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Investigation of ammonia/water hybrid absorption/compression heat pumps for heat supply temperatures above 100 °C

机译:研究供热温度高于100°C的氨/水混合吸收/压缩热泵

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摘要

The hybrid absorption/compression heat pump (HACHP) using ammonia-water as working fluid is a promising technology for development of a high temperature industrial heat pump. This is due to two properties inherent to the use of zeotropic mixtures: non-isothermal phase change and reduced vapour pressures. Using standard refrigeration components (28 bar) HACHP up to 100 °C are commercially available. Components developed for high pressure NH3 (52 bar) and transcritical CO2 (140 bar) increase the limiting allowable pressures. It is therefore relevant to evaluate the feasible supply temperatures using these components. A technically and economically feasible solution is defined as one that satisfies constraints on the coefficient of performance (COP), low and high pressure, compressor discharge temperature and volumetric heat capacity. The ammonia mass fraction of the rich solution and the liquid circulation ratio both influence these constraints. The paper investigates feasible combinations of these parameters. A numerical HACHP model is developed in Engineering Equation Solver (EES). The constrained parameters are evaluated for a range of combinations for systems with supply temperatures of 100 °C, 125 °C, 150 °C and 175 °C. Results show that standard components are applicable up to 100 °C, equipment for high pressure NH3 up to 125 °C, and equipment for transcritical CO2 up to 175 °C.
机译:使用氨水作为工作流体的混合式吸收/压缩热泵(HACHP)是开发高温工业热泵的有前途的技术。这是由于使用共沸混合物所固有的两个特性:非等温相变和降低的蒸气压。使用标准制冷组件(28 bar),最高可在100°C下使用HACHP。为高压NH3(52 bar)和跨临界CO2(140 bar)开发的组件增加了极限允许压力。因此,使用这些组件评估可行的供应温度非常重要。一种技术上和经济上可行的解决方案定义为满足性能系数(COP),低压和高压,压缩机排气温度和体积热容量的约束。浓溶液的氨质量分数和液体循环比都影响这些限制。本文研究了这些参数的可行组合。在工程方程求解器(EES)中开发了一个HACHP数值模型。对于电源温度为100°C,125°C,150°C和175°C的系统,将针对一系列组合评估约束参数。结果表明,标准组件适用于高达100°C的温度,高压NH3高达125°C的设备,跨临界CO2高达175°C的设备。

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