A System Design for Distributed Energy Generation in Low-Temperature District Heating (LTDH) Networks

Q1 Engineering Future Cities and Environment Pub Date : 2019-02-04 DOI:10.5334/FCE.44
S. Jones, M. Gillott, R. Boukhanouf, G. Walker, Michele Tunzi, D. Tetlow, Lucelia Rodrigues, M. Sumner
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引用次数: 12

Abstract

Project SCENIC (Smart Controlled Energy Networks Integrated in Communities) involves connecting properties at the University of Nottingham’s Creative Energy Homes test site in a community scale, integrated heat and power network. Controls will be developed to allow for the most effective heat load allocation and power distribution scenarios. Furthermore, the system will develop the prosumer concept, where consumers are both buyers and sellers of energy in both heat and power systems. This paper describes the initial phase of project SCENIC, achieving truly distributed generation within a heat network. The first of its kind, the system has a four pipe network configuration, consisting of a network flow loop to supply heat to homes, and a generation loop to collect energy from residential heating systems and supply it to a centralised thermal store. To achieve the design, IES-VE steady state heat load and dynamic building modelling have been used. A pre-insulated Rehau Rauthermex piping diameter was sized using flow rate calculations. Pipe diameter is reduced in line with distance from the central pump and associated pressure losses. The diameter ranges from 40 to 25mm, with a heat loss as low as 7.0 W/m. In addition, flow rates will fluctuate below a maximum of 1.99 l/s. Danfoss – 7 Series BS flatstations have been selected as the network-building heat interface units (HIU), to satisfy a calculated peak design heating loads of between 36.74 and 44.06 kW. Furthermore, to enable the prosumer concept and associated business models an adapted Danfoss Flatstations – 3 Series BS was selected to interface the distributed heat sources with the network. This paper gives details of the novel system configuration and concept, energy flows, as well as calculation and modelling results for the heat network. A premise is given to maintaining low temperatures in the network to ensure system efficiency in line with the latest research thinking.
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低温区域供热网络分布式发电系统设计
SCENIC项目(智能控制能源网络集成在社区中)涉及将诺丁汉大学创意能源住宅测试点的物业连接到社区规模的综合供热和电力网络中。将制定控制措施,以实现最有效的热负荷分配和配电方案。此外,该系统将发展生产消费者的概念,即消费者既是热力系统和电力系统中能源的买家,也是卖家。本文描述了SCENIC项目的初始阶段,即在热网中实现真正的分布式发电。该系统是同类系统中的第一个,具有四管道网络配置,由一个向家庭供热的网络流量回路和一个从住宅供暖系统收集能量并将其供应给中央储热器的发电回路组成。为了实现设计,使用了IES-VE稳态热负荷和动态建筑建模。使用流量计算确定预绝缘Rehau-Rauthermex管道的直径。管道直径随着与中央泵的距离和相关的压力损失而减小。直径范围从40到25mm,热损失低至7.0 W/m。此外,流速将在最大1.99 l/s以下波动。丹佛斯–7系列BS扁平站已被选为网络建筑热接口单元(HIU),以满足36.74至44.06 kW的计算峰值设计热负荷。此外,为了实现生产消费者概念和相关商业模式,选择了经过调整的丹佛斯扁平站–3系列BS,以将分布式热源与网络连接起来。本文详细介绍了新的系统配置和概念、能量流以及热网的计算和建模结果。根据最新的研究思路,给出了在网络中保持低温以确保系统效率的前提。
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来源期刊
Future Cities and Environment
Future Cities and Environment Engineering-Architecture
CiteScore
3.10
自引率
0.00%
发文量
7
审稿时长
17 weeks
期刊最新文献
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