• Title/Summary/Keyword: Airflow pattern

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Experimental and CFD Study on the Exhaust Efficiency of a Smoke Control Fan in Blind Entry Development Sites (맹갱도 굴진 작업공간내 방재팬의 화재연 배기효율에 관한 현장실험 및 CFD 연구)

  • Nguyen, Vanduc;Kim, Dooyoung;Hur, Wonho;Lee, Changwoo
    • Tunnel and Underground Space
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    • v.28 no.1
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    • pp.38-58
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    • 2018
  • The ventilation system plays a crucial role in underground mine safety. The main objective of the ventilation system is to supply sufficient air to dilute the contaminated air at working places and consequently provide tenable environment during the normal operation, while it also should be capable of controlling the fire propagation and facilitate rescue conditions in case of fire in mines. In this study, a smoke control fan was developed for the auxiliary ventilation as well as the fire smoke exhaust. It works as a free-standing auxiliary fan without tubing to dilute or exhaust the contaminated air from the working places. At the same time, it can be employed to extract the fire smoke. This paper aims to examine the smoke control efficiency of the fan when combined with the current ventilation system in mines. A series of the site experiments and numerical simulations were made to evaluate the fan performance in blind entry development sites. The tracer gas method with SF6 was applied to investigate the contaminant behavior at the study sites. The results of the site study at a large-opening limestone mine were compared with the CFD analysis results with respect to the airflow pattern and the gas concentration. This study shows that in blind development entry, the most polluted and risky place, the smoke fan can exhaust toxic gases or fire smoke effectively if it is properly combined with an additional common auxiliary fan. The venturi effect for smoke exhaust from the blind entry was also observed by the numerical analysis. The overall smoke control efficiency was found to be dependent on the fan location and operating method.

Constrictive Bronchiolitis Accompanied By Non-Hodgkin's Lymphoma (비 Hodgkin 림프종과 동반된 교착성 세기관지염)

  • Lee, Kye Young;Jee, Young Koo;Choi, Young Hi;Myong, Na Hye;Kim, Keun Youl
    • Tuberculosis and Respiratory Diseases
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    • v.43 no.4
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    • pp.613-622
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    • 1996
  • Constrictive bronchiolitis, one of small airway diseases, is very rare and occupies one of the two arms of bronchiolitis obliterans together with proliferative bronchiolitis. Proliferative bronchiolitis, presenting the prototype with bronchiolitis obliterans with organizing pneumonia(BOOP), can be easily taken into diagnostic consideration in terms of relatively rapid clinical course and radiologic presentation as if atypical pneumonia with interstitial and alveolar infiltrations. Meanwhile constrictive bronchiolitis is not only very Tare but also easily overlooked as chronic obstructive pulmonary diseases such as emphysema, because it usually shows normal chest radiographic finding and obstructive pattern in pulmonary function test. In the aspects of the response to treatment, proliferative bronchiolitis showed dramatic response to the corticosteroid while constrictive bronchiolitis is intractable, which is easily explained on the basis of the pathologic characteristics of cicartrical replacement of bronchiolar walls. The bronchiolitis, both proliferative and constrictive, can be associated with diverse conditions such as inhalational injury, postinfectious process, drug of chemical induced reactions, connective tissue diseases, and organ trasplantation. And there is idiopathic type which has no associated condition. There is one explanation that both types of bronchiolitis lie on the same disease spectrum because the different disease pattern can be evoked from the same etiology. In contrast, another explanation is suggested that both types of bronchiolitis are one of nonspecific tissue reaction rather than a disease specific histologic finding because the various types of causes can provoke the same histologic findings. These dilemma remains for further investigation. With literature investigation, the authors report a case of constrictive bronchiolitis proven by open lung biopsy in 47 year old female who was diagnosed as non-Hodgkin's lymphoma and simultaneously had relatively rapid progression of airflow obstruction and showed negative radiographic finding without the rise factors for the development of chronic obstructive lung disease. We consider it as idiopathic because we could not find any relationship between constrictive bronchiolitis and non-Hodgkin's lymphoma on the literature search and it requires further investigation.

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The Change of Cell Distribution in the lung and the Expression Pattern of IL-4 and IL-10 in Asthma Induced Mouse (천식유발 마우스에서의 폐 내 세포조성 변화와 IL-4 및 IL-10의 발현 양상)

  • Lee, Soo-Jin;Park, Se-Jong;Li, Tian-Zhu;Jang, Yang-Ho;Choe, Nong-Hoon
    • Journal of Life Science
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    • v.16 no.5
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    • pp.780-787
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    • 2006
  • Asthma is a chronic inflammatory disorder of the airways, which characterized by bronchial hyperresponsiveness, reversible airflow limitation and respiratory symptoms. Internationally, the prevalence of asthma has been increased over last 3 decades. Recently, several studies of asthma have been reported with gradually increasing importance. To tesify the hypothesis that interleukin (IL)-4 and IL-10 may be an important determinant of the severity of airway inflammation, their expression was studied in mouse model of asthma. BALB/c mouse, IL-4 Knockout (KO) mouse and IL-10 KO mouse were sensitized with intraperitoneal injection of ovalbumin adsorbed to aluminum potassium sulfate, followed by challenges with intranasal ovalbumin on 3 consecutive days. The severity of pulmonary inflammation was assessed by eosinophilia in BAL fluid, number of total BAL cells, histopathological changes in lung tissues, and immunohistochemical staining against IL-4 and IL-10. In BAL fluid, the number of total cells was significantly increased in asthma induced mouse compare to the control. In asthma induced mouse, eosinophil was increased to 56% and neutrophil was 0.2%. In H &E stains, eosinophilic infiltration and epithelium hyperplasia were clearly noticed in asthma induced mouse. In immunohistochemical staining for IL-4 and IL-10, there was no positive reaction in control group. However, very strong reactions were appeared in asthma induced group. In this research, IL-4 and IL-10, which seem to play a central role in allergic asthma, KO mouse was utilized to test the causative relationship between airway inflammation and role of specific cytokine. Asthma induced IL-4 and IL-10 KO mice showed much decreased inflammatory reactions in the number of total BAL cells, in eosinophilic infiltration, and in immunohistochemical stains against diverse inflammatory proteins. These results suggest that IL-4 and IL-10 increase the asthmatic reactions in vivo mice model.