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Improving thermal performance of an existing UK district heat network: A case for temperature optimization

机译:改善英国现有区域热网的热力性能:温度优化的案例

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This paper presents results of a research study into improving energy performance of small-scale district heat network through water supply and return temperature optimization technique. The case study involves establishing the baseline heat demand of the estate's buildings, benchmarking the existing heat network operating parameters, and defining the optimum supply and return temperature. A stepwise temperature optimization technique of plate radiators heat emitters was applied to control the buildings indoor thermal comfort using night set back temperature strategy of 21/18 degrees C. It was established that the heat network return temperature could be lowered from the current measured average of 55 degrees C to 35.6 degrees C, resulting in overall reduction of heat distribution losses and fuel consumption of 10% and 9% respectively. Hence, the study demonstrates the potential of operating existing heat networks at optimum performance and achieving lower return temperature. It was also pointed out that optimal operation of future low temperature district heat networks will require close engagement between the operator and the end user through incentives of mutual benefit. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文介绍了通过供水和回水温度优化技术改善小型区域热网能源性能的研究成果。案例研究涉及建立房地产建筑物的基准热需求,对现有热网络运行参数进行基准测试,并确定最佳的供热和回热温度。应用平板散热器的逐步温度优化技术,利用21/18摄氏度的夜间降温策略来控制建筑物室内的热舒适度。建立了可以从当前测得的平均值降低热网返回温度的方法。 55摄氏度至35.6摄氏度,分别使热量分配损失和燃料消耗总体降低了10%和9%。因此,研究表明以最佳性能运行现有热网并实现较低返回温度的潜力。还指出,未来的低温区域供热网络的最佳运行将需要通过互利的激励使运营商和最终用户密切合作。 (C)2017 Elsevier B.V.保留所有权利。

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