• 제목/요약/키워드: LIDMOD

검색결과 9건 처리시간 0.021초

저영향개발기법 설계 및 평가를 위한 LIDMOD3 개발 (LIDMOD3 Development for Design and Evaluation of Low Impact Development)

  • 전지홍;서성철
    • 한국물환경학회지
    • /
    • 제34권4호
    • /
    • pp.382-390
    • /
    • 2018
  • In this study, the LIDMOD3 was developed to design and evaluate low impact development (LIDMOD). In the same fashion, the LIDMOD3 employs a curve number (NRCS-CN) method to estimate the surface runoff, infiltration and event mean concentration as applicable to pollutant loads which are based on a daily time step. In these terms, the LIDMOD3 can consider a hydrologic soil group for each land use type LID-BMP, and the applied removal efficiency of the surface runoff and pollutant loads by virtue of the stored capacity, which was calculated by analyzing the recorded water balance. As a result of Model development, the LIDMOD3 is based on an Excel spread sheet and consists of 8 sheets of information data, including: General information, Annual precipitation, Land use, Drainage area, LID-BMPs, Cals-cap, Parameters, and the Results. In addition, the LIDMOD3 can estimate the annual hydrology and annual pollutant loads including surface runoff and infiltration, the LID efficiency of the estimated surface runoff for a design rainfall event, and an analysis of the peak flow and time to peak using a unit hydrolograph for pre-development, post-development without LID, and as calculated with LID. As a result of the model application as applied to an apartment, the LIDMOD3 can estimate LID-BMPs considering a well spatical distributed hydroloic soil group as realized on land use and with the LID-BMPs. Essentially, the LIDMOD3 is a screen level and simple model which is easy to use because it is an Excel based model, as are most parameters in the database. This system can be expected to be widely used at the LID site to collect data within various programmable model parameters for the processing of a detail LID model simulation.

LID/BMPs 효과분석을 위한 LIDMOD2 개발 (LIDMOD2 Development for Evaluation of LID/BMPs)

  • 전지홍;최동혁;나은혜;박찬기;김태동
    • 한국물환경학회지
    • /
    • 제26권3호
    • /
    • pp.432-438
    • /
    • 2010
  • LIDMOD2 was developed for evaluation of low impact development (LID) and best management practice (BMP) by modification of Site Evaluation Tool (SET). The modification includes employment of SCS-CN method for annual runoff simulation, unit load method for annual pollutant loads simulation, and the method proposed by Korean TMDL for calculating pollutant reduction by BMPs. The CN values were updated with regionalized parameters within Nack-Dong River basin because these are important parameters for simulating hydrology. LIDMOD2 was tested by applying to Andong Bus terminal. As a simulation results, pollutant loads and surface runoff will be significantly increased by post-development without LID compared with those from pre-development. LID technique was simulated to efficiently reduce surface runoff and pollutant load and increase infiltration. LIDMOD2 is screening level tool and easy to use because LIDMOD2 is based on spread sheet and most of parameters are regionalized. LIDMOD2 was illustrate that it could evaluate LID well by summarizing and graphing annual hydrology, annual pollutant loading, and hydrograph for event storm. The calculation methods related with pollutant loads are employed from the guideline of Korean TMDL and it can be useful tool for Korean TMDL to evaluate the effect of LID/BMP on developing area.

지속가능한 도시개발을 위한 LID평가모델(LIDMOD)개발과 수질오염총량제에 대한 적용성 평가 (LIDMOD Development for Evaluating Low Impact Development and Its Applicability to Total Maximum Daily Loads)

  • 전지홍;최동혁;김태동
    • 한국물환경학회지
    • /
    • 제25권1호
    • /
    • pp.58-68
    • /
    • 2009
  • Low impact development (LID) technique is relatively new concept to reduce surface runoff and pollutant loading from land cover by attempting to match predevelopment condition with various integrated management practices (IMPs). In this study, computational model for designing and evaluating LID, named LIDMOD, was developed based on SCS-CN method and applied at Andong bus terminal to evaluate LID applicapability and design retention/detention area for volume or peak flow control. LIDMOD simulated with 21 years simulation period that yearly surface runoff by post-development without LID was significantly higher than that with LID showing about 2.8 times and LID could reduce efficiently yearly surface runoff with 75% reduction of increased runoff by conventional post development. LIDMOD designed detention area for volume/peak flow control with 20.2% of total area by hybrid design. LID can also efficiently reduce pollutant load from land cover. Pollutant loads from post-development without LID was much higher than those from pre-development with showing 37 times for BOD, 2 times for TN, and 9 times for TP. Pollutant loads from post-development with LID represented about 57% of those without LID. Increasing groundwater recharge reducing cooling and heating fee, creating green refuge at building area can be considered as additional benefits of LID. At the point of reducing runoff and pollutant load, LID might be important technique for Korean TMDL and LIDMOD can be useful tool to calculate unit load for the case of LID application.

저영향개발(LID)적용을 위한 구조적 BMPs의 유출량 및 비점오염저감 효과모의: LIDMOD2 적용 (Design of Structural BMPs for Low Impact Development (LID) Application and Modelling Its Effect on Reduction of Runoff and Nonpoint Source Pollution: Application of LIDMOD2)

  • 김정진;김태동;최동혁;전지홍
    • 한국물환경학회지
    • /
    • 제27권5호
    • /
    • pp.580-586
    • /
    • 2011
  • Low impact development (LID) technique is recently proposed as new concept to reduce surface runoff and pollutant loading with various best management practices (BMPs). In this study, LIDMOD2, which is one of the model to evaluate LID, was applied at Mohyeon developing area to evaluate the redcution of annual runoff and pollution loading, cost-reduction efficient by LID with design of structural BMPs including bioretention, wet pond, and wetland. As a simulation results, the bioretention had the highest reduction efficiency for runoff (41.43%), and 22% for T-N and 22% for BOD. Wet pont had the highest reduction efficiency for T-P as showing 25% of reduction rate. As a results of cost-reduction efficient, wet pont represented the highest cost-effective for T-N and BOD with showing 0.43 T-P kg/million won and 17.37 BOD kg/million won, respectively, and bioretention represented the highest cost-effective for T-P with showing 2.52 T-P kg/million won. LID technology could reduce effectively surface runoff and nonpoint source pollution and construct sustainable development. LIDMOD2 could be suggested as useful tool to evaluate and design LID.

식생체류지의 원지반 침투율이 유출량 저감효과에 미치는 영향모의 (The Effects of Infiltration Rate of Foundation Ground Under the Bioretention on the Runoff Reduction Efficiency)

  • 전지홍;정광욱
    • 한국물환경학회지
    • /
    • 제35권1호
    • /
    • pp.72-77
    • /
    • 2019
  • Soil type in LID infiltration practices plays a major role in runoff reduction efficacy. In this study, the effects of infiltration rate of foundation ground under bioretention on annual runoff reduction rate was evaluated using LIDMOD3 which is a simple excel based model for evaluating LID practices. A bioretention area of about 3.2 % was required to capture surface runoff from an impervious area for a 25.4 mm rainfall event. The relative error of runoff from bioretention using LIDMOD3 is 10 % less than that of SWMM5.1 for a total rainfall event of 257.1 mm during the period of Aug. 1 ~ 18, 2017, hence, the applicability of LIDMOD3 was confirmed. Annual runoff reduction rates for the period 2008 ~ 2017 were evaluated for various infiltration rates of foundation ground under the bioretention which ranged from 0.001 to 0.600 m/day and were converted to annual runoff reduction for hydrologic soil group. The runoff reduction rates within hydrologic soil group C and D were steeply increased through increased infiltration rate but not steep within hydrologic A and B with reduction rates ranging from 53 ~ 68 %. The estimated time required to completely empty a bioretention which has a storage depth of 0.632 m is 3.5 ~ 6.9 days and we could assume that the annual average of antecedent rainfall is longer than 3.5 ~ 6.9 days. Therefore, we recommended B type as the minimum hydrologic soil group installed LID infiltration practices for high runoff reduction rate.

저영향개발(LID)을 적용한 토지이용계획 기법 개발 및 적용효과 분석 : 세종시 6생활권을 대상으로 (The development of land use planning technique applying low impact development and verifying the effects of non-point pollution reduction : a case study of Sejong city 6 district)

  • 강기훈;이경환
    • 한국산학기술학회논문지
    • /
    • 제18권7호
    • /
    • pp.548-553
    • /
    • 2017
  • 우리나라의 급속한 산업화는 도시침수, 하천 건천화, 지하수 고갈, 수질오염 등의 많은 문제를 야기하였으며, 최근 이에 대한 대안으로 저영향개발 기법이 제시되고 있다. 저영향개발 기법은 도시의 불투수 면적을 줄이고 녹지면적을 확보하여 자연 상태의 물순환체계를 구축하기 위한 도시개발 기법이다. 이에 본 연구는 토지이용계획 단계에서 적용가능한 저영향 개발 설계기술을 개발하고 비점오염 저감효과를 정량적으로 검증하는데 목적을 두고 연구를 진행하였으며 구체적으로는 토지이용계획 단계에서 적용가능한 저영향개발 설계요소를 도출하고 실제 대상지에 적용, 비점오염 저감효과를 LIDMOD2 프로그램을 이용하여 분석하였다. 분석결과 기존 토지이용계획안에 비해 저영향개발을 적용한 토지이용계획안의 경우 불투수율과 연간 표면 유출량은 각각 19.8%, 19.0% 감소하고, 연간 침투량은 164.1% 증가하는 것으로 나타났다. 비점오염 발생량의 경우 T-N, T-P, BOD 모두 18.7~22.8% 감소하는 것으로 나타났다. 따라서 저영향개발을 적용한 토지이용계획안은 기존 토지 이용계획안에 비해 각 용도별 연면적 변화 없이도 비점오염 저감효과가 상당히 큰 것으로 판단된다. 따라서 비점오염 저감효과를 극대화하기 위해서는 기존 LID시설 위주의 계획에서 나아가 토지이용계획 단계에서부터 저영향 개발기법을 적용하여 관련 계획을 수립할 필요가 있다.

LID-IMPs 선정 가이드라인 제시와 아파트단지에서의 LID 설계 (Guideline of LID-IMPs Selection and the Strategy of LID Design in Apartment Complex)

  • 전지홍;김정진;최동혁;한재웅;김태동
    • 한국물환경학회지
    • /
    • 제25권6호
    • /
    • pp.886-895
    • /
    • 2009
  • The guideline of selection of Integrated Management Practices (IMPs), such as wood, green roof, lawn, and porous pavement, for Low Impact Development (LID) design was proposed by ranking the reduction rate of surface runoff using LIDMOD1.0. Based on the guideline, LID was designed with several scenarios at two apartment complexes located at Songpa-gu, Seoul, Korea, and the effect of LID on surface runoff was evaluated during last 10 years. The effect of runoff reduction of IMP by land use change was highly dependent on the kind of hydrologic soil group. The wood planting is the best IMPs for reduction of surfac runoff for all hydrologic soil groups. Lawn planting is an excellent IMP for hydrologic soil group A, but reduction rate is low where soil doesn't effectively drains precipitation. The green roof shows constant reduction rate of surface runoff because it is not influenced by hydrologic soil group. Compared to the rate of other IMPs, the green roof is less effect the surface runoff reduction for hydrologic soil group A and is more effect for hydrologic soil group C and D followed to planing wood. The porous pavement for the impervious area is IMPs which is last selected for LID design because of the lowest reduction rate for all hydrologic soil group. As a result of LID application at study areas, we could conclude that the first step of the strategy of LID design at apartment complex is precuring pervious land as many area as possible, second step is selecting the kind of plant as more interception and evapotranspiration as possible, last step is replacing impervious land with porous pavement.

수변지역에서의 저영향개발기법(LID) 적용을 위한 계획과정 도출 및 모의효과 (The Planning Process and Simulation for Low Impact Development(LID) in Waterfront Area)

  • 김동현;최희선
    • 환경정책연구
    • /
    • 제12권1호
    • /
    • pp.37-58
    • /
    • 2013
  • 최근 도시계획분야에서 관심의 대상이 되고 있는 저영향개발기법은 강우관리 및 비점오염원 저감 뿐만 아니라 사회적, 경제적, 심미적으로 다양한 가치를 지니는 지속가능한 성장을 유도하는 통합적인 개발의 틀로서 이해되고 있다. 수변지역 개발에 대한 관심이 증대되면서 저영향개발기법에 대한 관심 역시 증대되고 있지만 계획과정 및 요소에 대한 연구는 부족한 실정이다. 본 연구는 두 가지의 목적을 지닌다. 하나는 저영향개발기법에 대한 선행연구검토를 통하여 계획과정 및 요소를 도출하는 것이고 다른 하나는 도출된 계획과정 및 요소를 모의적용과정을 통하여 효과를 파악하는 것이다. 저영향개발기법의 적용은 토지이용계획의 변화를 기초로 하였다. 이는 보전지역 및 공공시설 구역의 기능설정, 투수면적 확대를 위한 공간배치계획, 분산형 빗물관리체계 구축을 위한 공간배치계획 등으로 구분된다. 본 연구는 LIDMOD2를 이용하여 사례지역에서의 저영향개발기법 모의적용 효과를 추정하였다. 그 결과 연간표면 유출량, 연간 침투량, T-N, T-P, BOD, 첨두유량 등에서 7~10% 정도의 효과가 있는 것으로 나타났다.

  • PDF