• 제목/요약/키워드: ventilation house

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공동주택 하이브리드(Hybrid) 환기시스템의 성능예측 (A Prediction of Hybrid Ventilation System Performance in Apartment House)

  • 황지현;오창용;최홍원;김무현
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2005년도 동계학술발표대회 논문집
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    • pp.33-38
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    • 2005
  • A hybrid ventilation system was introduced to predict the ventilation performance of the apartments. This ventilation system was composed of the natural supply-air inlet and the forced exhaust-air outlet. Analysis was conducted by CFD technique and was performed on three ventilating flow rates; 30, 60, 120 $m^3/h$. As the results, residents feel comfortable thermally and in air flow conditions for 60 $m^3/h$. But the case of 30 $m^3/h$ shows 1100ppm of $CO_2$ concentration due to the deficient of air flow rate. In the case of 120 $m^3/h$, however, residents feel uncomfortable thermally and in air currents. In this study the energy saving for space heating is also an important factor. A detailed prediction for more complicated whole apartment space will be investigated in the future.

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국내 표준계사의 냉난방부하 특성 연구 (A Study on the Characteristics of Heating and Cooling Loads of Standard Chicken Houses in South Korea)

  • 권영철
    • 대한건축학회논문집:구조계
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    • 제35권10호
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    • pp.235-243
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    • 2019
  • In South Korea, millions of poultry have died due to repeated heat waves every year. The purpose of this study is to analyze the characteristics of heating and cooling loads of chicken houses in Korea and to present an effective insulation and ventilation measures to minimize the damage of poultry due to summer heat wave and to save energy in chicken houses in winter. The heating and cooling loads of standard chicken house were calculated. As a result of the calculation of maximum heating load based on the minimum ventilation rate in winter, the outdoor air temperature requiring heating was $6{\sim}7^{\circ}C$ to keep the indoor air temperature of chicken houses as $24^{\circ}C$. The peak cooling load of chicken houses was mostly taken by the heat generated by chickens and the heat gain due to ventilation. The heat gain through building envelopes was as small as neglectable. Most of chicken houses is usually cooled by gigantic forced ventilation in summer in Korea. When the chicken houses are cooled by electric cooling machine such as cooler or air conditioner, it is more effective to keep minimum ventilation rate to reduce the maximum cooling load. To lower the temperature of supplying water to cooling pad, it is recommended to use the underground water below 10 meters from the ground if there is abundant underground water.

국내 2층 돈사와 톱밥돈사의 구조 및 분뇨처리 실태조사 (Field Survey on the Structure and Manure Treatment of Two-Storey and Sawdust Pig Houses in Korea)

  • 정종원;유용희;송준익;김태일;전병수;양창범
    • 한국축산시설환경학회지
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    • 제11권3로
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    • pp.169-176
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    • 2005
  • 본 연구에서는 국내 2층 돈사 및 톱밥돈사를 조사하였으며 현재 양돈에 적용되고 있는 분뇨처리 형태, 사육형태, 환기방식 및 돈사건축비의 실태를 현장조사를 통하여 분석, 평가함으로써 이를 바탕으로 우리나라 기후와 조건에 적합한 분뇨처리와 돼지사육이 가능한 고상식 돈사의 건축모델에 적용 가능성을 고려할 목적으로 무창 2층 돈사와 개방식 톱밥돈사 농장을 방문 조사한 결과를 요약하면 다음과 같다. 1. 2층 돈사의 분뇨에 수분조절재로 톱밥, 수피, 왕겨를 사용하였다. 톱밥돈사는 톱밥만을 사용하였으며, 수분조절재의 사용깊이는 대체로 $30\~60cm$로, 이용기간은 평균 $3\~6$개월 정도 이용하였다. 2. 2층 돈사에서 돼지의 사육형태는 1층에서는 주로 임신돈 및 분만돈을 사육하였고 2층은 자돈과 육성돈을 사육하고 있었다. 3. 환기시스템은 기본적으로 2층 무창돈사는 기계적 환기(mechanical ventilation)시스템을 설치하였고 톱밥돈사는 자연환기(natural ventilation)시스템으로 조합되어 있었다. 4. 2층 돈사의 단열재는 블록, 칼라강판 및 샌드위치 판넬 등을 사용하였고 단열재두께는 지붕 $75\~100mm$, 벽이 $50\~75mm$였으며 천장높이는 최소 2.0, 최대 3.0m로 조사되었다. 5. 평당 건축비는 무창 이층돈사는$70\~1,400$천원 이내였으며, 개방식 톱밥돈사는 자체 건축한 곳을 제외하고는 $300\~400$천원 내외로 건축비가 소요되었다

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강제환기식 돈사의 환기 효율성 분석을 위한 CFD 모델 개발 (Development of a CFD Model to Study Ventilation Efficiency of Mechanically Ventilated Pig House)

  • 서일환;이인복;홍세운;황현섭;;유재인;권경석;하태환;김현태
    • 한국농공학회논문집
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    • 제50권1호
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    • pp.25-37
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    • 2008
  • When livestock facilities in Korea have been changed larger and denser, rearing conditions have been getting worse and the productivity of animal production have been decreased. Especially in the cold season, the minimized ventilation has generally been operated to save energy cost in Korea resulting in very poor environmental condition and high mortality. While the stability, suitability, and uniformity of the rearing condition are the most important for high productivity, the ventilation configuration is the most important to improve the rearing condition seasonally. But, it is so difficult to analyze the internal air flow and the environmental factors by conducting only field experiment because the weather condition is very unpredictable and unstable as well as the structural specification can not be easily changed by the researchers considering cost and labor. Accordingly, an aerodynamic computer simulation was adopted to this study to overcome the weakness of conducting field experiment and study the aerodynamic itself. It has been supposed that the airflow is the main mechanism of heat, mass, and momentum transfers. To make the simulation model accurately and actually, simplified pig models were also developed. The accuracy of the CFD simulation model was enhanced by 4.4 % of errors compared with the data collected from field experiments. In this paper, using the verified CFD model, the CFD computed internal rearing condition of the mechanically ventilated pig house were analyzed quantitatively as well as qualitatively. Later, this developed model will be computed time-dependently to effectively analyze the seasonal ventilation efficiency more practically and extensively with tracer gas decay theory.

제로카본 그린홈의 여름철 운영조건에 따른 실내 열환경 평가 (An Evaluation of Indoor Thermal Environment for Zero-Carbon Green Home according to the Operation Conditions in Summer)

  • 유정연;조동우;김기한
    • 한국태양에너지학회 논문집
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    • 제40권2호
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    • pp.25-36
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    • 2020
  • The Korean government has a plan to mandate zero-energy buildings in 2020 for public and 2025 for private buildings. In order to design a zero-energy building, insulation and airtightness, which are the most basic elements of passive house technology, are required, and the government has been accomplished this through step-by-step strengthening of related standards. In passive house with high thermal insulation and airtightness performance, the heat introduced into the building through solar radiation can be stored for a long time to keep the inside warm during winter. On the other hand, during summer, heat introduced into the building cannot be easily released to outside, so it is necessary to actively block solar radiation and high temperature outdoor air to prevent an increase of indoor temperature. Therefore, this study aims to derive an appropriate operation condition of passive house to maintain the indoor temperature at an suitable level according to the ventilation methods and solar shading conditions. As a result, under the conditions that the outdoor temperature was 28℃ or less, the ventilation using a heat recovery ventilation system at daytime and natural ventilation at nighttime were selected for the most appropriate operation method. In addition, in the case of solar shading, it was found that blocking solar radiation at daytime using the blind and open the blind at nighttime to ensure natural ventilation were selected for the most appropriate solar shading condition.

공동주택단지배치의 간극비와 바람장의 상관관계에 관한 연구 (A Study on Correlations of the Gap Ratio of Apartment Houses Arrangement and the Wind Field)

  • 문출성;오세규;조성우
    • KIEAE Journal
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    • 제11권2호
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    • pp.75-82
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    • 2011
  • In Korea, the ratio of population in urban areas used to be only 50.1% in 1970, but with the value risen to 90.8% in 2009, urbanization is going on rapidly. Urbanization, which occurs by the rampantly planted buildings, has become major source of raising building density, changing wind direction and reducing wind amount, and such reductions are affecting even inside the building. In each year, among the total energy consumption in Korea, residential portion takes up significant ratio, and specifically the ratio of apartment house is shown to be highest. In order to solve such problem, many studies are being conducted for the improvement of natural ventilation performance. The natural ventilation performance of apartment house are significantly determined by the characteristics of external and internal structure, but in macroscopic perspective, the performance is established fundamentally by the layout characteristics of the main building of the apartment house in preparation for wind conditions. So far researches on raising the thermal comfort through elevation of ventilation performance have been conducted actively, but many of them propose only theoretical concepts deduced through wind path analysis, and do not include any indicator to measure ventilation performance simply only with area data from layout planning stage. Therefore, in this study, gap ratio a wind field measuring indicator was developed, and after the ventilation characteristics by layout types and main building uniformity were identified, the scope of gap ratio efficient for ventilation and that of uniformity were clarified, followed by verification through simulation.

환기조절 및 약제적기살포에 의한 비닐하우스재배 오이에 발생하는 노균병 방제 (Control of downey mildew occurred on cucumber cultivated under plastic film house condition by optimal application of chemical and installation of ventilation fan)

  • 김용기;류재당;류재기;이상엽;심홍식
    • 농약과학회지
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    • 제7권3호
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    • pp.223-227
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    • 2003
  • 경기도 수원의 농업과학기술원 시험포장내 비닐하우스에서 오이에 발생하는 병을 조사한 결과 잘록병, 노균병, 흰가루병, 덩굴쪼김병이 발생하였으며, 그 중 오이 노균병이 가장 심하게 발생하였고 피해도 매우 큰 것으로 나타났다. 오이 노균병을 효과적으로 방제하기 위하여 환기팬 설치 효과 및 방제적기 구명을 위한 연구를 수행하였다. 오이노균병 방제를 위하여 비닐하우스의 전면과 후면에 2개의 환기팬을 설치한 다음 하우스 내의 공중습도와 노균병 발생을 조사한 결과, 환기팬무설치하우스에 비해 공중습도가 6.4% 가량 낮아졌으며 노균병 발생을 현저히 억제하는 것으로 나타났다. 환기팬을 설치한 실험구는 환기팬을 설치하지 않고 약제를 3회 처리한 것과 대등한 효과를 보였다. 한편 노균병의 방제적기를 구명하기 위하여 발병 3 일전, 발병직후 및 발병 2일 후부터 각각 3회 디메쏘모르프 염기성염화동수화제를 7일 간격으로 3회 처리한 결과, 발병 3일전부터 예방위주로 약제를 처리하였을 때에는 72.9%의 방제효과를 나타냈으나, 발병직후부터 처리하였을 때에는 61.8%, 발병 2일 후부터 처리하였을 때에는 23.7%의 방제효과를 보여 노균병을 효과적으로 방제하기 위하여는 예방위주의 방제가 필요한 것으로 판단되었다.

자연급기구내 플리머필터 설치 시 외기 침기량 분석에 관한 연구 (A study on performance of outdoor air flow rate through viovent for hybrid ventilation equipment)

  • 이성환;최종악
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2009년도 하계학술발표대회 논문집
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    • pp.1337-1342
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    • 2009
  • This test was progressed in the test house of KICT as sectional research of Center for Sustainable Housing. It included a ventilation rate of hybrid ventilation equipment, temperature, and gas test using the SF-6. The purpose of this test is to demonstrate the performance of viovent by estimating an outdoor air flow rate through viovent which the flimmer filter is installed and decide the leakage after operating the constant airflow fan within a house. First, the outdoor airflow rate through viovent measured $130\;m^3/h$ more than a legal required ventilation rate, $104\;m^3/h$. And then it sufficiently satisfy a legal standard, 0.7 air change/h. Secondly, the result of this test exposes that the leakage in the residence is about $20{\sim}25%$. Especially, the outdoor air flowing through the gate occupies 50% of the total leakage.

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Better Housing for Effective Pig Production - Review -

  • Choi, H.L.;Song, J.I.;An, H.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권8호
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    • pp.1310-1315
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    • 1999
  • Air quality in confinement pig houses is important to production and health. Mechanical ventilation and confinement is known to be the most practical tool for maintaining adequate air quality in pig houses through extensive researches since Millier (1950) invented the 'slotted inlet' ventilation system. A variety of mechanical ventilation systems have been applied to confined nursery pig houses in Korea without scientific verification of their ventilation effectiveness. Ventilation systems with three feasible combinations (NA, NB, and NC) of inlets and outlets in a confined nursery pig house were tested to evaluate their ventilation efficiency, of which the one with the performance was supposed to be taken as a standard ventilation system for nursery pig houses in Korea. Field data of air velocity and temperature fields, and ammonia concentration with three ventilation systems were taken and compared to determine the best system. The air velocity and temperature fields predicted by the PHOENICS computer program were also validated against the available experimental data to investigate the feasibility of computer simulation of air and temperature distribution with an acceptable accuracy in a confined house. NC system with duct-induced in-coming air, performed best among the three different ventilation systems, which created higher velocity field and evener distribution ($2.5m/s{\pm}0.3m/s$) over the space with a Reynolds number of $10^4$. The experimental data obtained also fitted well with the simulated values using the modified PHOENICS, which suggested a viable tool for the prediction of air and temperature field with given calculation geometries.