首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >REDUCTION OF PRIMARY ENERGY CONSUMPTION THROUGH DISTRIBUTED THERMAL STORAGE IN BUILDINGS CONNECTED WITH A DISTRICT HEATING NETWORK
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REDUCTION OF PRIMARY ENERGY CONSUMPTION THROUGH DISTRIBUTED THERMAL STORAGE IN BUILDINGS CONNECTED WITH A DISTRICT HEATING NETWORK

机译:通过与地区供热网络连接的建筑物中的分布式热储存减少一次性能量消耗

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One of the possible options for increasing the primary energy efficiency in district heating networks (DHNs) consists in flattening the thermal load diagram of the plants. This can be obtained through thermal storage. Storage generally allows one to increase the percentage of heat produced through CHP plants, waste heat or renewable systems. In this work, a numerical approach to analyze possible effects of distributed storage on the primary energy consumption is presented. This is based on the availability of detailed information about the thermal substations that connect the users to the DHN and a thermo-fluid dynamic model of the network. First, the analysis of a user of the district heating network is proposed in order to show the operating conditions of the heat exchanger in the thermal substation. Then the model of the network is presented and an application is proposed. This application allows us to discuss how the thermal request of a user modifies along the network because of the heat capacity of the network itself and mixing with the mass flow rates at different temperatures. Therefore, the thermal load that the plants should fulfill is different than the simple summation of the thermal request of the users. This tool allows one to link the thermal thermal request of the users to the thermal load of the plant and thus to the global primary energy consumption. It can be then applied to the evaluation of possible variation of thermal request profile of the users.
机译:增加地区供热网络(DHN)中的主要能量效率的可能选择之一包括平整植物的热负荷图。这可以通过热存储获得。储存通常允许人们增加通过CHP植物,废热或可再生系统产生的热量的百分比。在这项工作中,提出了一种分析分布存储对主要能量消耗的可能影响的数值方法。这是基于有关将用户连接到DHN和网络的热流体动态模型的热变电站的详细信息的可用性。首先,提出了对区域加热网络的用户的分析,以便在热变电站中显示热交换器的操作条件。然后呈现网络的模型,提出了应用程序。该应用程序允许我们讨论用户的热请求如何沿网络修改,因为网络本身的热量和与不同温度的质量流速混合。因此,植物应满足的热负荷不同于用户的热请求的简单求和。该工具允许人们将用户的热热请求链接到植物的热负荷,从而达到全球初级能耗。然后可以应用于评估用户的热请求简档的可能变化。

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