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Optimization of the thermal request profiles of buildings connected with a large district heating network

机译:优化与大区加热网络相连的建筑物的热请求型材

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Thermal storage is very important in modern district heating networks in order to increase the share of waste heat and heat produced through renewable sources and cogeneration. The role of thermal storage is even more important in the case of Mediterranean areas, where climate and user behavior cause high peak requests in the morning. Nevertheless the installation of large storage volumes is not always feasible, especially in dense urban areas, therefore alternative options are investigated. One of these options is virtual storage. This consists in proposing changes to the thermal request profiles of some of the connected buildings, in order to obtain a peak shaving, which is an effect similar to that obtained using storage. To perform such approach there are two crucial elements: 1) an advanced ICT solution able provide real time information about the thermal request of the buildings and the thermodynamic conditions at the thermal substations; 2) a detailed thermo fluid-dynamic model of the district heating network able to simulate the temperature evolution along the network as the function of time. Using physical models it is possible to examine the effects, obtained by modifying the thermal request of users, on the total load of the thermal plants feeding the network. In particular, the model is applied to the analysis of changes in the start-up time of the buildings as well as possible pauses during the day. The start-up strategy should not produce significant effects on the building temperatures, so that acceptable comfort standard can be guaranteed. This is checked using a compact model of the buildings which parameters are obtained through data measured at the thermal substations. These changes in the request profiles usually involve a larger heat request. Nevertheless, peak shaving is accompanied by a reduction in heat generation of boilers and an increase in the thermal production of efficient systems, such as cogeneration units. This results in a significant reduction in the primary energy consumption. The goal of the analysis is to find the optimal start-up strategy in order to minimize the primary energy consumption at the thermal plants. An application to the Turin district heating network, which is the largest network in Italy, is presented. In particular, a subnetwork connecting the main transport network to about 100 buildings located in the central area of the town is considered. The analysis if performed in selected days where the optimization was conducted the day before on the basis of weather forecasts and then applied to the network. Despite the changes in the request profiles could be applied only to a limited number of buildings, the analysis show that the peak request can be reduced. Simulations performed considering the application of changes to a larger number of buildings show that reduction in the primary energy consumptions of the order of 1.25% can be obtained.
机译:热存储在现代地区采暖网络中非常重要,以提高通过可再生来源和热电联产产生的废热和热量的份额。在地中海地区的情况下,热存储的作用更为重要,气候和用户行为在早晨导致高峰期请求。尽管如此,大存储体积的安装并不总是可行的,特别是在密集的城市区域,因此调查了替代方案。其中一个选项是虚拟存储。这包括提出对一些连接建筑物的热请求轮廓的改变,以获得峰值剃须,这是类似于使用存储器获得的效果。为了执行这种方法,有两个重要元素:1)先进的ICT解决方案能够提供关于建筑物的热请求的实时信息和热变电站的热力学条件; 2)区域加热网络的详细热流体 - 动力学模型,能够以时间的函数模拟沿网络的温度演变。使用物理模型可以通过修改用户的热电厂的总负载来检查通过修改用户的热请求而获得的效果。特别是,该模型应用于建筑物的启动时间的变化以及可能在白天的可能暂停的分析。启动策略不应对建筑温度产生显着影响,因此可以保证可接受的舒适度标准。这是使用结构的紧凑型模型检查,该建筑物通过在热变电站上测量的数据获得参数。请求配置文件中的这些变化通常涉及更大的热量请求。尽管如此,峰值剃须伴随着减少锅炉的发热和高效系统的热量增加,例如热电联产单位。这导致主要能耗的显着降低。分析的目的是找到最佳的启动策略,以最大限度地减少热植物的主要能量消耗。提出了本土供暖网络的应用,这是意大利最大的网络。特别是,考虑了将主运输网络连接到大约100个位于城镇中心区域的子网。分析如果在以前一天在天气预报的基础上进行优化的选定日期,然后应用于网络。尽管请求配置文件的变化只能应用于有限数量的建筑物,但分析表明可以减少峰值请求。考虑到对更大数量的建筑物的改变的应用表明,可以获得1.25%的主要能量消耗的减少。

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