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液化天然气空温式气化器应用能耗分区

任乐梅 焦文玲 田兴浩

山东建筑大学学报2024,Vol.39Issue(2):80-88,9.
山东建筑大学学报2024,Vol.39Issue(2):80-88,9.DOI:10.12077/sdjz.2024.02.011

液化天然气空温式气化器应用能耗分区

Energy consumption zoning of application of liquified natural gas ambient air vaporizer

任乐梅 1焦文玲 2田兴浩2

作者信息

  • 1. 山东建筑大学热能工程学院,山东济南 250101
  • 2. 哈尔滨工业大学寒地城乡人居环境科学与技术工业和信息化部重点实验室,黑龙江 哈尔滨 150000
  • 折叠

摘要

Abstract

The performance of Ambient Air Vaporizers(AAVs)for Liquefied Natural Gas(LNG)exhibits notable regional variations due to climate differences.Based on meteorological data in China from 2010 to 2017,this paper analyzes the factors influencing the energy consumption of the auxiliary heater in LNG AAV applications.Through correlation and discrete employed,key meteorological factors are dimensionally reduced.Using an energy consumption analysis,the auxiliary heater degree days(EDD(ts))is defined to be the energy consumption regionalization index of LNG AAV.The Co-kriging method is employed to the spatial interpolation of EDD(ts),and a K-means clustering algorithm is used for the energy consumption zoning.The resulting zones for the application of LNG AAV in China are classified into six categories:zero,near-zero,low,medium,high and super-high energy consumption zones.In the zero energy consumption zone,where the annual temperature exceeds the auxiliary heater degree days(19℃),continuous operation of LNG AAV for 8 hours ensures that the outlet temperature of natural gas is not lower than the standard value(5℃).In other climate zones,LNG AAV may need to operate auxiliary heaters within the operational cycle to ensure that the natural gas temperature is above 5℃.The annual energy consumption of auxiliary heaters increases successively in near-zero,low,medium,high and super-high energy consumption zones.

关键词

液化天然气/空温式气化器/能耗分区/聚类分析/克里金插值

Key words

liquified natural gas/ambient air vaporizer/energy consumption zoning/cluster analysis/kriging interpolation

分类

能源科技

引用本文复制引用

任乐梅,焦文玲,田兴浩..液化天然气空温式气化器应用能耗分区[J].山东建筑大学学报,2024,39(2):80-88,9.

基金项目

山东建筑大学博士科研基金项目(X22031Z) (X22031Z)

山东建筑大学学报

1673-7644

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