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Impact of seasonal thermal energy storage design on the dynamic performance of a solar heating system serving a small-scale Italian district composed of residential and school buildings

机译:季节性储热设计对太阳能供热系统动态性能的影响,太阳能供热系统服务于由住宅和学校建筑组成的小型意大利地区

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摘要

A centralized solar hybrid heating system serving a small-scale district composed of 6 typical Italian residential buildings and 3 schools located in Naples (southern Italy) has been modelled, simulated and analysed by means of the dynamic software TRNSYS over a 5-year period. The plant is based on the operation of solar thermal collectors connected to a seasonal double U-pipe vertical Borehole Thermal Energy Storage (BTES) in order to address the seasonal misalignment between solar energy supply and thermal energy demand for heating purposes.In this paper a parametric analysis has been performed in order to investigate the performance of the district heating network upon varying the characteristics of the BTES in terms of: (i) thermal conductivity of soil, (ii) thermal conductivity of grout, (iii) U-pipe spacing, (iv) heat carrier fluid, (v) number of Borehole Heat Exchangers (BHEs), as well as (vi) type of BHEs connection (series, parallel or mixed).The primary energy consumption, the equivalent carbon dioxide emissions and the operating costs of the proposed district heating plant have been evaluated based on the simulation results upon varying the plant configurations and then compared with those associated to a conventional Italian decentralized heating system assumed as reference with the main aims of (i) assessing the potential reduction of primary energy consumption, global CO2 equivalent emissions and operating costs, (ii) exploring the influence of BTES characteristics on the overall system performance as well as (iii) establishing some simple rules for the initial design of BTES.
机译:借助动态软件TRNSYS,在5年的时间里对集中式太阳能混合供热系统进行了建模,模拟和分析,该系统为由6个典型的意大利居民建筑和那不勒斯(意大利南部)的3所学校组成的小规模区域提供服务。该工厂基于太阳能集热器的运行,该集热器连接到季节性双U型管垂直钻孔热能储存器(BTES),以解决太阳能供热与供热热能需求之间的季节性错位。为了在改变BTES的特性方面调查区域供热网络的性能,已进行了参数分析:(i)土壤的导热系数,(ii)水泥浆的导热系数,(iii)U型管间距,(iv)载热流体,(v)钻孔热交换器(BHE)的数量以及(vi)BHE连接的类型(串联,并联或混合)。一次能源消耗,等效二氧化碳排放量和根据模拟结果评估了拟议的区域供热设备的运行成本,这些模拟结果是通过改变设备配置来进行的,然后将其与传统的意大利分散供热系统相关联假设该系统具有以下主要目的:(i)评估一次能源消耗,全球CO2当量排放量和运营成本的潜在减少,(ii)探索BTES特性对整体系统性能的影响,以及(iii)建立BTES初始设计的一些简单规则。

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