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Hybrid System that Integrates the Lost Energy Recovery on the Water-Water Heat Pump Exhaust Circuit

机译:混合系统集成了水 - 水热泵排气回路的能量回收

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Exceeding intermitence and the stochastic character associated with most renewable energy sources in order to maintain the balance between generation and consumption require the most efficient energy storage methods.This balance is important to maintain the quality of the power supply by adjusting the frequency and voltage of the grid.Storage is the capture of the energy produced at a given time for later use.It is known that electricity cannot be stored directly unless it is stored in condenser batteries or in superconducting coils.Other methods of electricity storage presuppose the conversion of these into other forms of energy: mechanical storage,electrochemical storage.The optimization of RES operation and,implicitly,of the energy system implies the choice of a suitable conversion / storage system that must take into account a number of factors,such as: capacity and minimum storage time,loading and unloading conditions,minimum number of cycles download loading,power supply required by the storage system,system lifetime.It is not to be neglected the space required for the installation of the storage systems and their impact on the environment during their exploitation as well as during the post-use and recycling period.There are RES that contain natural storage systems (hydro-electric power plants and biomass and biogas generators).The article proposes an analysis of how to store electricity by approach a Pelton water-water-turbine hybrid system.The heat pump consumes electrical energy for action,producing a thermal effect.By integrating a system with Pelton water storage tank and turbine on the heat pump outlet circuit,the lost hydraulic energy can be recovered.The experimental hybrid system was made to develop HRES optimization models.Hybrid systems may exceed the limits of individual generators in terms of efficiency,economy,reliability and flexibility.An energy storage system can alleviate the problems associated with uncertainties and fluctuations from renewable sources.The large number of random variables and parameters in a hybrid energy system requires optimization to increase the efficiency of hybrid system components to achieve economic and technical benefits.
机译:超出与最可再生能源相关的间歇性特征,以便维持生成和消费之间的平衡需要最有效的能量存储方法。这一平衡对于通过调整频率和电压来保持电源的质量非常重要网格是捕获在给定时间的给定时间产生的能量的捕获。据已知,除非它存储在冷凝器电池或超导线圈中,否则不能直接存储电。其他电力存储方法将这些电流转换为其他形式的能量:机械存储,电化学存储。res操作的优化和隐式的能量系统的优化意味着选择合适的转换/存储系统,必须考虑一些因素,例如:容量和最小值存储时间,加载和卸载条件,最小循环次数下载加载,需要电源通过存储系统,系统生命周期不容忽视安装存储系统所需的空间及其对利用期间对环境的影响以及在使用后和回收期间。自然存储系统(水电站和生物量和沼气发电机)。文章提出了如何通过接近佩尔顿水 - 水 - 汽轮机混合系统来储存电力的分析。热泵消耗电能的动作,产生热量效果。通过将系统与热泵出口电路上的封锁蓄水罐和涡轮机集成,可以恢复丢失的液压能量。采用实验混合系统开发HRES优化模型.Hybrid系统可能超过个体发电机的限制效率,经济,可靠性和灵活性。能量存储系统可以缓解与更新的不确定性和波动相关的问题能源来源。混合能量系统中的大量随机变量和参数需要优化以提高混合系统组件的效率,实现经济和技术效益。

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