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A new method for online measurement of the concentration of working fluids in absorption refrigeration systems

机译:吸收制冷系统中工作流体浓度的在线测量新方法

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This paper proposes a new method for online measurement of the concentration of working fluids in absorption refrigeration systems: electrical conductivity is measured to determine the concentration of the solution. Compared with the common density-concentration method, electrical conductivity-concentration method has the same accuracy but helps to save cost when applied in absorption systems with ammonia-salt solutions.This novel method is also suitable for systems with traditional working fluids like water-lithium bromide solution. Electrical conductivities of ammonia-lithium nitrate, ammonia-sodium thiocyanate and water-lithium bromide solutions were measured between (293.15 and 333.15) K, using an Industrial Conductivity Meter. The ammonia mass fraction varied from 0.35 to 0.48 for ammonia-lithium nitrate solution and from 0.35 to 0.50 for ammonia-sodium thiocyanate solution. For water-lithium bromide solution, the mass fraction of lithium bromide was within the range of 40%-60%. The experimental data were correlated as a function of temperature and composition using the extended Casteel-Amis equation. In addition, correlations of refrigerant mass concentration as a function of electrical conductivity and temperature of the solution are proposed. (C) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:本文提出了一种新的在线测量吸收制冷系统中的工作流体浓度的新方法:测量导电性以确定溶液的浓度。与常见的密度浓度法相比,电导率浓缩法具有相同的精度,但有助于节省在用氨盐溶液的吸收体系中应用的成本。本文方法也适用于具有传统工作流体的系统,如水锂等传统工作流体溴溶液。使用工业电导率计测量(293.15和333.15)K之间测量氨硝酸氨锂,硫酸钠钠和水 - 溴化锂溶液的电导率。对于氨硝酸锂溶液,氨质量级分为0.35至0.48,对于氨碘氰酸钠溶液0.35-0.50。对于溴化锂溶液,溴化锂的质量分数在40%-60%的范围内。实验数据与使用延长的城堡-Amis方程的温度和组成的函数相关。另外,提出了作为溶液电导率和温度的函数的制冷剂质量浓度的相关性。 (c)2017年Elsevier Ltd和IIR。版权所有。

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