在秘鲁阿雷基帕,波浪能量转换器设计为产生1千瓦的点吸收器

A. E. Herrera, Pascual H. Adriazola, Héctor J. Bravo
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引用次数: 0

摘要

电能是一种资源,可以促进社会发展,提高秘鲁阿雷基帕海岸Mollendo“La ballenita”海湾居民的生活质量,那里没有主要电网的电能。能源需求约为1千瓦时,这将允许提供足够的能源来提高生活质量,以及通信和食品保存的使用。使用诸如传统发电机组之类的补充能源在经济上和环境上在现场都是不可行的。本研究的目的是证明这一问题可以通过利用地理条件来解决。由于所讨论的区域靠近海洋,海洋条件允许使用用水能柱方法设计的波浪能量转换器来解决这个问题。波浪能是一种可行的替代方案,有了初始投资,你就可以获得几乎免费和自给自足的能源,足以满足所需的需求,要实现这一点,必须证明海洋条件是足够的。波浪能在世界范围内占29.5万太瓦时,但尚未得到充分开发。研究的第一阶段是为了证明潮汐条件适合发电,使用基于浮标天气点的海洋天气预报系统(覆盖大地理区域的数据)来验证从设计和制造测量设备的区域记录中获得的信息。这个测量原型的设计和建造是为了测量波浪变量,这将是水能量柱方法的基础。该研究使用了2018年的数据,从而确定了临界波,这是水能柱法计算的基础。测量结果表明,利用水能柱法在研究区内利用波浪能发电是可行的。设计标称功率大于1kw,获得的系统容量系数为15.67%,LCOE(平准化能源成本)为0.11美元/千瓦时,这是电力市场上可行的价格。这个成本代表了投资和低维护操作。根据CONESA影响法,该研究的该值为25,这表明对环境的影响很小,并提出了一些额外的建议。这项研究的贡献将有助于减少碳氢化合物消费的增长,碳氢化合物消费占全球能源使用量的78.3%,是地球环境问题的根本原因,并证明能源使用技术的发展是一种必要的替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wave Energy Converter Design as a Point Absorber to Generate 1 kW in Arequipa, Peru
Electric energy is a resource that allows social development and the improvement of the quality of life of the inhabitants in the cove “La ballenita”, Mollendo, coast of Arequipa, Peru, where the electrical energy of the main network is not available. The energy demand is approximately 1 kWh, which will allow provide enough energy to improve the quality of life, as well as the use of communications and food preservation. The use of supplementary energy sources such as a conventional generator set is economically and environmentally unfeasible at the site. The objective of the present study was to demonstrate that this problem can be solved by taking advantage of the geographical conditions. Since the area in question is near the ocean where maritime conditions would allow to solve this problem using a wave energy converter designed with the Water Energy Column method. Wave energy is a viable alternative, with an initial investment you will have access to almost free and self-sustainable energy sufficient for the required needs, to achieve this it must be proven that the maritime conditions are adequate. Wave energy represents 295,000 TWh worldwide, but it has been poorly developed. The first stage of the research was to demonstrate that the tidal conditions are suitable for power generation, the marine weather forecast system based on BUOYWEATHER points (data which covers a large geographic area) was used to validate the information obtained from records of the area where a measuring equipment was designed and manufactured. This measurement prototype was designed and built to measure the wave variables that would be the basis of the Water Energy Column method. Data from 2018 were used for the study, which allowed to determine the critical wave which is the basis of calculation in the Water Energy Column method. The measurement results showed that it is possible to generate electrical energy using wave energy in the study area by the Water Energy Column method. The nominal power of the design is more than 1 kW, the capacity factor of the system obtained is 15.67% and the LCOE (levelized cost of energy) is $ 0.11 / kWh, which means a feasible price in the electricity market. This cost represents the investment and low maintenance of operation. According to the CONESA impact method this value for the study is 25, which suggests a low environmental impact with some additional recommendations. The contribution of the research would allow reducing the growth of hydrocarbon consumption which represents 78.3% of energy use worldwide and is a fundamental cause of the planet’s environmental problems and prove that the development of techniques for the use of energy is an alternative necessary.
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