首页> 外文会议>3rd IEEE International Symposium on Exploitation of Renewable Energy Sources >Renewable energy sources and energy efficiency for building's greening: From traditional village houses via high-rise residential building's BPS and RES powered co- and tri-generation towards net ZEBuildings and Cities
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Renewable energy sources and energy efficiency for building's greening: From traditional village houses via high-rise residential building's BPS and RES powered co- and tri-generation towards net ZEBuildings and Cities

机译:可再生能源和建筑绿化的能源效率:从传统的乡村房屋到高层住宅建筑的BPS和RES供电的并发和三代发电,到净ZE建筑和城市

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As an introduction to the current approaches to building''s greening and sustainability this paper outlines the intrinsic harmony of the traditional village houses encompassing efficiency and balanced use of renewable materials and energy sources. Further paper reviews technical advances in integrating energy efficiency, solar and other renewable energy sources in new and existing buildings, to approach sustainable net Zero Energy Buildings, villages and cities. Paper stresses importance of the BPS (Building Performance Simulation) and Co-simulation in developing reliable method/engineering procedures for RES co-utilization and interwoven “energy mix” scenarios optimization, including existing buildings RES integrated refurbishment. Finally, presented are study results on the technical feasibility of efficient/cost-effective use of relatively low temperature geothermal waters for co- and tri-generation of electricity and heat for heating and/or cooling by absorption refrigeration for building integration. As a result of global warming a need for air-conditioning is in extreme growth in Central and Southeastern Europe, as well as in many other regions in the world rich in low temperature geothermal waters <100°C (<212°F), and there is a growing interest to utilize these waters in an efficient and cost effective way. It is well known that Kalina thermodynamic cycle can convert relatively low temperature energy, at relatively low temperature difference towards environment, to mechanical power and further to electricity using as a working fluid mixture comprised of at least two different components (water and ammonia). However, its co-generation efficiency at the heat source temperatures below and about 100°C is too low. That was the reason to explore technical possibilities to expand the low-temperature Kalina cycle''s geo-water utilization for co- and tri-generation based on the co-utilization - hybridization o--f geothermal with solar or other renewable energy sources (RES).
机译:作为对当前建筑绿化和可持续性方法的介绍,本文概述了传统村屋的内在和谐,包括效率以及可再生材料和能源的平衡使用。进一步的论文回顾了将能效,太阳能和其他可再生能源整合到新建筑物和现有建筑物中的技术进步,以实现可持续净零能耗建筑物,村庄和城市的发展。论文强调了BPS(建筑性能模拟)和协同模拟在开发可靠的方法/工程程序以实现RES联合利用和交织的“能源混合”方案优化(包括现有建筑物RES集成翻新)中的重要性。最后,介绍了有关有效/低成本使用相对较低温度的地热水用于热电联产和三热发电和/或通过吸收式制冷用于建筑物集成的热能的技术可行性的研究结果。由于全球变暖,中欧和东南欧以及世界上许多其他富含低温地热水(<100°C(<212°F)和人们越来越有兴趣以有效和具有成本效益的方式利用这些水域。众所周知,卡利纳热力学循环可以在相对较低的温差下将相对较低的温度能量转换为环境,利用包括至少两种不同成分(水和氨)的工作流体混合物将其转换为机械功率并进一步转换为电。然而,其在低于和约100℃的热源温度下的热电联产效率太低。这就是探索在联合利用-杂交o-的基础上扩大低温Kalina循环对联合发电和三代发电的地表水利用的技术可能性的原因 -- f用太阳能或其他可再生能源(RES)进行地热。

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