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THERMAL STORAGE SYSTEMS FOR DISTRICT HEATING NETWORKS

机译:区域供热网络的热存储系统

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District Heating is an efficient way to provide heat to residential, tertiary and industrial users. Heat is often produced by CPH plants, usually designed to provide the base thermal load (40-50% if the maximum load) while the rest is provided by boilers. This choice is made on the basis of economic criteria, in fact the investment cost of a CHP plant is much higher than the cost of boiler, thus its use is convenient when it operates for a large number of hours.The use of storage tanks would permit to increase the annual operating hours of CHP: heat can be produced when the request is low (for instance during the night), stored and then used when the request is high. The use of boilers results partially reduced, thus the thermal load diagram is flattered. Depending on the type of CHP plant this may also affect the electricity generation. All these considerations are crucial in the free electricity market.In this paper, the use of storage systems connected to the district heating systems, is examined. A thermo fluid dynamic model of the tanks is considered in order to calculate the amount of energy actually provided, taking the real operating conditions into account. These considerations are applied to the Turin district heating system, in order to determine the impact of storage systems on the primary energy consumption required to supply heat to the users over the entire heating season.
机译:区域供热是向住宅,第三级和工业用户提供热量的有效方法。 CPH工厂通常会产生热量,通常设计为提供基本的热负荷(如果最大负荷,则为40-50%),而其余的则由锅炉提供。这种选择是根据经济标准做出的,实际上,热电联产设备的投资成本比锅炉的成本高得多,因此,当其运行数小时时,使用起来很方便。 储罐的使用将增加热电联产的年运行时间:热量低时(例如在夜间)可以产生热量,热量高时可以存储和使用。使用锅炉的结果部分减少,因此热负荷图更加讨人喜欢。根据热电联产电厂的类型,这也可能影响发电。所有这些考虑因素对于自由电力市场至关重要。 在本文中,研究了与区域供热系统连接的存储系统的使用。考虑罐的热流体动力学模型,以便在考虑实际操作条件的情况下计算实际提供的能量。这些考虑因素适用于都灵集中供热系统,以确定存储系统对整个供暖季节向用户供热所需的一次能源消耗的影响。

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