关于在扩大可再生能源规模的背景下选择乌兹别克斯坦共和国能源安全指标的问题

IF 1.204 Q3 Energy
K. R. Allayev, N. R. Avezova, T. G. Zoryna, N. N. Dalmuradova
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引用次数: 0

摘要

摘要 世界能源系统的加速转型与过去 10 年发生的事件有关,如 2021 年开始的全球能源危机、COVID-19 大流行病等,这些事件影响了全球能源面貌的显著变化,决定了全球经济在 "危机后 "的复苏中必须快速引入可再生能源。与世界其他国家一样,乌兹别克斯坦的第四次能源转型也是根据可持续发展目标进行的。国家计划在 2023 年安装容量为 4 300 兆瓦的可再生能源,这最终将有助于实现能源资源的多样化,并有可能在考虑到新引进的可再生能源容量份额的情况下评估国家的能源安全水平。然而,如果我们考虑到可再生能源的 "不稳定性 "这一特点,国家的能源安全可能仍然受到威胁。这项工作的目的是在对现有的全球方法进行详细和批判性审查的基础上,结合乌兹别克斯坦能源系统的地缘战略、政治、技术和工艺特点,确定评估乌兹别克斯坦能源安全水平的最重要指标,这些方法涉及对来自两个或多个样本的原始数据进行比较。结果显示,由于乌兹别克斯坦近年来的政治进程,"从可再生能源中生产(提取)的一次能源与燃料和能源消费总量之比 "指标的权重与 "能源供应商和类型多样化指标"、"电力供应可靠性指标 "和 "主要生产资金再生产指标 "的权重具有明显的可比性。在选定指标的基础上,提出了评估乌兹别克斯坦共和国能源安全水平的方法,使人们能够获得经济部门能源安全的透明图景。因此,可以通过稳定可靠的电力供应指标,确定各领域的优势和劣势,并通过能源方案及时防止预期的负面结果,从而有助于提高国家的能源安全水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

On the Issue of Choosing Indicators of Energy Security of the Republic of Uzbekistan in the Context of Scaling Renewable Energy

On the Issue of Choosing Indicators of Energy Security of the Republic of Uzbekistan in the Context of Scaling Renewable Energy

On the Issue of Choosing Indicators of Energy Security of the Republic of Uzbekistan in the Context of Scaling Renewable Energy

The accelerated transformation of the world’s energy system, associated with events observed over the past 10 years, such as the global energy crisis that began in 2021, the COVID-19 pandemic, and others, have influenced a noticeable change in the face of global energy, dictating the introduction of renewable energy sources at a rapid pace for a “post-crisis” recovery of the global economy. As in other countries of the world, the fourth energy transition in Uzbekistan is also accompanied in accordance with the Sustainable Development Goals. The state plans to install renewable energy sources with a capacity of 4300 MW in 2023, which ultimately contributes to the diversification of energy resources and will make it possible to assess the country’s energy security level, taking into account the share of newly introduced renewable energy capacities. However, if we take into account the peculiarity of the “instability” of renewable energy sources, the energy security of the state may remain under threat. The purpose of this work is to identify the most significant indicators of energy security in assessing its level for Uzbekistan, taking into account the geostrategic, political, technical, and technological features of the country’s energy system based on a detailed and critical review of existing global methodologies regarding the comparison of primary data from two or more samples. It has been revealed that the weight of the indicator “Ratio of primary energy production (extraction) from renewable energy sources to gross fuel and energy consumption” has a significantly comparable role with the indicators of the blocks “Block of diversification of suppliers and types of energy resources,” “Block of reliability of electricity supply,” and “Block of reproduction of the main fund of production (MFP)” due to the political course of Uzbekistan in recent years. Based on the selected indicators, a methodology for assessing the level of energy security of the Republic of Uzbekistan is proposed, which allows one to obtain a transparent picture of energy security in economic sectors. As a result of which it is possible to identify strengths and weaknesses in various areas and timely prevent expected negative results through energy scenarios with a stable and reliable indicator of electricity supply, contributing to an increase in the level of energy security of the country.

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来源期刊
Applied Solar Energy
Applied Solar Energy Energy-Renewable Energy, Sustainability and the Environment
CiteScore
2.50
自引率
0.00%
发文量
0
期刊介绍: Applied Solar Energy  is an international peer reviewed journal covers various topics of research and development studies on solar energy conversion and use: photovoltaics, thermophotovoltaics, water heaters, passive solar heating systems, drying of agricultural production, water desalination, solar radiation condensers, operation of Big Solar Oven, combined use of solar energy and traditional energy sources, new semiconductors for solar cells and thermophotovoltaic system photocells, engines for autonomous solar stations.
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