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Optimization of systems with the combination of ground-source heat pump and solar collectors in dwellings

机译:在住宅中结合地源热泵和太阳能集热器优化系统

摘要

The use of ground-source heat pumps for heating and domestic hot water in dwellings is common in Sweden. The combination with solar collectors has been introduced to reduce the electricity demand in the system. In order to analyze different systems with combinations of solar collectors and ground-source heat pumps, computer simulations have been carried out with the simulation program TRNSYS. Large differences were found between the system alternatives. The optimal design is when solar heat produces domestic hot water during summertime and recharges the borehole during wintertime. The advantage is related to the rate of heat extraction from the borehole as well as the overall design of the system. The demand of electricity may increase with solar recharging, because of the increased operating time of the circulation pumps. Another advantage with solar heat in combination with heat pumps is when the boreholes or neighbouring installations are drilled so close that they thermally influence each other. This may lead to decreasing temperatures in the ground, which gives decreased performance of the heat pump and increased use of electricity. The net annual heat extraction from the ground is reduced by recharge from solar heat. (C) 2009 Elsevier Ltd. All rights reserved.
机译:在瑞典,通常使用地源热泵来加热住宅中的生活用水和生活热水。已引入与太阳能收集器的组合以减少系统中的电力需求。为了使用太阳能收集器和地源热泵的组合来分析不同的系统,已使用仿真程序TRNSYS进行了计算机仿真。发现系统备选方案之间存在很大差异。最佳设计是在夏季,当太阳能加热时产生生活热水,而在冬季,则补充井眼的热量。优点与从井筒中抽出热量的速度以及系统的整体设计有关。由于循环泵的工作时间增加,随着太阳能充电,电力需求可能会增加。与热泵结合使用的太阳能的另一个优点是,钻孔或附近的设施钻得太近,以至于彼此产生热影响。这可能会导致地下温度降低,从而降低热泵的性能并增加用电量。每年从地面提取的净热量因太阳能热量的补充而减少。 (C)2009 Elsevier Ltd.保留所有权利。

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