and solid phases and includes the unique trash characteristic of having both dry and wet solids. Experimentally determined heat and mass transfer coefficients, together with the moisture sorption equilibrium relationship for the wet material are used in the model. The resulting system of differential equations is solved by the fmite-volume method as implemented by the commercial software COMSOL. Model simulations agreed well with experimental data under certain conditions. The validated model will be used in the optimization of the entire closed-loop system consisting of fan, air heater, dryer vessel, heat-pump condenser, and heat-recovery modules.
机译:在长期的太空任务中,宇航员会产生湿垃圾,包括未食用部分的食物容器,潮湿的卫生纸和湿纸巾。这种废物产生两个问题:水的流失以及由于微生物生长而产生的气味和健康危害。通过闭环,强​​制对流,热泵干燥系统解决了这些问题,该系统通过巴氏杀菌和干燥作用来停止微生物活动,并在与重力无关的多孔介质冷凝热交换器中回收水。为该系统建立了一个用于干燥湿eratz垃圾的瞬态伪均质连续模型。该模型基于应用于空气和固相的能量和水分守恒方程,并包括具有干固体和湿固体的独特垃圾特征。在模型中使用实验确定的传热和传质系数,以及湿物料的水分吸附平衡关系。通过商业软件COMSOL实施的有限体积法可解决由此产生的微分方程组。模型仿真与某些条件下的实验数据非常吻合。经过验证的模型将用于优化由风扇,空气加热器,干燥器容器,热泵冷凝器和热量回收模块组成的整个闭环系统。

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