Optimising Pulse Combustion Systems for Enhanced Efficiency and Sustainability in Thermal Power Engineering

This study evaluates the potential of pulsed cleaning, an emerging technology, in the maintenance of heating energy and reclamation boilers. Findings suggest that pulsed cleaning presents an effective, energy-efficient and eco-friendly approach to deposit removal. However, there remains a necessity...

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Main Authors: Kasimov Sh.A., Sulliev A., Eshkabilov A.A.
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/86/e3sconf_pdsed2023_06006.pdf
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author Kasimov Sh.A.
Sulliev A.
Eshkabilov A.A.
author_facet Kasimov Sh.A.
Sulliev A.
Eshkabilov A.A.
author_sort Kasimov Sh.A.
collection DOAJ
description This study evaluates the potential of pulsed cleaning, an emerging technology, in the maintenance of heating energy and reclamation boilers. Findings suggest that pulsed cleaning presents an effective, energy-efficient and eco-friendly approach to deposit removal. However, there remains a necessity for further investigation to fine-tune the process and understand its long-term implications on boiler performance. The ultimate objective is to establish pulsed cleaning as a reliable, efficient and sustainable cleaning technique for boiler surfaces. The study determined that pulsed cleaning is an encouraging new technology for cleansing the surfaces of heating energy and reclamation boilers. Nevertheless, it was noted that additional research is required to fine-tune the pulsed cleaning procedure and to evaluate its prolonged effects on the efficiency of boilers.
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spelling doaj.art-711f543fdb5d49bca3dbd78bb894a9832024-01-26T10:28:16ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014490600610.1051/e3sconf/202344906006e3sconf_pdsed2023_06006Optimising Pulse Combustion Systems for Enhanced Efficiency and Sustainability in Thermal Power EngineeringKasimov Sh.A.0Sulliev A.1Eshkabilov A.A.2Tashkent State Transport UniversityTashkent State Transport UniversityTashkent State Transport UniversityThis study evaluates the potential of pulsed cleaning, an emerging technology, in the maintenance of heating energy and reclamation boilers. Findings suggest that pulsed cleaning presents an effective, energy-efficient and eco-friendly approach to deposit removal. However, there remains a necessity for further investigation to fine-tune the process and understand its long-term implications on boiler performance. The ultimate objective is to establish pulsed cleaning as a reliable, efficient and sustainable cleaning technique for boiler surfaces. The study determined that pulsed cleaning is an encouraging new technology for cleansing the surfaces of heating energy and reclamation boilers. Nevertheless, it was noted that additional research is required to fine-tune the pulsed cleaning procedure and to evaluate its prolonged effects on the efficiency of boilers.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/86/e3sconf_pdsed2023_06006.pdf
spellingShingle Kasimov Sh.A.
Sulliev A.
Eshkabilov A.A.
Optimising Pulse Combustion Systems for Enhanced Efficiency and Sustainability in Thermal Power Engineering
E3S Web of Conferences
title Optimising Pulse Combustion Systems for Enhanced Efficiency and Sustainability in Thermal Power Engineering
title_full Optimising Pulse Combustion Systems for Enhanced Efficiency and Sustainability in Thermal Power Engineering
title_fullStr Optimising Pulse Combustion Systems for Enhanced Efficiency and Sustainability in Thermal Power Engineering
title_full_unstemmed Optimising Pulse Combustion Systems for Enhanced Efficiency and Sustainability in Thermal Power Engineering
title_short Optimising Pulse Combustion Systems for Enhanced Efficiency and Sustainability in Thermal Power Engineering
title_sort optimising pulse combustion systems for enhanced efficiency and sustainability in thermal power engineering
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/86/e3sconf_pdsed2023_06006.pdf
work_keys_str_mv AT kasimovsha optimisingpulsecombustionsystemsforenhancedefficiencyandsustainabilityinthermalpowerengineering
AT sullieva optimisingpulsecombustionsystemsforenhancedefficiencyandsustainabilityinthermalpowerengineering
AT eshkabilovaa optimisingpulsecombustionsystemsforenhancedefficiencyandsustainabilityinthermalpowerengineering