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http://library.kei.re.kr/dmme/img/001/003/001/X՜ t1 x LOCOPEMD ȩ\ Xֽ !0.pdf;\mŰUse of "LOCOPEM" Simulation in Environmental Assessments of Water Ecosystem Health This study focused on the development of lotic (i.e. river and stream) ecosystem health appraisal methodology, and the applicability of such methods in environmental impact assessments (EIAs). Accordingly, the lotic community prediction model (LOCOPEM), a diagnostic tool for assessing ecosystem health in accordance with environmental changes, was assessed for suitability and applicability in EIA. This report consists of four chapters. Chapter 1 describes the background and goals of the study. Chapter 2 describes the major methodologies used in lotic environmental assessments (section 1~3), and then assesses the applicability of LOCOPEM via field studies conducted at the Anyang and Hakeui streams as part of restoration projects. Chapter 3 provides explanations on the diagnosis of ecosystem health, presents some of the issues in ecosystem analysis in current EIA, and then presents some of the standard kinds of analysis used to address these issues. Chapter 3 then proposes an assessment protocol that includes comprehensive analysis procedures for lotic ecosystem surveys as well as measurement of input variables for LOCOPEM. Temporal comparative analyses of the Gapyeong and Yangjae streams were used as case studies to illustrate the applicability of LOCOPEM in EIA. The second section of Chapter 3 illustrates techniques to devise mitigation plans that leverage LOCOPEM s simulation abilities.Chapter 4 discusses the significance of the model, and proposes practical policy applications. The results of this study indicated that LOCOPEM can be used for ecological diagnosis in lotic projects, analysis of ecological suitability in lotic restoration and refining projects, as well as establishment of ecological goals and simulation of optimum mitigation measures. This study also found that systematic establishment of lotic ecological assessment systems using LOCOPEM can provide both effective forecasts of environmental impact for a particular project as well as effective mitigation plans. Moreover, LOCOPEM can contribute to increased efficiency in policy execution by increasing objectivity in environmental assessment.1 ` <br> 1. l 0 <br> 2. Ȕ l <br> <br>2 )` pȬ <br> 1. XֽX 0 <br> . pȬ m <br> . X՜X tǩ X <br> . ٳ< mթ 8 <br> 2. ƥ! x <br> . . ɷ 0\ ĬT !Ψx <br> 3. LOCOPEMX 0P <br> 4. pȬ| \ xX ȩ <br> . HőŜ YXǜ pȬ <br> . Xֽƥ, Ȳ0 pȬ X DP <br> <br>3 XֽX Ĭ t1 8 ? <br> 1. )` 8 \pȬ) <br> . XֽX )` 8 <br> . \pȬ )X $m <br> 2. \pȬX T LOCOPEM \ ȩ <br> . \pȬ - pȬmթ, 0 ) <br> . LOCOPEM\X Xֽȩ !΄ <br> 3. ɀ8 Ĭ t1 <br> 4. ĳ m <br> <br>4 <br> 1. x ȩXX ҥ <br> 2. E \֩ <br> 3. DՔ\ l <br> <br>8 8 <br> <br> ](LOCOPEM %@ ¬tX Ӹ) <br> <br> YXǜ, HőŜ(2003, 2008, 2009) <br> Ӝ(2004, 2008) <br> Ŭǜ(2002, 2007) <br> Ĭ(2007) <br> \(2006, 2009) <br> <br>Abstract <br> <br>;
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