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A New Methodology Of Studying The Dynamics Of Water Sorption/desorption Under Real Operating Conditions Of Adsorption Heat Pumps: Experiment

机译:研究吸附热泵实际运行条件下吸水/解吸动力学的新方法:实验

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摘要

In this paper we proposed and tested a new methodology of studying the kinetics of water vapour sorption/desorption under operating conditions typical for isobaric stages of sorption heat pumps. The measurements have been carried out on pellets of composite sorbent SWS-1L (CaCl_2 in silica KSK) placed on a metal plate. Temperature of the plate was changed as it takes place in real sorption heat pumps, while the vapour pressure over the sorbent was maintained almost constant (saturation pressures corresponding to the evaporator temperature of 5 ℃ and 10 ℃ and the condenser temperature of 30 ℃ and 35 ℃). Near-exponential behaviour of water uptake on time was found for most of the experimental runs. Characteristic time t of isobaric adsorption (desorption) was measured for one layer of loose grains having a size between 1.4 mm and 1.6 mm for different heating/cooling scenarios and boundary conditions of an adsorption heat pump. Maximum specific power estimated from the τ-values can exceed 1.0 kW/kg of dry adsorbent, that gives proof to the idea of compact adsorption units for energy transformation with loose SWS grains.
机译:在本文中,我们提出并测试了一种新的方法,用于研究在吸附热泵的等压阶段典型工作条件下水蒸气吸附/解吸的动力学。测量是在放置在金属板上的复合吸附剂SWS-1L(二氧化硅KSK中的CaCl_2)的颗粒上进行的。板的温度在实际的吸附热泵中发生变化,而吸附剂上的蒸气压几乎保持恒定(饱和压力对应于蒸发器温度5℃和10℃,冷凝器温度30℃和35℃) ℃)。在大多数实验运行中,发现准时吸水的行为接近指数。对于不同的加热/冷却情况和吸附热泵的边界条件,针对尺寸为1.4mm至1.6mm的一层疏松颗粒测量了等压吸附(解吸)的特征时间t。根据τ值估算的最大比功率可以超过1.0 kW / kg干式吸附剂,这证明了紧凑的吸附单元的想法,这些单元用于松散的SWS晶粒进行能量转化。

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