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Smart district heating networks - A simulation study of prosumers' impact on technical parameters in distribution networks

机译:智能区域供热网络-生产者对配电网络技术参数影响的模拟研究

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摘要

Environmental awareness increases, with demands for environmental certifications of new communities and buildings as a result. In the district heating industry, enabling of decentralized energy production is one way to meet requirements from customers. In this paper the technical impact of small-scale local solar collectors and heat pumps on district heating distribution networks is investigated. Customers that in this way can both produce and consume district heating are in this paper called prosumers. The study has mainly been performed through simulations in the computer programme NetSim. The results show that since the supply temperature from prosumers often is lower than the typical supply temperature, contribution from prosumers may result in lower supply temperature and thus increased velocity. The differential pressure decreases when water from the prosumers is mixed with supply water from the rest of the network and increases in the area where the prosumer creates a new pressure cone. Areas that are not reached by water from prosumers are affected differently depending on how the control of the differential pressure is managed. The results also show that prosumers' lower supply temperature may cause migratory temperature fronts that lead to increased fatigue in the pipes. This was further investigated by the local district heating company and the result showed that migratory temperature fronts generally has little impact on the lifetime of the pipes, since corrosion remains to be the limiting factor. In summary, this paper indicates that introduction of prosumers is possible, but demands management and control. (C) 2014 Elsevier Ltd. All rights reserved.
机译:随着人们要求对新社区和新建筑进行环境认证,人们对环境的意识不断提高。在区域供热行业中,实现分散式能源生产是满足客户需求的一种方法。本文研究了小型本地太阳能集热器和热泵对区域供热网络的技术影响。以这种方式可以生产和消费集中供热的客户在本文中称为生产者。这项研究主要是通过计算机程序NetSim中的模拟进行的。结果表明,由于来自生产者的供应温度通常低于典型的供应温度,因此来自生产者的贡献可能导致较低的供应温度并因此增加速度。当来自生产者的水与来自网络其余部分的供水混合时,压差减小,并且在生产者产生新的压力锥的区域中,压差增大。根据差压控制的管理方式,来自生产者用水无法到达的区域会受到不同的影响。结果还表明,生产者的较低供应温度可能导致迁移的温度前沿,从而导致管道疲劳加剧。当地的供热公司对此进行了进一步调查,结果表明,温度的上升趋势通常对管道的寿命几乎没有影响,因为腐蚀仍然是限制因素。总而言之,本文表明可以引入生产者,但是需要管理和控制。 (C)2014 Elsevier Ltd.保留所有权利。

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