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Demonstration of Solar Heating and Cooling System using Sorption Integrated Solar Thermal Collectors

机译:使用吸附综合太阳热收集器的太阳能加热和冷却系统的演示

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Producing cost-competitive small and medium-sized solar cooling systems is currently a significant challenge. Due to system complexity, extensive engineering, design and equipment costs; the installation costs of solar thermal cooling systems are prohibitively high. In efforts to overcome these limitations, a novel sorption heat pump module has been developed and directly integrated into a solar thermal collector. The module comprises a fully encapsulated sorption tube containing hygroscopic salt sorbent and water as a refrigerant, sealed under vacuum with no moving parts. A 5.6m~2 aperture area outdoor laboratory-scale system of sorption module integrated solar collectors was installed in Stockholm, Sweden and evaluated under constant re-cooling and chilled fluid return temperatures in order to assess collector performance. Measured average solar cooling COP was 0.19 with average cooling powers between 120 and 200 Wm~(-2) collector aperture area. It was observed that average collector cooling power is constant at daily insolation levels above 3.6 kWhm~(-2) with the cooling energy produced being proportional to solar insolation. For full evaluation of an integrated sorption collector solar heating and cooling system, under the umbrella of a European Union project for technological innovation, a 180 m~2 large-scale demonstration system has been installed in Karlstad, Sweden. Results from the installation commissioned in summer 2014 with non-optimised control strategies showed average electrical COP of 10.6 and average cooling powers between 140 and 250 Wm~(-2) collector aperture area. Optimisation of control strategies, heat transfer fluid flows through the collectors and electrical COP will be carried out in autumn 2014.
机译:生产成本竞争力的中小型太阳能冷却系统目前是一个重大挑战。由于系统复杂性,广泛的工程,设计和设备成本;太阳能热冷却系统的安装成本非常高。在克服这些限制的努力中,开发了一种新型吸附热泵模块,并直接集成到太阳能热收集器中。该模块包含含有吸湿管的全包装吸附管,其吸附剂和作为制冷剂的水,在真空下密封,没有移动部件。 5.6米〜2个孔径区域户外实验室级别的吸附模块集成太阳能收集器系统安装在斯德哥尔摩,瑞典,并在恒定的重新冷却和冷却流体返回温度下进行评估,以评估收集器性能。测量的平均太阳冷却COP为0.19,平均冷却功率在120至200Wm〜(-2)收集器孔径区域之间。观察到,平均收集器冷却功率在3.6千瓦时〜(-2)以上的日常呈现水平,冷却能量与太阳呈现成比例。为了完全评估集成吸附收集器太阳能加热和冷却系统,在欧盟技术创新项目的雨伞下,瑞典卡尔斯塔德安装了180米〜2的大型示范系统。 2014年夏季的安装结果,具有非优化控制策略,显示了10.6的平均电源COP和140和250 WM〜(-2)收集器孔径区域之间的平均冷却功率。控制策略的优化,传热流体流过收集器和电气警察将于2014年秋季进行。

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