• Title/Summary/Keyword: 조절ㆍ지배의 순환

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A Study on the Suggestion of Use Method in the Collaboration of the Interior Materials by the five Elements - Focused on the Instance which Is Applied to the Residential Space In America - (오행론(五行論)에 의한 실내재료 조합의 사용방법 제시에 관한 연구 - 미국의 주거공간에 적용된 사례를 중심으로 -)

  • 최은희
    • Korean Institute of Interior Design Journal
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    • no.36
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    • pp.111-120
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    • 2003
  • Asian design has mastered the use of natural elements in the home to create a sense of harmony and balance. The viewpoint of the West recognizes the nature to be conquered while the viewpoint of the Orient recognizes it to be unison with a human being. Additionally, the viewpoint of the Orient reflects a harmonious relationship between the human being and the nature, and it does not see assuredly from an opposed viewpoint. The Five elements, one of oriental notion, are based on an affinity between the human being and the nature. The objectives of this study are to understand the Five elements composed of wood, fire, earth, metal, water and to suggest a substantial method for treating a harmonious and balanced environment in the collaboration of the interior materials by the Five elements. When the interior materials incorporate all the relationships of the Five elements, a space will accomplish harmony with the nature and the universe, thus it will be in tune with surrounding.

A Study on the Marine Biological and Chemical Environments in Yeosu Expo Site, Korea (여수 엑스포 해역의 생물.화학적 해양환경 특성)

  • Noh, Il-Hyeon;Oh, Seok-Jin;Park, Jong-Sick;An, Yeong-Kyu;Yoon, Yang-Ho
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.13 no.1
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    • pp.1-11
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    • 2010
  • In order to understand the biological environmental characteristics with temporal variations of the physico-chemical factors in 2012 Yeosu Expo site of Korea, we investigated at one station, once per week, from April 2006 to December 2007. The surface water temperature ranged from 6.8 to $27.8^{\circ}C$ and the bottom water temperature ranged from 6.3 to 25.9 $25.9^{\circ}C$. The salinity varied from 12.8 to 33.0 psu in the surface water and from 25.2 to 33.6 psu in the bottom water. A strong halocline was observed between the surface and bottom layers in the summer when a rapid decrease of salinity coincided with heavy rainfall. The DIN concentration ranged from 1.36 to $82.7{\mu}M$ in the surface water and from 0.82 to $25.2{\mu}M$ in the bottom water. Phosphate concentration varied from 0.06 to $2.13{\mu}M$ in the surface water and from 0.07 to $1.38{\mu}M$ in the bottom water. Silicate was $1.68-52.0{\mu}M$ in the surface water and $1.37-30.7{\mu}M$ in the bottom water. The nutrient concentrations were generally high during heavy rainfalls and low water temperature periods, and considerably decreased in spring and autumn. The N/P ratio ranged from 4.43 to 325 in the surface water and from 3.8 to 321 in the bottom water. It increased rapidly during the heavy rainfall season and remained at a value of approximately 16 in other periods. The chlorophyll a concentration ranged from 0.46 to $65.0{\mu}g$ $L^{-1}$ in the surface water and from 0.71 to $15.0{\mu}g$ $L^{-1}$ in the bottom water. $Chl-{\alpha}$ concentration remained low in periods of low water temperature, however rapidly increased in periods of high water temperature. From the results of principal component analysis (PCA) and multiple regression analysis (MRA), we conclude that temporal variations of physico-chemical and biological factors were greatly affected by the influx of fresh water, and that nutrients were well controlled by their uptake and assimilation by phytoplankton. Also, during the low water temperature periods, environmental structure in this study site was affected by recycled nutrients through nutrient cycling and mineralization.