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        검색결과 110

        91.
        2002.12 KCI 등재 서비스 종료(열람 제한)
        We calculated dose rate using radiative transfer equations to consider radiative processes distinctly. The dose rate at Pohang(36°02'N, 129°23'E) was calculated using measured ozone and meteorological data and two-stream approximations(quadrature, Eddington, delta Eddington, PIFM(practical improved flux method), discrete ordinate, delta discrete ordinate) are used in solving equation. The purpose of this study is to determine the most compatible radiative transfer approximation for simulating the radiative and photochemical processes of atmosphere through comparision between calculated and measured values. Dose rate of the biologically effective irradiance in the region 0.28-0.32μm showed the highest value when quadrature and Eddington was used and lower value on condition that delta scaling was applied. Correlation coefficient between dose rate at surface using radiation transfer equation and measured UV-B at Pohang was 0.78, 0.79 and 0.81 when detla Eddington, PIFM and delta discrete ordinate were used. Also, in case of above approximations were used, MBE(Mean Bias Error) was within -0.3MED/30min and RMBE(Relative Mean Bias Error) was below 10% between 1200 LST and 1400 LST. Approximations which are compatible in estimating radiative process are detla Eddington, PIFM and delta discrete ordinate. Especially, in case that radiative process is considered more detail, delta discrete ordinate increased the number of stream is proper.
        92.
        2002.06 KCI 등재 서비스 종료(열람 제한)
        땅콩 수확시기 및 첨가제에 따른 땅콩경엽의 수량 및 사일리지용 사료가치를 비교 조사하였던 바 그 결과를 요약하면 다음과 같다. 1. 수확시기별 생육은 개화후 90일 수확시 경엽의 병해(갈색무늬병 및 흑색무늬병) 발생 정도가 낮고, 성숙협비율은 89%, 100립중은 81g으로 높았다. 2. 수확시기에 따른 경엽 및 종실 생산성은 개화후 90일에 경엽은 52 t/ha, 종실중은 3.6 t/ha이었다. 3. 경엽과 종실수량간에는 고도의 정상관(r2 =0.62** )이 있었다. 4. 땅콩경엽의 사일리지 사료가치는 땅콩경엽+볏짚+젖산균 조제시 ADF 42.2%, NDF 49.6%, CP 10.5%, TDN 55.6%이었다. 5. 땅콩경엽 사일리지의 유기산함량은 땅콩경엽+볏짚 및 땅콩경엽+보릿짚에다 젖산균 첨가시 각각 산도 5.04 및 5.10, 낙산함량 3.12% 및 4.64%, 젖산함량은 7.34% 및 2.07%이었다.
        95.
        1999.12 KCI 등재 서비스 종료(열람 제한)
        After analyzing the correlation between air pollution and visibility, TSP and NO2 is responsible for poor visibility in Pusan. After analyzing the correlation between meteorological factors and visibility, general pattern of humidity has clear negative correlation. The variation of wind speed has a positive correlation. In order to investigate the cause of poor visibility in Pusan area, the Andersen sampler and PM-2.5 are used to collect and analyze aerosol. This study was carried out to monitor the visibility using Forward scattering meter and to find out the characteristics and the cause of good visibility case and poor visibility case by measuring and analyzing a variety of parameters, such as particle size distributions, chemical compositions, and meteorological conditions in Pusan. According to the analysis of intensive sampling, NO3-, NH4+ ion concentration increased together with the mass concentration around 0.5∼2.5㎛ approximately during the case of poor visibility. NH4NO3, NH4Cl, and NaCl were thought to be the major components of fine particles.
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