• 제목/요약/키워드: Grave Management System

검색결과 12건 처리시간 0.017초

배수개선공법개발에 관한 연구(I) -각종 지하배수용 암거재료의 배수성능- (Drainage Performance of Various Subsurface Drain Materials-)

  • 김철회;이근후;유시조;서원명
    • 한국농공학회지
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    • 제21권3호
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    • pp.104-120
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    • 1979
  • I. Title of the Study Studies on the Development of Improved Subsurface Drainage Methods. -Drainage Performance of Various Subsurface Drain Materials- II. Object of the Study Studies were carried out to select the drain material having the highest performance of drainage; And to develop the water budget model which is necessary for the planning of the drainage project and the establishment of water management standards in the water-logged paddy field. III. Content and Scope of the Study 1. The experiment was carried out in the laboratory by using a sand tank model. The drainage performance of various drain materials was compared evaluated. 2. A water budget model was established. Various parameters necessary for the model were investigated by analyzing existing data and measured data from the experimental field. The adaptability of the model was evaluated by comparing the estimated values to the field data. IV. Results and Recommendations 1. A corrugated tube enveloped with gravel or mat showed the highest drainage performance among the eight materials submmitted for the experiment. 2. The drainage performance of the long cement tile(50 cm long) was higher than that of the short cement tile(25 cm long). 3. Rice bran was superior to gravel in its' drain performance. 4. No difference was shown between a grave envelope and a P.V.C. wool mat in their performance of drainage. Continues investigation is needed to clarify the envelope performance. 5. All the results described above were obtained from the laboratory tests. A field test is recommended to confirm the results obtained. 6. As a water balance model of a given soil profile, the soil moisture depletion D, could be represented as follows; $$D=\Sigma\limit_{t=1}^{n}(Et-R_{\ell}-I+W_d)..........(17)$$ 7. Among the various empirical formulae for potential evapotranspiration, Penman's formular was best fit to the data observed with the evaporation pans in Jinju area. High degree of positive correlation between Penman;s predicted data and observed data was confirmed. The regression equation was Y=1.4X-22.86, where Y represents evaporation rate from small pan, in mm/100 days, and X represents potential evapotranspiration rate estimated by Penman's formular. The coefficient of correlation was r=0.94.** 8. To estimate evapotranspiration in the field, the consumptive use coefficient, Kc, was introduced. Kc was defined by the function of the characteristics of the crop soil as follows; $Kc=Kco{\cdot}Ka+Ks..........(20)$ where, Kco, Ka ans Ks represents the crop coefficient, the soil moisture coefficient, and the correction coefficient, respectively. The value of Kco and Ka was obtained from the Fig.16 and the Fig.17, respectively. And, if $Kco{\cdot}Ka{\geq}1.0,$ then Ks=0, otherwise, Ks value was estimated by using the relation; $Ks=1-Kco{\cdot}Ka$. 9. Into type formular, $r_t=\frac{R_{24}}{24}(\frac{b}{\sqrt{t}+a})$, was the best fit one to estimate the probable rainfall intensity when daily rainfall and rainfall durations are given as input data, The coefficient a and b are shown on the Table 16. 10. Japanese type formular, $I_t=\frac{b}{\sqrt{t}+a}$, was the best fit one to estimate the probable rainfall intensity when the rainfall duration only was given. The coefficient a and b are shown on the Table 17. 11. Effective rainfall, Re, was estimated by using following relationships; Re=D, if $R-D\geq}0$, otherwise, Re=R. 12. The difference of rainfall amount from soil moisture depletion was considered as the amount of drainage required. In this case, when Wd=O, Equation 24 was used, otherwise two to three days of lag time was considered and correction was made by use of storage coefficient. 13. To evaluate the model, measured data and estimated data was compared, and relative error was computed. 5.5 percent The relative error was 5.5 percent. 14. By considering the water budget in Jinju area, it was shown that the evaporation amount was greater than the rainfall during period of October to March in next year. This was the behind reasonning that the improvement of surface drainage system is needed in Jinju area.

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도심형 메모리얼파크의 사회적 담론 및 인식분석을 통한 4·16 세월호 참사 추모공원 방향성 제안 연구 (A Study on the Directions of Sewol Ferry Tragedy Memorial Park Based on the Analysis on Social Discourse and Recognition Evaluation)

  • 김도훈
    • 한국조경학회지
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    • 제48권6호
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    • pp.25-38
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    • 2020
  • 세월호 참사로 희생된 250명의 아이들을 위한 추모공원 조성방향을 제안하는 것이 본 연구의 목적이다. 이를 위해 먼저 지역사회 차원에서 추모공원에 대해 논의했던 사항을 이해하고, 피해당사자인 유가족들과 지역주민, 전문가들의 의견수렴을 통해 추모공원 방안을 모색하고자 했다. 유가족들과 시민들이 함께 국제공모전 시민지침서를 만들고자 진행한 참여형 워크숍, 신진디자인의 아이디어 수렴을 위한 공모전, 인문사회·문화관광·도시재생 전문가들과 함께한 특강, 홈페이지에 게시된 반대청원 등 다양한 활동들이 전개되었다. 이들 과정을 체계적으로 분석하기 위해서 사회적 담론분석 연구방법을 활용하였고, 분석된 담론을 평가하기 위하여 4가지 범주로 유형화하고 기능 및 역할을 15가지로 세분화 했다. 이렇게 도출된 담론들의 우선순위 및 적정성 평가를 위하여 활동가, 공무원, 전문가 30명을 대상으로 계층화 분석방법(AHP)을 수행했고, 설문조사를 시행하여 세월호 유가족 포함 지역주민 467명이 생각하는 추모공원에 대한 인식을 분석했다. 그리고 분석된 연구결과를 바탕으로 세 가지 추모공원 방향을 제안했다. 첫 번째는 일상 속에서 기억하는 추모공원이다. 기존의 추모공원처럼 경건함과 엄숙함으로 아픔과 슬픔을 나누는 공간의 모습에서 탈피하여 문화적 콘텐츠가 다양한 공원이 되어야 한다는 것이다. 그리고 이러한 공원생활 속에서 희생된 아이들을 자연스럽게 만나게 되고, 기억하는 것이 나아가야 하는 방향이다. 두 번째는 지역사회의 변화와 혁신을 유도하는 촉매제와 같은 공원이다. 세월호 추모공원이 존재함에 따라 지역사회에 직·간접적인 영향으로 변화를 줄 수 있는 공간이 되어야 한다. 중장기적인 관점에서 작은 공간 하나 만드는 것을 넘어 지역사회의 변화와 혁신을 만들어가는 계기가 되어야 한다. 세 번째는 사회적 공유과정을 거쳐서 모든 이들이 함께 하는 공원이 되어야 한다는 지점이다. 도심형 메모리얼 파크가 혐오시설이라는 인식 때문에 아직도 반대하는 이들이 일부 있는데, 이들을 포용하여 함께 할 수 있는 방법을 찾는 것이 중요하다. 본 연구를 통해서 도출된 연구내용이 2021년 예정된 국제설계 공모지침서에 반영되고, 중장기적 관점에서 지속적 공원운영 관리 가이드라인 역할을 하도록 하는 것이 목적이다.