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ABSORPTION HEAT CONVERTER AND THE CHARACTERISTIC EQUATION METHOD

机译:吸收换热器及特征方程法

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The term absorption heat converter comprises the general concept of a heat pump, the type I heat pump (absorption heat pump for heating or cooling) and the type II heat pump (absorption heat transformer). As the main components of these three absorption heat pumping devices are the same, it is possible to design a device which enables all modes of operation: heat pump mode, chiller mode and heat transformer mode. This heat converter can be used as chiller in summer-season whereas in winter-season it can be used in heat pump mode or heat transformer mode, depending on the available heat source. Exemplary, a waste heat driven system can cover the cooling and heating loads by operating in chiller and heat transformer mode. The heat pump mode enables to cover overload heating demand during very cold periods in an efficient way being operated by means of an additional gas fired boiler. So the heating and cooling loads of e.g. an urban district can be supplied in a resource efficient way during the whole year by only one device.rnAt Technische Universität Berlin a prototype heat converter is constructed and tested. The performance of such a device is mainly depending on the temperatures of heat sources and heat sinks. This dependence is described with the characteristic equations of the converter. In this study it is shown how the characteristic equation method can be used universally for both general heat pump concepts (type Ⅰ and Ⅱ). The respective equations will be derived and discussed. For a concrete absorption device it is shown that depending on the used concept of the technical realisation of switching between the two modes the heat flows working as heat transformer differ around 4 %.
机译:术语吸收式热转换器包括热泵,I型热泵(用于加热或冷却的吸收式热泵)和II型热泵(吸收式热转换器)的一般概念。由于这三个吸收式热泵设备的主要组件相同,因此可以设计一种设备,使其能够实现所有工作模式:热泵模式,冷却器模式和热转换器模式。该热转换器在夏季可以用作冷却器,而在冬季,可以根据可用的热源以热泵模式或热转换器模式使用。示例性地,废热驱动系统可以通过以冷却器和热转换器模式操作来覆盖冷却和加热负荷。热泵模式可以通过额外的燃气锅炉以高效方式满足非常寒冷时期的过载供热需求。因此,例如全年只能通过一种设备以一种资源高效的方式为市区提供热量。柏林工业大学建造并测试了一个原型热转换器。这种设备的性能主要取决于热源和散热器的温度。这种依赖关系用转换器的特征方程式描述。在这项研究中,表明了如何将特征方程方法普遍用于两种通用的热泵概念(Ⅰ型和Ⅱ型)。将推导并讨论各个方程。对于混凝土吸收装置,显示出,根据所使用的在两种模式之间切换的技术实现的概念,用作热转换器的热流相差约4%。

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