DETERMINATION OF LOAD DURATION CURVE (ROSSANDER GRAPH) FOR THE REGIONS OF UKRAINE

V. Kramar
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Abstract

The purpose of this work is to determine the duration of the ambient air temperatures of different gradations during heating periods in different regions of Ukraine, based on the climatic data for 2005-2018 and the construction of load duration curves for the respective regions. The load duration curve (Rossander graph) is used to determine the number of maximum thermal load using hours, as well as in cases where the thermal load is provided by several sources - to determine their level of participation in the total annual heat energy production. It is important for a more accurate technical and economic evaluation of implementation results for some thermal energy sources. The climatic data of meteorological stations located in the regional centers of Ukraine and the capital of Autonomous Republic of Crimea, or as close as possible to them, were used for the study. The climatic data of heating periods from the autumn of 2005 to 2018 were considered. As the result of study, the duration of various degrees of ambient air temperature in the heating period was determined for all the regional centers of Ukraine. Taking into account the significant climatic differences in the regions of Ukraine, the results were analyzed separately for two groups of regions, for which, according to averaged data, load duration curves were determined. The examples of using of obtained results for calculations are given. On the basis of obtained data regarding duration of ambient temperatures higher than +8°C during the heating season, the energy saving potential of implementation of weather-dependent regulation of heat energy production for heating purposes in different regions was theoretically estimated, which is, on average, 8.4% for the first temperature zone (north, center) and 13% for the second zone (south).
乌克兰地区负荷持续时间曲线(rossander图)的确定
这项工作的目的是根据2005-2018年的气候数据和各自地区的负荷持续时间曲线的构建,确定乌克兰不同地区在供暖期间不同等级的环境空气温度的持续时间。负荷持续时间曲线(Rossander图)用于确定最大热负荷使用小时数,以及在热负荷由多个来源提供的情况下-确定它们在年度总热能生产中的参与水平。对某些热源的实施效果进行更准确的技术经济评价具有重要意义。研究使用了位于乌克兰区域中心和克里米亚自治共和国首都的气象站的气候数据,或尽可能靠近它们。选取2005 - 2018年秋季采暖期的气候数据。根据研究结果,确定了乌克兰所有区域中心采暖期不同程度环境气温的持续时间。考虑到乌克兰地区显著的气候差异,对两组地区的结果分别进行了分析,根据平均数据确定了负荷持续时间曲线。给出了用所得结果进行计算的实例。根据获取的采暖季环境温度高于+8℃持续时间数据,从理论上估算了不同地区供暖供热产热随天气调节的节能潜力,第一温度区(北部、中部)平均节能8.4%,第二温度区(南部)平均节能13%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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