Matches in SemOpenAlex for { <https://semopenalex.org/work/W2604192467> ?p ?o ?g. }
Showing items 1 to 94 of
94
with 100 items per page.
- W2604192467 endingPage "1287" @default.
- W2604192467 startingPage "1273" @default.
- W2604192467 abstract "To reveal the formation mechanism of a pulse-jet airflow's cleaning effect in a filter bag, a theoretical model is built by using the theory of the gas jet and unitary adiabatic flow according to given specifications and dimensions of the bags and resistance characteristics of the cloth and dust layer. It is about the relationship between cleaning system structure and operating parameters. The model follows the principle that the flow and kinetic energy of jet flow injected into a filter bag should be consistent with the flow of cleaning airflow in the bag and the pressure drop flowing through the filter cloth and dust layer. The purpose of the model is to achieve the peak pressure of cleaning airflow, which dominates the effect of the pulse-jet cleaning process. The cleaning system structure includes air pressure in the nozzle, structure and size of nozzle, exit velocity of nozzle, jet distance, and diameter of jet cross section. Based on the condition of the cleaning system structure and operating parameters established by using the theoretical model, Fluent software is applied to carry out a numerical simulation of the jet airflow field at the nozzle's outlet, jet airflow field between nozzle and bag top, and cleaning airflow field in the filter bag. Experimental results are used to verify the reliability of the theoretical model. They are obtained in a pilot-scale test filter with a single bag, with length 2 m and in general full-scale dimensions of the cleaning system. The results show that when any rectification measure is not installed at the bag opening, the cross-sectional area covered by the jet gas is hardly sufficient to cover the entire area of the bag opening. A large portion of the gases injected into the filter bag will overflow reversely upward from the edge due to pressure differences between the upper area and lower area inside the bag opening. This led to a serious shortage of the cleaning airflow and ar limited increase in static pressure. When a venturi-type rectifier tube is installed at the bag opening, the jet flow is converted to funnel flow for which the cross-section velocity distribution is more uniform at the throat of the rectifier tube due to the guided effects of the upper tapered pipe. Then it is transited to stressful flow below the bag opening via rectified effects of the lower dilated pipe. The results show that the gap between the static pressure of gas in the bag and the expected value is significantly reduced. The theoretical value of the nozzle diameter is enlarged to compensate for two aspects of adverse effects of cleaning airflow and energy. This is because the flow is not a purely free-form jet from the nozzle to the entrance of the rectifier tube and because the gas suffers from local resistance while flowing through the rectifier tube. The numerical simulation and experiment show that the peak pressure of cleaning airflow in the filter bag is able to reach the expected value. The results confirm that the mechanism of the pulse-jet cleaning airflow and the calculation method of the pulse-jet cleaning system structure and operating parameters offered in this study are correct. The study results provide a scientific basis for designing the system of pulse-jet fabric filters.Pulse-jet cleaned fabric filters are commonly used for air pollution control in many industries. Pulse-jet cleaning is widely used for this purpose as it enables frequent cleaning while the filter is operating. However, the theoretical system of the forming mechanism of the pulse-jet cleaning has not formed so far. This indicates the theoretical model plays an important role in designing effective pulse-jet cleaned fabric filters." @default.
- W2604192467 created "2017-04-14" @default.
- W2604192467 creator A5005573683 @default.
- W2604192467 creator A5068080767 @default.
- W2604192467 creator A5068358826 @default.
- W2604192467 creator A5068544530 @default.
- W2604192467 creator A5074734978 @default.
- W2604192467 date "2017-09-25" @default.
- W2604192467 modified "2023-09-23" @default.
- W2604192467 title "On the forming mechanism of the cleaning airflow of pulse-jet fabric filters" @default.
- W2604192467 cites W1968288641 @default.
- W2604192467 cites W1970073943 @default.
- W2604192467 cites W1970622617 @default.
- W2604192467 cites W1990195876 @default.
- W2604192467 cites W1996766593 @default.
- W2604192467 cites W2005905289 @default.
- W2604192467 cites W2018776861 @default.
- W2604192467 cites W2031101967 @default.
- W2604192467 cites W2034743809 @default.
- W2604192467 cites W2035921245 @default.
- W2604192467 cites W2036221177 @default.
- W2604192467 cites W2038058213 @default.
- W2604192467 cites W2050640893 @default.
- W2604192467 cites W2055324108 @default.
- W2604192467 cites W2070024236 @default.
- W2604192467 cites W2072000900 @default.
- W2604192467 cites W4241644868 @default.
- W2604192467 cites W2089849340 @default.
- W2604192467 doi "https://doi.org/10.1080/10962247.2017.1311967" @default.
- W2604192467 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28379118" @default.
- W2604192467 hasPublicationYear "2017" @default.
- W2604192467 type Work @default.
- W2604192467 sameAs 2604192467 @default.
- W2604192467 citedByCount "5" @default.
- W2604192467 countsByYear W26041924672020 @default.
- W2604192467 countsByYear W26041924672021 @default.
- W2604192467 countsByYear W26041924672022 @default.
- W2604192467 countsByYear W26041924672023 @default.
- W2604192467 crossrefType "journal-article" @default.
- W2604192467 hasAuthorship W2604192467A5005573683 @default.
- W2604192467 hasAuthorship W2604192467A5068080767 @default.
- W2604192467 hasAuthorship W2604192467A5068358826 @default.
- W2604192467 hasAuthorship W2604192467A5068544530 @default.
- W2604192467 hasAuthorship W2604192467A5074734978 @default.
- W2604192467 hasBestOaLocation W26041924671 @default.
- W2604192467 hasConcept C106131492 @default.
- W2604192467 hasConcept C114088122 @default.
- W2604192467 hasConcept C116067010 @default.
- W2604192467 hasConcept C119599485 @default.
- W2604192467 hasConcept C119947313 @default.
- W2604192467 hasConcept C121332964 @default.
- W2604192467 hasConcept C127413603 @default.
- W2604192467 hasConcept C1633027 @default.
- W2604192467 hasConcept C192562407 @default.
- W2604192467 hasConcept C2780411076 @default.
- W2604192467 hasConcept C56200935 @default.
- W2604192467 hasConcept C57879066 @default.
- W2604192467 hasConcept C78519656 @default.
- W2604192467 hasConceptScore W2604192467C106131492 @default.
- W2604192467 hasConceptScore W2604192467C114088122 @default.
- W2604192467 hasConceptScore W2604192467C116067010 @default.
- W2604192467 hasConceptScore W2604192467C119599485 @default.
- W2604192467 hasConceptScore W2604192467C119947313 @default.
- W2604192467 hasConceptScore W2604192467C121332964 @default.
- W2604192467 hasConceptScore W2604192467C127413603 @default.
- W2604192467 hasConceptScore W2604192467C1633027 @default.
- W2604192467 hasConceptScore W2604192467C192562407 @default.
- W2604192467 hasConceptScore W2604192467C2780411076 @default.
- W2604192467 hasConceptScore W2604192467C56200935 @default.
- W2604192467 hasConceptScore W2604192467C57879066 @default.
- W2604192467 hasConceptScore W2604192467C78519656 @default.
- W2604192467 hasFunder F4320321001 @default.
- W2604192467 hasIssue "12" @default.
- W2604192467 hasLocation W26041924671 @default.
- W2604192467 hasLocation W26041924672 @default.
- W2604192467 hasOpenAccess W2604192467 @default.
- W2604192467 hasPrimaryLocation W26041924671 @default.
- W2604192467 hasRelatedWork W2104002661 @default.
- W2604192467 hasRelatedWork W2170680957 @default.
- W2604192467 hasRelatedWork W2352711024 @default.
- W2604192467 hasRelatedWork W2358454569 @default.
- W2604192467 hasRelatedWork W2370701206 @default.
- W2604192467 hasRelatedWork W2588191492 @default.
- W2604192467 hasRelatedWork W2899084033 @default.
- W2604192467 hasRelatedWork W3092045689 @default.
- W2604192467 hasRelatedWork W3182797780 @default.
- W2604192467 hasRelatedWork W4367591889 @default.
- W2604192467 hasVolume "67" @default.
- W2604192467 isParatext "false" @default.
- W2604192467 isRetracted "false" @default.
- W2604192467 magId "2604192467" @default.
- W2604192467 workType "article" @default.