Most of the odorous substances generated in public environment facilities are treated using a local exhaust ventilation system. This study assessed the leakage of odorous substances by measuring design criteria, collected air volume, and complex odor in the unit process of sewage treatment facilities. The closer the guideline/design operation airflow ratio of each odor source is to 1.0, the more identical the guideline:design:operation airflow. The average air volume ratio of the facilities under the study was 0.95~0.99 for the MBR process and 0.29~0.68 for the BNR process. As a result of comparing the types of wastewater treatment processes, the leakage of odorous substances was about 9.7 times higher in the BNR process (192,732 m3/min) than in the MBR process (19,838 m3/ min). In this study, it was found that the following two means are important for the proper collection and prevention of odorous substances. The first is the estimation of collection air volume with consideration to the characteristics of the odor source (temperature, odor generation condition, etc.). The second is the design and operation of the local exhaust ventilation system.
Recently, the air pollution have bad effects on the indoor environment. Many buildings around the world use natural ventilation. to remove the air pallutant. But, nowadays, ventilation requirements can be demanding, as modern systems require greatly improved reliability and control. The fan and the duct are used to remove air mechanically from the space. Until now, apartment houses have been relying on the duct supply system ventilation rather than other system ventilations. Therefore, the establishment of a prediction method based on optimal ventilation energy consumption using duct supply system and ductless is the ultimate goal of this study. As a result, this study found that the characteristics of duct and ductless supply system ventilation are dependent to each exhaust system. Consequently, the local supply indices of the duct supply system is definitely superior about 24.6% ~ 26.4 % than those of ductless supply system. However, the duct supply system has greater pressure drop in ventilation area than ductless, and duct system needs a lot of ventilation energy. In this study, The ductless supply system has advantage over the duct system about 14.8 % as duct exhaust system and 20.0% as ductless exhaust system in terms of modified local supply indices.
We performed numerical analyses on the optimal discharge angle of a 4-way cassette air conditioner, which is mounted on the ceiling of the classroom, by using thermal comfort and ventilation indices. We analyzed the effective draft temperature, the local mean age and the local mean residual life time with respect to the variation of the air discharge angle of the air conditioner in all occupied zone. Air diffusion performance index, local supply effectiveness and local exhaust effectiveness were used to investigate the optimal value of air discharge angle. From the results, we found out that the optimal discharge angle of the air conditioner is about 40 degrees in the present model.
최근 도시기후를 고려한 도시계획이 많은 나라에서 실용화되고 있다. 도시기후의 고려는 주로 도시의 바람 길 조성이라는 개념으로 구체화되고 있다. 도시의 바람 길 조성은 주로 하계에 도시지역의 열적 쾌적성을 개선하는 것을 목표로 한다. 아울러, 과학적 조사에 근거하여 도시의 단지계획을 합리적으로 함으로써 청정한 냉기류의 도심유입을 원활히 하여 도심의 대기오염을 저감하고자 하는 것도 목적으로 한다. 이 연구에서는, 수치실험을 통하여 전형적인 난후기일을 대상으로 대구지역의 국지순환풍이 지나는 바람의 길을 조사하였다. 그리고 이 바람에 의한 대기오염의 수송도 조사하였다. 수치실험에 사용한 모형은 RAMS(지역규모 대기모델)이다. 수치실험의 관심지역은 대구광역시 일대(약900km2)이다. 수평규모는 약 30km이다. 수치실험은 일반풍이 약하고 쾌청한 일기조건을 갖는 늦봄의 기상조건 하에서 수행되었다. 수치실험의 결과 다음과 같은 3가지 결과를 얻었다: (1) 대구의 대표적 산지인 팔공산과 앞산에서 야간에 산정에서 복사냉각으로 생성된 국지풍이 지나는 길을 발견할 수 있었다. 그 바람은 대구의 동쪽 지역에서 중력류의 형태로 계곡을 따라서 흘러내렸다. (2) 평지에서는, 그 바람이 대구의 중심지를 지나 서쪽으로 흘러갔다. (3) 그 결과로, 대기오염물질은 야간에 국지풍에 의해 서쪽지역으로 수송되어졌다.
In urban area, thermal pollution associated with heat island phenomena is generally regarded to make urban life uncomfortable. To overcome this urban thermal pollution problem, urban planning with consideration of urban climate, represented by the concept of urban ventilation lane, is widely practiced in many countries.
In this study, the prevailing wind ventilation lane of a local winds in Daegu during the warm climate season was investigated by using surface wind data and RAMS(Reasonal Atmospheric Model System) simulation. The domain of interest is the vicinity of Daegu metropolitan city(about 900) and its horizontal scale is about 30km. The simulations were conducted under the synoptic condition of late spring with the weak gradient wind and mostly clear sky. From the numerical simulations, the following two major conclusions were obtained: (1)The major wind passages of the local circulation wind generated by radiative cooling over the mountains(Mt. Palgong and Mt. Ap) are found. The winds blow down along the valley axis over the eastern part of the Daegu area as a gravity flow during nighttime. (2)After that time, the winds blow toward the western part of Daegu through the city center. As the result, the higher temperature region appears over the western part of Daegu metropolitan area.
A study on ventilation design using the spreadsheet model is carried out to propose means of available design. A sample of complex ventilation system in the non-standard condition is used to illustrate this spreadsheet model.
In developing the spreadsheet model, this study has attempted to it general by using computional equations and design parameters that can be readily applied to any spreadsheet software. Also, most design data is contained in the spreadsheet template. This template provides the same design information as the ACGIH worksheet, and operates quickly and efficiently, and is flexible enough to use under different conditions.
spreadsheet model allows the ventilation engineer to design quickly and accurately the ventilation system, without spending too much effort in the design process.
By storing on computer and diskette, the design data computed finally can be used as a permanent record of specific ventilation system, and because of flexibility to be able to design over and over again while making only slight changes to the input data, the spreadsheet model is used availably to accomplish the design optimazation by redesign and troubleshooting by review from field measurements.
Also, the spreadsheet model is available for designing ventilation system under different condition or evaluating existing system or design drawing, because changes in the layout or formulae can be readily made to fit the needs of the designer.