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Application of customized absorption heat pumps for utilization of low-grade heat sources

机译:定制吸收式热泵在低级热源利用中的应用

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Based on established and proven technology of water/lithium bromide absorption chillers, customized single-stage and double-stage heat pump cycles adapted to specific applications can be designed, especially aiming at medium and large heating capacities of 500 kW and above. These heat pumps can either be fossil fired or driven by heat from combined heating and power (CHP) systems or other sources. In terms of primary energy saving, in many cases this is the most suitable technology to utilize the available heat sources. This is demonstrated by three examples of current installations in southern Germany. An analysis of the energetic performance and of the economic situation has been performed. At a municipal composting plant, waste heat is generated at a temperature level of about 40-50℃. Previously, this waste heat had to be rejected to the ambient by means of a cooling tower. A direct-fired single-stage absorption heat pump has been installed which lifts the waste heat to a temperature level of 82℃ enabling its utilization in the local heating network of a commercial area. At a spa with various swimming pools located next to a thermal spring, a CHP engine plant is installed. The reject heat of the gas engine drives a novel two-stage absorption heat pump that utilizes the spring water as renewable heat source to provide heating of the pools and the building. In Munich, a solar-assisted local district heating system is installed in a new housing development area with about 300 accommodation units. At this site, a seasonal hot water storage for the solar system of about 5700 m{sup}3 is erected. At the beginning of the heating season, it serves the local heating network directly and afterwards - at a lower temperature level - it is utilized as heat source for an absorption heat pump that is driven by the municipal district heating network. By that concept two effects are accomplished: the available temperature change of the hot water storage is increased and the mean temperature of the solar system is decreased. Thus an increase of the annual efficiency of the solar collectors and finally an increase of the annual solar gain is accomplished.
机译:基于成熟的水/溴化锂吸收式制冷机技术,可以设计出适合特定应用的定制的单级和双级热泵循环,特别是针对500 kW及以上的中型和大型加热能力。这些热泵可以是化石燃料,也可以是由热电联产(CHP)系统或其他来源产生的热量驱动的。在一次能源节约方面,在许多情况下,这是利用现有热源的最合适技术。通过德国南部当前安装的三个示例可以证明这一点。对能量表现和经济状况进行了分析。在市政堆肥厂,废热的产生温度约为40-50℃。以前,这些废热必须通过冷却塔散发到环境中。已安装直燃单级吸收式热泵,将废热提升至82℃的温度水平,从而可将其用于商业区域的局部供热网络。在温泉旁设有多个游泳池的水疗中心,安装了CHP发动机装置。燃气发动机的废热驱动新型的两级吸收式热泵,该泵利用泉水作为可再生热源为水池和建筑物供热。在慕尼黑,新住宅开发区安装了太阳能辅助的局部供暖系统,该住宅开发区约有300个住宿单元。在这个地点,为太阳能系统建立了大约5700 m {sup} 3的季节性热水储存。在供暖季节开始时,它直接为当地的供热网络提供服务,随后在较低的温度水平下,将其用作由市政区域供热网络驱动的吸收式热泵的热源。通过该概念,实现了两个效果:增加了热水储存器的可用温度变化,并降低了太阳能系统的平均温度。因此,实现了太阳能收集器的年效率的提高并且最终实现了年太阳能收益的提高。

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