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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >High temperature solar heating and cooling systems for different Mediterranean climates: Dynamic simulation and economic assessment
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High temperature solar heating and cooling systems for different Mediterranean climates: Dynamic simulation and economic assessment

机译:适用于不同地中海气候的高温太阳能供热和制冷系统:动态模拟和经济评估

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The paper presents a dynamic model of an innovative solar heating and cooling system (SHC) based on the coupling of Parabolic Trough Collectors (PTC) with a double-stage LiBr-H_2O absorption chiller; auxiliary energy for both heating and cooling is supplied by a biomass-fired heater. The system layout also includes a number of additional components such as: cooling tower, pumps, heat exchangers, etc. The consumption of non-renewable energy resources is only due to the small amount of electrical energy consumed by some auxiliary device. A case study is presented, in which the SHC provides space heating and cooling and domestic hot water for a small university hall, all year long. Both the SHC system and the building were dynamically simulated in TRNSYS. In order to evaluate the performance of the investigated system in various climatic conditions, the analyses were performed for seven Mediterranean cities in Italy, Spain, Egypt, France, Greece and Turkey. The analysis was also performed for a similar SHC in which the biomass heater was replaced by a gas-fired heater, in order to evaluate the influence of biomass to the overall system economic and energetic performance. In addition, a parametric analysis was performed in order to evaluate the sensitivity of the results, when varying some of the main design and operating parameters, such as: collector field area, tank volume and set-point temperatures. The results showed that the SHC system layout investigated can be competitive for the majority of the locations analysed, although the economic profitability is higher for the hottest climates.
机译:本文提出了一种创新的太阳能供热和制冷系统(SHC)的动力学模型,该模型基于抛物槽收集器(PTC)与两级LiBr-H_2O吸收式制冷机的耦合。用于加热和冷却的辅助能量由生物质燃料加热器提供。系统布局还包括许多其他组件,例如:冷却塔,泵,热交换器等。不可再生能源的消耗仅是由于某些辅助设备消耗的电能很少。提出了一个案例研究,其中SHC全年为小型大学礼堂提供空间供暖和制冷以及生活热水。 SHC系统和建筑物都在TRNSYS中进行了动态仿真。为了评估所研究系统在各种气候条件下的性能,对意大利,西班牙,埃及,法国,希腊和土耳其的七个地中海城市进行了分析。还对类似的SHC进行了分析,其中用燃气加热器代替了生物质加热器,以评估生物质对整个系统经济和能源性能的影响。此外,在更改一些主要设计和操作参数(例如:集热器现场面积,储罐容积和设定点温度)时,进行了参数分析,以评估结果的敏感性。结果表明,尽管在最热的气候条件下,经济利润较高,但所调查的SHC系统布局在大多数分析地点中都具有竞争力。

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