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Assessment of the Romanian pilot site energy consumption indicators and technical prerequisites in the implementation of the RE-COGNITION Horizon project

机译:评估罗马尼亚试点网站能源消耗指标和技术先决条件在实施重新认知地平线项目方面

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摘要

The main ambition of the RE-COGNITION Horizon 2020 project (https://re-cognition-project.eu/), in which Technical University of Cluj-Napoca is involved, is to develop a future and technology-proof integration solution aiming to maximize the utilization of the energy that is locally produced by building-level Renewable Energy Sources (RES) technologies, and the reduction of implicit and explicitly induced costs. In the frame of the project, a RES Integration Platform is developed, which incorporate existing, as well as newly developed RES and storage components, along with peripheral electrical and thermal load equipment (HVACs, chillers, ICT devices, conventional load equipment etc.). The RES Integration Platform aims to optimize the building energy flows, regardless of type and conditions. Several pilots with different building environments and climate zones, all around Europe, will be selected to test the RE-COGNITION framework components. This will sufficiently fulfil the validation purposes of the developed technologies and comply with the end-user needs. In this paper, we present the general description of the Romanian pilot site, as well as the energy consumption indicators measured in the last 3 years prior to the project’s start. An analysis of the local context which provides the technical/socio/economic constraints that the project should handle is also presented.
机译:重新认知地平线2020项目的主要野心(https:/cognition-projection.eu/),其中涉及哪一位技术大学,是开发一个旨在的未来和技术披露解决方案最大限度地利用由建筑级可再生能源(RES)技术在本地生产的能量,以及减少隐含和明确诱导的成本。在该项目的框架中,开发了RES集成平台,该平台包含现有的,以及新开发的RES和存储部件,以及外围电气和热负荷设备(HVACS,冷却器,ICT器件,传统负载设备等) 。无论类型和条件如何,RES集成平台旨在优化建筑能量流量。将选择各种建筑环境和气候区的几个飞行员,将被选中,以测试重新认知框架组件。这将充分满足开发技术的验证目的,并符合最终用户需求。在本文中,我们展示了罗马尼亚试点网站的一般描述,以及在项目开始前的过去3年中测量的能量消耗指标。对本地背景的分析,提供了项目应处理的技术/社会/经济限制。

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