The productivity and demand of porous material has been increasing by development of industry and increasing income. In particular, the fire caused by using wood flour risks wood processing industry and stock farm. The heat transfer of wood flour is carried into the depth direction by effect of oxidizer around flame, flame sometimes is progressed as smoldering. In the case of progressing as combustion fire, identifying the location of fire is difficult, and it leads to failing fire aid fire fighting. Therefore potential cause is acted as raising additional damage. This paper conducts experiments of downward deep seated fire of natural convection conditions. The samples is New Zealand wood flour that is demanded much in the domestic and oversea market. In this experiment, temperature of deep seated side is measure by changing wood flour density in holder The densities used in experiment are 3%, 5%, 10%, 15%. As a result, the tendency of temperature inside decreases as wood flour density increases. But, in the case of density which is above $0.2140g/cm^3$, the phenomenon, decreasing temperature, is not shown. The result of measurement show that average flame spread speed of wood flour is 0.249 mm/min.
Journal of Physiology & Pathology in Korean Medicine
/
v.24
no.2
/
pp.187-196
/
2010
We have come to a conclusion below after studying about the cause of limb hyperhidrosis through references, putting the result into practice clinically from Hyungsang remedy point of view, examining the effect of treatment. The cause of limb, palm and sole hyperhidrosis. The cause of limb hyperhidrosis is stomach heat(Yangmyung heat), weakness and coldness of stomach, moisture and heat of spleen and stomach, energy insufficiency of spleen and stomach, weakness of Yin of spleen and stomach, heat by weakness Yin meridian, unspread energy of liver, severe heat of heart, weakness of heart, shortage of blood, the functional disorder of kidney meridian and heart meridian(disposition of water ascension and fire descent), heat of blood(the functional disorder of heart) etc. The cause of palm hyperhidrosis is blood insufficiency of heart and liver or the functional disease of heart and stomach. The cause of sole hyperhidrosis is the functional disease of heart and kidney or the functional disease of kidney. Types classified by the cause of limb hyperhidrosis. The case of stomach heat, moisture and heat of spleen and stomach is found a lot in Yangmyeong and Fish Type. The case of weakness and coldness of stomach or insufficiency energy of spleen and stomach is found in Bangkwang and Ki Type, the shape of disorder of transfer and transformation of spleen and stomach. The case of severe heat of heart, the functional disorder of kidney meridian and heart meridian(disposition of water ascension and fire descent), heat of blood(the functional disorder of heart), heat by weakness of meridian of Yin is found a lot in Dam, Bird and Shin Type. Limb sweat caused by unspread energy of liver is found a lot in Horse Type. Palm sweat is found a lot in Bird or Yangmyeong Type. Sole sweat is found a lot in Fish or Taeum Type. Jeokbokryung-tang was good especially for type limb hyperhidrosis falling under the shape of the small intestines heat which conforms to the person having a short perpendicular furrow of the upper lip or lifted upper lip. Palmul-tang was good for type limb hyperhidrosis tending to having leaking liquid and humor because of the disorder of transfer of Jung, Ki, Shin, Hyul. Dossipyungwi-san and Hyangsapyungwi-san were good for type limb hyperhidrosis caused by stomach heat by food accumulation and Ki depression.
The Journal of Korean Medicine Ophthalmology and Otolaryngology and Dermatology
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v.9
no.1
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pp.114-128
/
1996
"Chimumchang" seems to be a kind eczema. The cause and symptom of eczema is similar to that of chimumchang. so, I investigated the literatures of oriental medicin and recent medicine. The results are summarized as follows. 1. Chimumchang seems to be a kind of eczema. Allergic contact dermatitis, atopic dermatitis, seborrheic dermatits, neurodermatitis, nummular dermatitis, xerotic eczema and so on are similar to chimumchang on cause & symptom. 2. The cause of chimumchang are summer vital energy excess(夏脈太過), sehwa excess(歲火太過), herat meridian wind-heat(心經風熱), heart fire(心火), wind taken spleen dampnees(脾濕受風), and so on. The cause of eczema are contact of external agent, immunological problem, heridity, infection, abnormalities of sebaceous glands, neurologic dysfuction, and so on. 3. The symptoms of chimumchang have been described to the three pattern on literature of oriental medicine until now. 1) scratching slightly, It has exudation, and combination. 2) Vital energy on skin is irritable by psychological problem. At the acute stage the patient is complain of itching & pain, and gradually the exudation expands in whole body. 3) early peorid it's size is very small, and at first the patient is complain of itching, later complain of pain. The exudation change to ulcer and expands in the whole body. 4. In the investigation of prescription(Total: 34, Oral medicine: 4, Ointment: 30), the most frequently used oral medicine is sungmatang(4 times), and the most frequently used ointment are kohosan, korvunsan and kegwanhyuldobang.
On August 12, 2015, two huge explosions were accidently happened in Tianjin port, China. The explosion energies of the two explosions were similar to those of TNT 3 tons and TNT 21 tons. Until now, the cause of the explosions was not clearly announced but some guesses of the cause were released. One of the possible cause of the explosion is the generation of explosive acetylene gas from the chemical reaction between $CaC_2$ and spraying water to extinguish fire happened at the storage site of different chemical compounds. The explosion of acetylene gas might ignite the explosion of 800 tons of ammonium nitrate. In this study, the explosion due to the scenario was analyzed in order to check that such a chemical reaction can produce the huge explosion observed at the Tianjin accident.
Park, Juwon;Kim, Youngmin;Seong, Seung Hun;Park, Sanghwan;Kim, Ji Hwan;Chung, Yongho;Yoon, Sung Hwan
Journal of the Korean Society of Marine Environment & Safety
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v.27
no.5
/
pp.675-682
/
2021
Fire accidents on land and at sea can cause serious casualties; specifically, owing to the nature of marine plants and ships, the mortality rate at sea from suffocation in confined spaces is significantly higher than that on land. To prevent such cases of asphyxiation, it is essential to install ventilation fans that can outwardly direct these toxic gases from fires; however, considering the scale of marine fires, the installation of large ventilation fans is not easy owing to the nature of marine structures. Therefore, in this study, we developed a new concept for fire safety technology to control toxic gases generated by fires from applied direct current (DC) electric fields. In the event of a fire, most flames contain large numbers of positive and negative charges from chemi-ionization, which generates an "ionic wind" by Lorentz forces through the applied electric fields. Using these ionic winds, an experimental study was performed to artificially control the fire smoke caused by burning paper and styrofoam, which are commonly used as insulation materials in general buildings and ships. The experiments showed that a fire smoke could be artificially controlled by applying a DC voltage in excess of ±5 kV and that relatively effective control was possible by applying a negative voltage rather than a positive voltage.
Jung, Seung Gyo;Kim, Yoon Seop;Kim, Oh Hyun;Lee, Kang Hyun;Kim, Kwan-Lae;Jung, Woo Jin
Journal of The Korean Society of Emergency Medicine
/
v.29
no.6
/
pp.585-594
/
2018
Objective: This study was designed to report on the progress of the fire at Jecheon sports complex and to assess the adequacy of Disaster Medical Assistant Team (DMAT)'s activities in response to the fire disaster. Methods: We conducted a retrospective review based on camera recordings and medical records that were recorded at the disaster site for assessment of activities. We cooperated with firefighters, police officers, local hospital medical staffs and public health personnel in Jecheon in order to classify patients in the disaster field and to understand the patients' progress. Results: At 15:53, the first request for emergency rescue came to the 119 general emergency call center, and a request for DMAT activation came at 16:28. DMAT arrived at the site at 17:04 and remained active until the following day at 00:43. The total number of casualties was 60, including 27 minimal (Green) patients, 29 expectant (Black) patients, three delayed (Yellow) patients, and one immediate (Red) patient. There were 32 patients who received on-site care by DMAT. Two patients were transferred from a local hospital to Wonju Severance Christian Hospital for hyperbaric oxygen therapy. Conclusion: Twenty-nine victims were found in the sports complex building, and there were 31 mildly to moderately injured patients in this fire disaster. The main cause of death was thought to be smoke suffocation. Although DMAT was activated relatively quickly, it was not able to provide effective activity due to the late rescue and difficulty with fire suppression.
The purpose of this study is to find out the difference of foot pressure according to the firefighter's work postures for providing the basic information to prevent Musculoskeletal disorders. This study was conducted by 9 male firefighters. Work postures were selected for rescuee handling, fire hose and hydraulic rescue equipment work postures. These were divided into 3 position, "High", "Middle" and the postures of taking out and letting down hydraulic rescue equipment were analyzed as starting point and end point respectively. Foot Pressure was used to analyze contact area, peak pressure, and maximum force in terms of work postures, and compared between fire hose and hydraulic rescue equipment work postures. The results of foot pressure are as follows. According to the results of rescuee handling work postures, one person handling posture showed wide contact area and foot pressure showed the highest at right foot. Accoridng to the (High), (Middle), (Low) postures of fire hose, the results didn't show the difference among the contact area, peak pressure and maximum force. As the results of hydraulic rescue equipment work postures, (Low) postures showed the highest in terms of the right foot of contact area, peak pressure and maximum force and (High) postures showed the highest in left foot. The increase of foot pressure lead to be inconvenience of low extremity and muscle fatigue for maintaining postural control cause pain. Thus, it is necessary to design insole-equipped working shoe for reduce the impulse and effect of foot during the rescuee handling work which standing out as foot pressure.
Journal of Physiology & Pathology in Korean Medicine
/
v.18
no.4
/
pp.965-975
/
2004
The writer reviewed on Chojop and came to conclusions as follows. Symptoms of Chojop is appeared digestive ailment such as belching, nausea, regurgitation of acid, stomachache etc., if being serious, felt oppressed with palpitating in chest and uneasiness at times. In Dangaesimbub written by Chujinhyung, the causes of Chojop were mainly regarded as phlegmatic fire(痰火) and suggested the way of treatment. The causes of Chojop are movable fire with phlegm, insufficiency of blood caused by thinking to excess, and Shinyanghohan(腎陽虛汗) that is piled cold phlegm by voidance and coldness of Renal Yang, but the main cause is brought to a conclusion as phlegmatic fire. The phlegmatic fire is come from being in discord with the spleen and the stomach, or from in harmony between vigor and blood according to essence and vital energy which are disturbed by combined feelings. That is caused by disharmony between inner and outer conditions according to individuals. The distinctive features in shapes of Chojop are revealed to shapes such as manlike woman, womanlike man, wearing darkish or reddish color between two eyebrows, being almond eyed, strong eyebrows, being sunk the upper part of the nose bridge, lots of facial blots, Dam-body, Ki type, Shin type, Birds group, and Yangmyung type. The doctors can prescribe Whadamchungwhatang to Yangmyung type, Yanghyulsamul-tang for patients with strong eyebrows so flourishing blood and vigor, Hyangsapyungwuisan for patients belong to Birds group, Soshikchungul-tang for Ki type, and Palmiwhan for man belonged to Bangkwang-body with voidance and coldness of Renal Yang chiefly.
Successful development of weapon systems requires a stringent verification and validation (V&V) process due to the nature of the weapons in which continual increase of operational capability makes the system requirements more complicated to meet. Thus, test and evaluation (T&E) of weapon systems is becoming more difficult. In such a situation, live fire tests appear to be effective and useful methods in not only carrying out V&V of the weapon systems under development, but also increasing the maturity of the end users operability of the system. However, during the process for live fire tests, a variety of accidents or mishaps can happen due to explosion, pyro, separation, and so on. As such, appropriate means to mitigate mishap possibilities should be provided and applied during the live fire tests. To study a way of how to accomplish it is the objective of this paper. To do so, top-level sources of hazard are first identified. A framework for T&E is also described. Then, to enhance the test range safety, it is discussed how test scenarios can be generated. The proposed method is based on the use of the anticipatory failure determination (AFD) and multiple event tree analysis (ETA) in analyzing range safety. It is intended to identify unexpected hazard components even in the environment with constraints. It is therefore expected to reduce accident possibilities as an alternative to the traditional root-cause analysis.
This study was conducted to identify problems in domestic flame-retardant performance specifications. Currently, the domestic wallcovering anti-inflammatory regulations are not prepared for damage caused by smoke, with the carbonized area as the main function. In particular, given that smoke is the main cause of human casualties and injuries in a fire, it is reasonable that the flame density and toxicity of the wallcovering should also be the main performance indicators. The scope and method of research in this study were as follows. First, a prior study related to fire on various wallcoverings was considered. Second, it raised questions about the effects of smoke in the event of a fire and domestic anti-inflammatory performance tests. Third, textile wallcovering samples were manufactured with viscose rayon for experimental verification of the problems and tested by Korean and EU standards without flame retardant processing to analyze the differences between each regulation. Fourth, the performance of flame retardant wallcovering according to Korean standards was evaluated using smoke density and harmful gas testing methods. The results of each test were as follows. Non-fire retardant wallcovering was rejected by Korea standards. However, B-s1.d0 in Europe. Smoke density testing and harmful gas by domestic combustion processing on the same sample showed that the smoke density increased about 4.3 times more than before, and the harmful gas test showed that the suspension of the post-processing sample slowed earlier than the non-processed sample.
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