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Optimization of the hydraulic performance and integration of a heat storage in the geothermal and waste-to-energy district heating system of Ferrara

机译:费拉拉地热和垃圾发电集中供热系统的水力性能优化和储热装置集成

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District heating is an effective way to increase the share of renewables in the thermal energy sector. The district heating network (DHN) of the municipality of Ferrara in northern Italy uses a geothermal reservoir at a depth of 1 km supplying hot water at 100 C. Besides geothermal energy, the overall annual thermal demand of 170 GWh is covered by a combined heat and power (CHP) plant fed by municipal solid waste (MSW), and by auxiliary natural gas boilers. A short-term thermal energy storage having a useful capacity of 45 MWh decouples the heat production plants from the distribution network. An advanced monitoring and control system has been recently implemented to supply a high-level service to the customers connected to the network, searching for the maximum electricity saving by reducing the supply pressure of the pumping station, and targeting the maximum natural gas saving by a proper production programming of the heat supply plants. The paper describes the main design and operational features of the district heating system, and shows how the improved operation was successful in reducing the electricity and natural gas consumption. The new pressure management consists in monitoring the differential pressure in many substations, especially those located at the periphery of the network, and adjusting the water supply pressure in order to fulfil the minimum differential pressure at the most critical substation. The modified production scheduling consists in keeping using the geothermal energy and waste-to-energy plants in periods of low thermal demand and low electricity prices to daily charge the storage system. Experimental data measured in the first months of improved operation show a high saving potential of electric power for pumping equal to 400 MWh/year, which represents a saving of 30% compared to the previous "manual" optimization of the hydraulic performance. Moreover, the enhanced storage operation enables a saving of 7000 MWh/year of energy from natural gas, which finally contributes for only 11% to the annual heat demand. The calculated payback time of only a few years shows the high cost saving potential of these energy conservation measures in such systems. (C) 2019 Elsevier Ltd. All rights reserved.
机译:区域供热是增加可再生能源在热能行业中所占份额的有效方法。意大利北部费拉拉市的区域供热网(DHN)使用深度为1 km的地热蓄水池,提供100 C的热水。除地热能外,每年总热量170 GWh的热量供热以及由市政固体废物(MSW)和辅助天然气锅炉供热的热电联产厂。具有45 MWh有用容量的短期热能存储使热力发电厂与配电网络分离。最近已实施了先进的监视和控制系统,以向连接到网络的客户提供高水平的服务,通过降低泵站的供应压力来寻求最大的电力节省,并以最大的天然气节省为目标。供热厂的正确生产程序。本文介绍了区域供热系统的主要设计和运行特性,并说明了改进后的运行如何成功地减少了电力和天然气的消耗。新的压力管理包括监视许多变电站(尤其是位于网络外围的变电站)中的压差,并调节供水压力,以便在最关键的变电站中满足最小的压差。修改后的生产计划包括在热需求低,电价低的时期继续使用地热能和垃圾发电厂对存储系统进行日常充电。在改进运行的最初几个月中测得的实验数据表明,泵送电力具有很高的节能潜力,相当于每年400兆瓦时,与之前的“手动”液压性能优化相比,节省了30%。此外,增强的存储操作每年可节省7000兆瓦时的天然气能源,最终仅占年度热量需求的11%。计算出的仅几年的投资回收期就表明了这些节能措施在此类系统中具有很高的成本节约潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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