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        검색결과 10

        1.
        2023.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Korea's facility horticultural heating costs account for a high proportion. Therefore, it is the most important factor to consider in greenhouse construction. It is important to assess the heating load of greenhouses. But there is not much data from the weather station. This study determined the heating load for each segmented area using the spatial correction method. The heating degeneration calculated from standard weather data (AHDH and BHDH) and total weather data (CHDH and DHDH) is consistent. However, there was a big difference between AHDH and DHDH. Therefore, the updated heating load data for each region is needed. Each of the four types of set temperatures (8℃, 12℃, 16℃, 20℃) was provided, and the heating temperature setpoint (℃) for each region of 168 cities and counties was presented. As a result of the analysis, the reliability of about 99% was confirmed in most of the regions suggested in this study. By using the calculated heating load for each region, it is possible to predict and utilize energy consumption and management costs.
        4,600원
        2.
        2022.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 양액재배 시 발생되는 폐양액의 적절한 농업 적 이용방안을 강구하기 위해 폐양액의 비료 효과시험, 토양 컬럼 시험, 그리고 작물 재배시험을 수행하였다. 폐양액의 비 료 효과시험은 무기질소를 기준으로 질소비료와 폐양액의 토 양 처리에 따른 열무의 생육특성과 토양의 화학적 특성을 조 사하였다. 폐양액 비료 효과시험과 작물 재배시험을 위한 토양에 대한 폐양액의 처리는 무처리; A, 질소비료 100%; B, 질 소비료 70%+폐양액 30%; C, 질소비료 50%+폐양액 50%; D, 질소비료 30%+폐양액 70%; E 총 5개 처리구로 하였다. 토양컬럼 시험을 위한 토양에 대한 폐양액의 처리는 무처리, 질 소비료 100%, 폐양액 50%+질소비료 50% 3개 처리구로 하 였다. 폐양액의 화학성은 pH 6.0, EC 2.4dS·m-1, 총인(T-P) 28mg·L-1, 암모늄태 질소(NH4-N) 5.0mg·L-1, 질산태 질소 (NO3-N) 301mg·L-1로 나타났다. 토양의 화학성은 pH 5.51, EC 0.31dS·m-1, 유기물 2.08g·kg-1, 질산태 질소 9.64mg·kg-1, 암모늄태 질소 3.20mg·kg-1으로 나타났다. 질소비료 50% 이 하와 폐양액 50% 이상의 비율이 열무 생육에 효과가 높은 것 으로 나타났다. 폐양액을 질소비료와 함께 혼합하여 적용한 C-E 처리구에서 토양의 이화학성은 질소비료만을 적용한 B 처 리구와 통계적으로 유의한 차이가 없었다. 토양컬럼 시험 결과 질소비료 100%와 폐양액 50%+질산비료 50% 처리구의 NO3 와 NH4의 농도는 큰 차이가 없는 것으로 나타났다. 폐양액을 화 학비료의 표준시비량을 기준으로 이용하여 토양에 처리하면 토양 내 질소 성분의 이동과 주변의 영향은 일반 화학비료와 유 사하게 나타나는 것으로 판단된다. 열무 토경재배에 폐양액과 질소비료를 혼합하여 사용하면 폐양액의 재이용으로 환경적 부담도 줄일 수 있고, 질소비료의 사용량도 줄일 수 있어 농가에 경제적 부담 감소와 열무 생산량 증대 효과도 기대할 수 있다.
        4,000원
        3.
        2019.07 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In this study, we conducted the hot box tests to compare the changes in thermal insulation for the four types of multi-layer thermal screens by the used period after collecting them from the greenhouses in the field when they were replaced at the end of their usage. The main materials for these four types of multi-layer thermal screens were matt georgette, non-woven fabrics, polyethylene (PE) foam, chemical cotton, etc. These materials were differently combined for each multi-layer thermal screen. We built specimens (70×70 cm) for each of these multi-layer thermal screens and measured the temperature descending rate, heat transmission coefficient, and thermal resistance for each specimen through the hot box tests. With regard to the material combinations of multi-layer thermal screens, thermal insulation can be increased by applying a multi-layered PE foam. However, it is considered that the multilayered PE foam significantly less contributes to heat-retaining than chemical wool that forms an air-insulating layer inside multi-layer thermal screens. For the suitable heat-retaining performance of multi-layer thermal screens, basically, materials with the function of forming an air-insulating layer such as chemical cotton should be contained in multi-layer thermal screens. The temperature descending rate, heat transmission coefficient, and thermal resistance of multi-layer thermal screens were appropriately measured through the hot box tests designed in this study. However, in this study, we took into consideration only the four kinds of multi-layer thermal screens due to difficulties in collecting used multi-layer thermal screens. This is the results obtained with relatively few examples and it is the limit of this study. In the future, more cases should be investigated and supplemented through related research.
        4,000원
        4.
        2019.07 KCI 등재 구독 인증기관 무료, 개인회원 유료
        With the recent accelerated policy-making and interests in new renewable energy, plans to develop and supply the new renewable energy have been devised across multiple regions in Korea. Solar energy, in particular, is being applied to small-scale power supply in provincial areas, as solar cells are used to convert solar energy into electric energy to produce electric power. Nonetheless, in the case of solar power plants, the need for a large stretch of land and considerable sum of financial support implies that the planning step should take into consideration the most suitable meteorological and geographical factors. In this study, the proxy variables of meteorological and geographical factors associated with solar energy were considered in analyzing the vulnerable areas regarding the photovoltaic power generation facility across the nation. GIS was used in the spatial analysis to develop a map for assessing the optimal location for photovoltaic power generation facility. The final vulnerability map developed in this study did not reveal any areas that exhibit vulnerability level 5 (very high) or 1 (very low). Jeollanam-do showed the largest value of vulnerability level 4 (high), while a large value of vulnerability level 3 (moderate) was shown by several administrative districts including Gwangju metropolitan city, Jeollabuk-do, Chungcheongbuk-do, and Gangwon- do. A value of vulnerability level 2 (low) was shown by the metropolitan cities including Daegu, Ulsan, and Incheon. When the 30 currently operating solar power plants were compared and reviewed, most were found to be in an area of vulnerability level 2 or 3, indicating that the locations were relatively suitable for solar energy. However, the limited data quantity for solar power plants, which is the limitation of this study, prevents the accuracy of the findings to be clearly established. Nevertheless, the significance of this study lies in that an attempt has been made to assess the vulnerability map for photovoltaic power generation facility targeting various regions across the nation, through the use of the GIS-based spatial analysis technique that takes into account the diverse meteorological and geographical factors. Furthermore, by presenting the data obtained for all regions across the nation, the findings of this study are likely to prove useful as the basic data in fields related to the photovoltaic power generation.
        4,300원
        5.
        2017.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        작업 편이성을 높일 수 있는 원통형 종이포트를 일정한 크기로 생산하여 연속적 공급이 가능한 원통형 종이 포트 제조장치를 개발하고, 장치의 성능시험을 수행하였다. 원통형 종이포트 제조장치는 상토공급부, 종이 공급부, 종이 접착부, 종이포트 절단부로 구성되어 종이포트 제조를 위한 상토공급부터 종이포트 절단까지의 공정이 연속적으로 이루어지도록 하였다. 상토 함수율에 따른 적정 상토공급압력시험에서는 상토를 공급하는 진공압이 높을수록 종이포트의 경도와 가밀도가 높게 나타났으며, 수분 함수율이 높아질수록 경도와 가밀도는 증가하다가 낮아지는 경향을 나타내어 포트제조부로 상토를 공급하기 위한 적정 함수율 및 공기압은 50%~60%와 0.5 Mpa인 것으로 판단된다. 제조장치의 성능과 고형접착제에 의한 종이 접착시간을 고려하였을 때, 종이의 원통 성형이 이루어지고 가이드부와의 유착없이 연속적인 공정이 이루어질 수 있는 적정 온도는 150oC~160oC인 것으로 판단된다. 원통형 종이포트 절단칼날의 최적 절단 각도를 구명하기 위한 시험에서는 절단 속도와 작업의 안전성을 고려하여 최소 기울기인 30o에서 깨끗한 단면을 나타내는 일자칼날을 사용하는 것이 적합할 것으로 판단 된다. 원통형 종이포트 제조장치의 성능시험에서 종이포트의 길이는 설정한 길이로 균일하게 제조되었으며, 종이 접착 및 상토공급 등 준비 시간을 제외한 종이포트(직경: 40mm, 길이: 40mm) 제조 작업성능은 3300개/hr로 나타났다.
        4,000원
        6.
        2016.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 이미 보고된 잉여 태양에너지 관련 연구결과와 현재 현장에 설치되어 있는 냉난방용 FCU 현황을 개략적으로 검토한 후, 잉여 태양에너지 회수에 필요한 FCU의 소요대수 결정 방법을 개략적으로 제시하여 앞으로 이 분야의 연구자 및 기술자들에게 기조자료를 제시할 목적으로 연구를 수행하였다. 실험기간 동안 최대, 평균 및 최저 외기온은 각각 28.2oC, 4.4oC 및 -11.5oC정도였다. 온실 밖의 수평면 일사량은 0.8~20.5MJ·m-2로 정도의 범위였으며, 평균 및 총 일사량은 10.8MJ·m-2 및 1,187.5MJ·m-2으로 나타났다. 그리고 주간동안 온실 내의 평균기온과 상대습도는 각각 18.8~45.5 및 53.5~77.5%정도였다. 실험기간 동안 온실로부터 회수한 총 잉여 태양에너지는 6,613.4MJ정도로서 총 난방에너지인 98,600.2MJ 약 6.7%정도를 보충할 수 있을 것으로 나타났다. 또한 사양이 유사한 FCU를 사용하지만, 난방을 위하여 설치되는 FCU의 대수는 제각각 다른 것을 알 수 있었고, 좀 더 효율적이고 경제적인 관점에서 설치높이, 방향 및 설치 간격, 적정 대수에 대한 연구가 이루어져야 할 것으로 판단된다. 잉여 태양에너지 회수용 FCU의 적정 소요대수는 FCU를 통과하는 공기의 질량 및 순환유량을 기준으로 각각 8.4~10.9대 및 6.1~8.0대 정도이었다. 여기에 계산방법이나 FCU의 효율 및 사용 환경 등 위험률을 고려하면, 결국 9대 전후(약 24m3당 1대 정도)를 설치하면 될 것으로 판단되었다.
        4,000원
        7.
        2021.11 KCI 등재 서비스 종료(열람 제한)
        In this study, strawberry cultivation environment in a greenhouse located in Jeonju was monitored and internal environmental parameters were analyzed. Temperature, humidity, RAD, and PPF sensors were installed to monitor environmental conditions in the test greenhouse. Data were collected every 10 minutes during four winter months from sensors placed across the greenhouse to assess its permeability and environmental uniformity. Temperature and humidity inside the greenhouse were relatively uniform with negligible deviations among the center, south, and north; however, it was judged that further analysis of gradients of these parameters f rom the east to t he w est of t he g reenhouse w ould b e needed. Both R AD (Total solar radiation) a nd P PF (Photosynthetic photon flux) had high values on the south and were low on the north and the reduction rate of these parameters was 54% and 61%, respectively, indicating that a significant amount of light could not be transmitted. This implied a significant decrease in the amount of light entering the greenhouse during winter. Therefore, it is concluded that environmental control devices and auxiliary lighting are needed to achieve uniform greenhouse environment for efficient strawberry cultivation.
        8.
        2020.11 KCI 등재 서비스 종료(열람 제한)
        In this study, the amount of harmful fungi and bacteria contained in the drainage and culture medium from the paprika hydroponic facility is identified. In addition, by proposing the necessity of effective purification of discharged drainage, this study attempted to confirm the possibility of drainage reuse. Finally, this study provides basic data on the basis for calculating the need for purification facilities in the future, as well as improvements in horticulture facility for sustainable agriculture. As a result of the analysis, a total of 12 types of fungi were detected in paprika medium and 10 types of fungi were detected in the drainage, and their densities were 130 and 68, respectively. Among the fungi detected in the media and drainage of the paprika hydroponic facility, the fungi with the highest detection frequency are Fusarium, Phytophthora, and Pythium. In the case of bacteria, a total of 2 types of bacteria were detected in the paprika facilities, and the density was 28 and 23, respectively. Therefore, in order to reuse the drainage and settle the circulating hydroponic cultivation system, a water treatment process capable of appropriate treatment is required.
        9.
        2020.04 KCI 등재 서비스 종료(열람 제한)
        The purpose of this study was to analyze the soil environment of urban neighborhood parks and to use them as basic data for evaluating the ecological functions of urban parks such as groundwater regeneration, flood control, microclimate regulation, adsorption and purification. The landscape design criteria were generally evaluated as advanced, and further monitoring and studies are needed to evaluate the various ecological functions. It is also necessary to improve the phosphoric acid and nitrogen contents, which tended to be low. In addition, continuous monitoring is needed to assess the proper soil environment according to the biological species, and to evaluate the ecological functions. The results of this study can be used to evaluate the groundwater recharge of urban parks. In particular, when the land of the neighboring park is used for various purposes, the level of access of the user may be increased. Therefore, factors that may adversely affect the user's health, such as heavy metals and organic matters, should be selected and selected as management criteria. In addition, follow-up studies considering fertilization standards suitable for trees and growth of introduced vegetation, etc. are needed urgently to improve the soil environment.
        10.
        2019.12 KCI 등재 서비스 종료(열람 제한)
        Korea's protected horticulture is rapidly increasing in scale due to various advantages such as year-round harvesting, labor savings through automation and shortened culture period, and greater income generation. This study was conducted to investigate the impact of protected horticulture on water quality. The results of this study are expected to provide basic data contributing to improvements towards sustainable agriculture and eco-friendly design of protected horticulture complex. The average T-N and T-P loads from vinyl greenhouses were 286.55± 143.98 mg/L and 59.14±13.77 mg/L, respectively and those from glass greenhouses 380.68 ± 150.41 mg/L and 61.85±20.72 mg/L. The annual discharge of wastewater derived from the monthly discharge from the horticulture greenhouses were estimated at 2597 ton/ha, with the annual phosphorus load amounting to 155.3 kg/ha. The average T-N and T-P loads in the tested greenhouse effluents were in excess of 8.3- and 13.5-fold the standards for the Korean wastewater plant effluent. The waste nutrient solution discharged from a protected horticulture complex can cause water contamination. Therefore, there is a need to conduct follow-up research using a water purification system or a trench method to develop a eco-friendly protected horticulture complex for sustainable agriculture.