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首页> 外文期刊>Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis >The Utilisation of Solar System in Combined Heating System of Water
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The Utilisation of Solar System in Combined Heating System of Water

机译:太阳系在水联合供热系统中的利用

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The paper assessed the topicality and returns of solar system utilization to heating of water. Practical measurements were conducted after reconstruction of the family house. (in Nesvady, Slovak republic), on which the solar system were assembled. The system consists of the gas heater, solar panels, distributions and circulation pump. The solar system was assembled due to decreasing of operation costs and connected with conventional already used gas heating system by boiler Quantum (V = 115 L). The conventional system was used for 21 days to gather basic values for evaluation. At this point it was observed that 11.93 msup3/sup of gas is needed to heat up 1 msup3/sup of water. Used water in this case was heated from initial 16.14 °C to 52.04 °C of output temperature. Stand by regime of boiler was characterized by 0.012 msup3/sup.hsup-1/sup consumption of gas. The rest of the measurements represent the annual (from 03/2013 to 02/2014) operation process of boiler Tatramat VTS 200L (trivalent) with 200 litres of volume (as a part of Thermosolar solar system). The solar collectors TS 300 are also part of the solar system. An input and output temperatures of heating water we observed along with water and gas consumption, intensity of solar radiation and actual weather conditions. The amount of heat produced by solar system was then calculated. Total investment on solar system were 2,187.7 € (1,475.7 € with subsidy). Therefore, return on investment for the construction of the solar system was set at 23 years even with subsidy.
机译:该论文评估了太阳能系统利用的话题性和对水加热的回报。重建房屋后进行了实际测量。 (位于斯洛伐克内斯瓦迪),在其上组装了太阳系。该系统由燃气加热器,太阳能电池板,配电和循环泵组成。由于降低了运营成本,太阳能系统已组装完毕,并通过锅炉Quantum(V = 115 L)与传统的已使用气体加热系统连接。常规系统使用了21天来收集用于评估的基本值。在这一点上,观察到需要加热11.93 m 3 的气体来加热1 m 3 的水。在这种情况下,将使用过的水从初始温度16.14°C加热到输出温度52.04°C。锅炉待机状态的特点是耗气量为0.012 m 3 .h -1 。其余测量值代表200升容积(作为Thermosolar太阳系的一部分)的Tatramat VTS 200L(三价)锅炉Tatramat VTS的年度运行过程(从03/2013到02/2014)。太阳能收集器TS 300也是太阳能系统的一部分。我们观察到了热水的输入和输出温度,以及水和天然气的消耗,太阳辐射的强度以及实际的天气状况。然后计算出太阳系产生的热量。太阳能系统的总投资为2,187.7欧元(补贴为1,475.7欧元)。因此,即使有补贴,太阳能系统建设的投资回报也定为23年。

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