Increase of energy efficiency at crude oil atmospheric distillation

Relevance of work is caused by the need to decrease energy and resource expenditures. The aggravation of this problem is closely related to constant increase in cost of energy resources: natural gas, electric power, etc. Development of legal, economic and organizational bases of stimulating energy s...

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Main Authors: Viktor Babkin, Fedor Buryukin, Alena Kiseleva, Aleksandr Grigoriev, Svetlana Kositsyna
Format: Article
Language:Russian
Published: Tomsk Polytechnic University 2019-05-01
Series:Известия Томского политехнического университета: Инжиниринг георесурсов
Subjects:
Online Access:http://izvestiya.tpu.ru/archive/article/view/1444
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author Viktor Babkin
Fedor Buryukin
Alena Kiseleva
Aleksandr Grigoriev
Svetlana Kositsyna
author_facet Viktor Babkin
Fedor Buryukin
Alena Kiseleva
Aleksandr Grigoriev
Svetlana Kositsyna
author_sort Viktor Babkin
collection DOAJ
description Relevance of work is caused by the need to decrease energy and resource expenditures. The aggravation of this problem is closely related to constant increase in cost of energy resources: natural gas, electric power, etc. Development of legal, economic and organizational bases of stimulating energy saving and increasing power efficiency is based on the Federal law of the Russian Federation of November 23, 2009 no. 261-FZ "On energy saving and power efficiency increase and on modification of separate acts of the Russian Federation". The aim of the research is to develop a complex of technical actions to increase energy efficiency of oil atmospheric distillation installation "Achinsk Refinery", which allows increasing temperature of raw materials of a column at simultaneous reduction of technological fuel consumption in the furnace and decrease of electric power expenditure in air cooling devices. Research methods: the analysis of technological flows of atmospheric distillation unit. It was ascertained that fuel oil and diesel fraction have a reserve for heat recovery, which is not used for heating feed streams. The authors have selected modern heat-exchange equipment, analyzed its efficiency and made its thermal design. The paper identifies technical and economic indices of the installation reconstruction project. Results: The authors developed a version of three-furnace technological scheme for oil heating with replacement of shell-and-tube heat-exchange equipment by spiral heat exchanger for more complete heat recovery of hot product flows removed from atmospheric column and Stripping column of the oil distillation complex installation. Based on thermal and technical and economic calculations it was proved that the scheme proposed promote reduce of power consumption by air cooling devices decreasing the temperature of incoming technological flows.
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spelling doaj.art-ade355b0dcef4811904a7650c3d6ac252023-06-02T21:07:55ZrusTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Инжиниринг георесурсов2500-10192413-18302019-05-013253Increase of energy efficiency at crude oil atmospheric distillationViktor BabkinFedor BuryukinAlena KiselevaAleksandr GrigorievSvetlana KositsynaRelevance of work is caused by the need to decrease energy and resource expenditures. The aggravation of this problem is closely related to constant increase in cost of energy resources: natural gas, electric power, etc. Development of legal, economic and organizational bases of stimulating energy saving and increasing power efficiency is based on the Federal law of the Russian Federation of November 23, 2009 no. 261-FZ "On energy saving and power efficiency increase and on modification of separate acts of the Russian Federation". The aim of the research is to develop a complex of technical actions to increase energy efficiency of oil atmospheric distillation installation "Achinsk Refinery", which allows increasing temperature of raw materials of a column at simultaneous reduction of technological fuel consumption in the furnace and decrease of electric power expenditure in air cooling devices. Research methods: the analysis of technological flows of atmospheric distillation unit. It was ascertained that fuel oil and diesel fraction have a reserve for heat recovery, which is not used for heating feed streams. The authors have selected modern heat-exchange equipment, analyzed its efficiency and made its thermal design. The paper identifies technical and economic indices of the installation reconstruction project. Results: The authors developed a version of three-furnace technological scheme for oil heating with replacement of shell-and-tube heat-exchange equipment by spiral heat exchanger for more complete heat recovery of hot product flows removed from atmospheric column and Stripping column of the oil distillation complex installation. Based on thermal and technical and economic calculations it was proved that the scheme proposed promote reduce of power consumption by air cooling devices decreasing the temperature of incoming technological flows.http://izvestiya.tpu.ru/archive/article/view/1444energy efficiencyenergy intensityatmospheric distillation of crude oilmodernizationspiral heat exchanger
spellingShingle Viktor Babkin
Fedor Buryukin
Alena Kiseleva
Aleksandr Grigoriev
Svetlana Kositsyna
Increase of energy efficiency at crude oil atmospheric distillation
Известия Томского политехнического университета: Инжиниринг георесурсов
energy efficiency
energy intensity
atmospheric distillation of crude oil
modernization
spiral heat exchanger
title Increase of energy efficiency at crude oil atmospheric distillation
title_full Increase of energy efficiency at crude oil atmospheric distillation
title_fullStr Increase of energy efficiency at crude oil atmospheric distillation
title_full_unstemmed Increase of energy efficiency at crude oil atmospheric distillation
title_short Increase of energy efficiency at crude oil atmospheric distillation
title_sort increase of energy efficiency at crude oil atmospheric distillation
topic energy efficiency
energy intensity
atmospheric distillation of crude oil
modernization
spiral heat exchanger
url http://izvestiya.tpu.ru/archive/article/view/1444
work_keys_str_mv AT viktorbabkin increaseofenergyefficiencyatcrudeoilatmosphericdistillation
AT fedorburyukin increaseofenergyefficiencyatcrudeoilatmosphericdistillation
AT alenakiseleva increaseofenergyefficiencyatcrudeoilatmosphericdistillation
AT aleksandrgrigoriev increaseofenergyefficiencyatcrudeoilatmosphericdistillation
AT svetlanakositsyna increaseofenergyefficiencyatcrudeoilatmosphericdistillation