首页> 外文期刊>Energy & Environment >Thermo-economic and exergy assessment and optimization of performance of a hydrogen production system by using geothermal energy
【24h】

Thermo-economic and exergy assessment and optimization of performance of a hydrogen production system by using geothermal energy

机译:利用地热能进行热经济和火用评估以及制氢系统的性能优化

获取原文
获取原文并翻译 | 示例
           

摘要

Due to the increasing need to find alternative fuels to restrict the use of oil in the world, substantial alternative sources have been identified. One of these alternative sources is hydrogen. Hydrogen is produced through an electrochemical process. The purpose of this paper is to model an electrochemical process and to determine the yields or losses of process efficiency by increasing or decreasing the water supply temperature. For the adaptation of the environmental process, the electricity required for the electrolyzer is supplied from a geothermal unit. For the sake of achieving the desired goals, the geothermal unit has been modeled and various parameters have been investigated. In this paper, an analysis of energy and exergy thermodynamics, as well as the exergy-economic analysis of the proton exchange membrane (PEM-type) electrolysis process for hydrogen production, which derives its driving power from ground-based power has been carried out. For this purpose, the required work is generated from the geothermal source by the Rankine cycle. The resulting work is used as an input for the electrolysis process and electrolysis water is preheated by geothermal sewage treatment. Funtional parameters based on the first and second thermodynamic rules are determined for the system and the performance of the system has been evaluated. The effects of geothermal water temperature and electrolysis on the amount of generated hydrogen have been studied and it has been shown that these parameters have a correlation with each other. Also, energy, exergy and thermo-economic analysis methods have been carried out by using MATLAB software.
机译:由于越来越需要寻找替代燃料来限制世界范围内的石油使用,因此已经找到了大量的替代来源。这些替代来源之一是氢。氢是通过电化学过程产生的。本文的目的是对电化学过程进行建模,并通过增加或降低供水温度来确定过程效率的产量或损失。为了适应环境过程,电解器所需的电能由地热单元提供。为了达到期望的目标,对地热单元进行了建模,并对各种参数进行了研究。本文对能量和火用热力学进行了分析,并对质子交换膜(PEM型)电解制氢过程的用能经济分析进行了分析,该过程从地面动力中获取动力。 。为此,通过兰金循环从地热源产生所需的功。所产生的功用作电解过程的输入,并且通过地热污水处理将电解水预热。为系统确定基于第一和第二热力学规则的功能参数,并评估系统的性能。研究了地热水温度和电解对氢气产生量的影响,结果表明,这些参数彼此之间具有相关性。而且,已经通过使用MATLAB软件进行了能量,火用和热经济分析方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号