Pumps for hazardous materials handling areas of self service stations are still scattered in the country, generator room, engine room of the small vessels, etc. are installed inside buildings against big is the risk of fire extinguishers are installed only. These facilities are in severe climate change because it is an open space area, as well as a water based fire extinguishers may not be suitable for that type of gas extinguishing system is also adaptable. This study features a compressed air port operation principles and characteristics, equipment, fire extinguishers, which can minimize the casualties and property losses from fire against hazardous substances in small business, design requirements, domestic contain fire extinguishers laws and foreign Compression Four fire extinguishers through the air and foreign regulations comparative analysis of the compressed air port installations such as fire extinguishers and applied to study the measures to be included are fire extinguishers installed in the country. Climate change is a big country review In winter, water based fire extinguishers are also concerned about the freeze, but compared to the foreign installations were exploring ways to work in the country. CAF is especially preferred that the fire extinguishing performance and to demonstrate the protective space as there is a risk of frost risk significantly less compressed air port digestion plant.
Optimizing energy usage for maximum efficiency is an essential goal for manufacturing plants in every industrial manufacturing sector. The generation and distribution of purifying compressed air is a large expense incurred in practically all manufacturing processes. Not only is the generation and treatment expensive equipment of compressed air, but frequent maintenance and effective operation is also required. As a plant’s compressed air system is often an integral part of the production process, it needs to be reliable, efficient, and easy to be maintain. In this paper, we study to find operating method to save energy from the adsorption dryer in the process of purifying compressed air, which is required for a clean room production site in “A” company.
The compressed air passes through a pressure vessel with two “towers” filled with a material such as activated alumina, silica gel, molecular sieve or other desiccant material. This desiccant material attracts the water from the compressed air via adsorption. As the water clings to the desiccant, the desiccant particle becomes saturated. Therefore, Adsorption dryer is an extremely significant facility which removes the moisture in the air 70℃ below the dew point temperature while using a lot of energy. Also, the energy consumption of the adsorption dryer can be varied by various operating conditions (time, pressure, temperature, etc). Therefore, based on existing operating experiments, we have searched operating condition to maximize energy saving by changing operating conditions of the facility. However, due to a short experiment period (from September to October), further research will be focused on considering seasonality.
공기를 이용한 분리막 세정은 MBR공정에서 fouling 억제 및 장기간 성능을 유지시키는 주요 핵심 방법이다. 기존의 MBR은 공기의 부상하는 힘을 이용한 방식으로 적은 동력을 이용하지만 주변환경, 유체흐름 및 원수성상 등으로 다양한 문제가 예기치 못하게 발생한다. 이를 개선하기 위하여 본사에서는 간헐적으로 가압 공기를 이용하여 fouling 억제 및 플럭스의 안정화를 이루는 i-MBR 모듈을 개발하였다. i-MBR 모듈에 들어가는 산기관을 개량하여 공기에 의한 파울링 억제 효과를 최대한 높이는 연구를 진행하였다. 산기관과 air의 상관관계를 진행하고, 이를 기반으로 pilot-scale 장치를 세팅하여 flux recovery 및 내구성 등을 비교분석하 였다.
Compressed air has many uses on board ship, ranging from diesel engine starting to the cleaning of machinery during maintenance. In an effort to enhance the performance of the marine compressed air system, this work studied a way to reduce condensation from the air compressor via experiments. Especially more condensation is produced when the temperature at compressor outlets and the humidity of the air are higher. so in the research, drain production change has been observed by additionally installing the cooling fan on the suction portion of the air to air compressor and this is the method for reducing the compressed air drain that has passed through the compressor. For the result, it was verified that when the cooling fan was used, less drain was made where per hour it was 500.9ml of drain and the measured result after installing the cooling fan was that less drain was made. Other additional and various researches are needed including experiments like silica gel passing through the suction portion afterwards.
Numerical modeling was used to evaluate the submerging characteristics of the submersible fish cage system operated by compressed air. The submerging characteristics calculated by numerical analysis as the cage was moved up and down were nearly identical to existing experiment results. Thus, the numerical model proposed in this study could be very useful in analyzing various parameters required for optimizing the design of a submersible fish cage system operated by compressed air.
압축공기에 의한 기포막을 어구로 활용하기 위한 기초 자료를 제공하고져 압축공익의 세기별, 기포 발생 호스 구명의 크기별, 간격별 기포막의 특성과 기포 소음의 음향학적 특성을 실험, 분석한 결과는 다음과 같다. 1. 공기 압축기(290l/min×1.5Kw)와 용량 10kgf/cm2인 공기 탱크로 구성한 기포막 발생 장치로써 발생시킨 기포막은 송기압이 0.2kgf/cm2이상이 되어야 형성되고, 구멍의 크기보다는 구멍 간격이 넓어짐에 따라 더욱 높게 형성됨을 알 수 있었다. 2. 기포 발생시 음압은 구멍이 크고 간격이 조밀하며 기포막에 가까울수록 크며 기포 중심부의 주파수 변동폭은 구명이 적고 간격이 조밀할수록 높았다. 3. 기포막의 빔 각도는 유속에 비례하여 커지며, 유속이 0.1m/sec당 10˚씩 변화되었다. 4. 송기압을 0.5, 1.0, 1.5kgf/cm super (2)로 변화시키면서 기포 발생 호스를 수직방향으로 0˚, 10˚, 20˚로 각각 경사시켜 측정한 결과 기포막 수평길이는 기포막 발생 호스의 경사각도에 따라 그 길이를 최대 45% 연장 할 수 있었다.
The real size submersible fish cage(L×B×D, 3×3×6m)system consists of the compressed air equipment was made in order to control efficiently in case of heavy weather or environmental pollution such as red tide, and then carried out experiment on the submersible functions and safety for that cage at Koje inland sea in 14th June, 1995. The authors could confirm that the submersible cage was very stabilized it's submersible functions and safety when the cage was floating and sinking at sea.