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Hybrid renewable energy supply for rural healthcare facilities: An approach to quality healthcare delivery

机译:农村医疗设施的混合可再生能源供应:高质量医疗服务的一种途径

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The lack of modern electricity supply has been a major impediment to proper functioning of the healthcare centers in the rural areas, contributing to high maternal and child mortality rates in a country. Therefore, this study focuses on how to address the identified problem so that the healthcare centers or clinics in the remote areas can provide timely delivery of medical services for the concerned people. This paper, then, presents the analysis of stand-alone hybrid renewable energy systems for basic healthcare services in the rural areas, where there is no grid energy supply or the supply from the existing grid is erratic and unreliable. One major factor that informs the selection of the hybrid energy system in this study is that it promises high reliability compared to a single energy system. The research presents a statistical analysis of the potential of wind and solar energies for a selected rural locations in Nigeria based on the available long-term hourly and daily meteorological data. It employs an optimal technical and economic design and sizing of hybrid electrical power systems' components such as the wind, PV, battery and inverter systems, using the hybrid optimisation software (HOMER). Results show that Sokoto and Jos sites exist in the high wind potential regions, while the remaining sites are only suitable for small wind applications. Values obtained for global radiation show that all the sites enjoy considerable solar energy potential suitable for varying degree of solar energy applications. PV/wind/diesel/battery hybrid system configuration is considered optimum for rural health center at Iseyin, Sokoto, Maiduguri, Jos and Enugu, while hybrid systems involving PV/diesel/battery is considered ideal for Port-Harcourt, due to the quality of renewable energy potential. Hence, it was concluded that, the abundance of wind and solar resources in the country create an ideal environment for inclusion of renewable energy systems in the design and implementation of standalone power supply systems to improve rural healthcare delivery.
机译:缺乏现代电力供应已成为阻碍农村地区医疗中心正常运转的主要障碍,导致该国孕产妇和儿童死亡率高。因此,本研究着重于如何解决已发现的问题,以便偏远地区的医疗中心或诊所可以为有关人员提供及时的医疗服务。然后,本文介绍了对农村地区基本医疗服务的独立混合可再生能源系统的分析,这些地区没有电网能源供应,或者现有电网的供应不稳定且不可靠。本研究中选择混合能源系统的一个主要因素是,与单一能源系统相比,它具有较高的可靠性。这项研究根据可获得的长期每小时和每日气象数据,对尼日利亚选定农村地区的风能和太阳能潜力进行了统计分析。它使用混合优化软件(HOMER)对混合电力系统的组件(例如风力,光伏,电池和逆变器系统)进行了优化的技术和经济设计,并确定了尺寸。结果表明,Sokoto和Jos站点存在于高风势区域,而其余站点仅适用于小型风力应用。获得的全球辐射值表明,所有站点都具有可观的太阳能潜力,适合不同程度的太阳能应用。光伏/风/柴油/电池混合系统配置被认为是伊赛因,索科托,迈杜古里,乔斯和埃努古的农村卫生中心的最佳选择,而光伏/柴油/电池混合系统被认为是哈科特港的理想选择可再生能源的潜力。因此,得出的结论是,该国丰富的风能和太阳能资源为将可再生能源系统纳入设计和实施独立供电系统以改善农村医疗服务提供了理想的环境。

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