• 제목/요약/키워드: South coastal area of Korea

검색결과 434건 처리시간 0.028초

통일 한국의 적정 군사력에 관한 연구 - 분쟁 시나리오와 상대적 균형전략을 중심으로 - (A Study on Appropriate Military Strength of Unified Korea (Focused on relative balance strategy and conflict scenario))

  • 홍봉기
    • 안보군사학연구
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    • 통권13호
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    • pp.687-738
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    • 2016
  • To prepare for the complicated international relationship regarding Korean Peninsula after reunification, this thesis started off with the awareness that Unified Korea should build its international posture and national security at an early stage by determining its appropriate military strength for independent defense and military strategies that Unified Korea should aim. The main theme of this thesis is 'The research on appropriate military strength of the Unified Korean military'. To derive appropriate military strength of Unified Korea, this research focuses on conflict scenario and relative balance strategy based on potential threats posed by neighboring countries, and this is the part that differentiates this research from other researches. First of all, the main objective of the research is to decide appropriate military strength for Unified Korea to secure defense sufficiency. For this, this research will decide efficient military strategy that Unified Korea should aim. Than by presuming the most possible military conflict scenario, this research will judge the most appropriate military strength for Unified Korea to overcome the dispute. Second, after deciding appropriate military strength, this research will suggest how to operate presumed military strength in each armed force. The result of this thesis is as in the following. First, Unified Korea should aim 'relative balance strategy'. 'Relative balance strategy' is a military strategy which Unified Korea can independently secure defense sufficiency by maintaining relative balance when conflicts occur between neighboring countries. This strategy deters conflicts in advance by relative balance of power in certain time and place. Even if conflict occurs inevitably, this strategy secures initiative. Second, when analyzing neighboring countries interest and strategic environment after unification, the possibility of all-out war will be low in the Korean Peninsula because no other nation wants the Korean Peninsula to be subordinated to one single country. Therefore appropriate military strength of the Unified Korean military would be enough when Unified Korea can achieve relative balance in regional war or limited war. Third, Northeast Asia is a region where economic power and military strength is concentrated. Despite increasing mutual cooperation in the region, conflicts and competition to expand each countries influence is inherent. Japan is constantly enhancing their military strength as they aim for normal statehood. China is modernizing their military strength as they aspire to become global central nation. Russia is also enhancing their military strength in order to hold on to their past glory of Soviet Union as a world power. As a result, both in quality and quantity, the gap between military strength of Unified Korea and each neighboring countries is enlarged at an alarming rate. Especially in the field of air-sea power, arms race is occurring between each nation. Therefore Unified Korea should be equipped with appropriate military strength in order to achieve relative balance with each threats posed by neighboring countries. Fourth, the most possible conflicts between Unified Korea and neighboring countries could be summarized into four, which are Dokdo territorial dispute with Japan, Leodo jurisdictional dispute with China, territorial dispute concerning northern part of the Korea Peninsula with China and disputes regarding marine resources and sea routes with Russia. Based on those conflict scenarios, appropriate military strength for Unified Korea is as in the following. When conflict occurs with Japan regarding Dokdo, Japan is expected to put JMSDF Escort Flotilla 3, one out of four of its Japan Maritime Self-Defense Force Escort Fleet, which is based in Maizuru and JMSDF Maizuru District. To counterbalance this military strength, Unified Korea needs one task fleet, comprised with three task flotilla. In case of jurisdictional conflict with China concerning Leodo, China is expected to dispatch its North Sea fleet, one out of three of its naval fleet, which is in charge of the Yellow Sea. To response to this military action, Unified Korea needs one task fleet, comprised with three task flotilla. In case of territorial dispute concerning northern part of the Korean Peninsula with China, it is estimated that out of seven Military Region troops, China will dispatch two Military Region troops, including three Army Groups from Shenyang Military Region, where it faces boarder with the Korean Peninsula. To handle with this military strength, Unified Korea needs six corps size ground force strength, including three corps of ground forces, two operational reserve corps(maneuver corps), and one strategic reserve corps(maneuver corps). When conflict occurs with Russia regarding marine resources and sea routes, Russia is expected to send a warfare group of a size that includes two destroyers, which is part of the Pacific Fleet. In order to balance this strength, Unified Korea naval power requires one warfare group including two destroyers. Fifth, management direction for the Unified Korean military is as in the following. Regarding the ground force management, it would be most efficient to deploy troops in the border area with china for regional and counter-amphibious defense. For the defense except the border line with china, the most efficient form of force management would be maintaining strategic reserve corps. The naval force should achieve relative balance with neighboring countries when there is maritime dispute and build 'task fleet' which can independently handle long-range maritime mission. Of the three 'task fleet', one task fleet should be deployed at Jeju base to prepare for Dokdo territorial dispute and Leodo jurisdictional dispute. Also in case of regional conflict with china, one task fleet should be positioned at Yellow Sea and for regional conflict with Japan and Russia, one task fleet should be deployed at East Sea. Realistically, Unified Korea cannot possess an air force equal to neither Japan nor China in quantity. Therefore, although Unified Korea's air force might be inferior in quantity, they should possess the systematic level which Japan or China has. For this Unified Korea should build air base in island areas like Jeju Island or Ullenong Island to increase combat radius. Also to block off infiltration of enemy attack plane, air force needs to build and manage air bases near coastal areas. For landing operation forces, Marine Corps should be managed in the size of two divisions. For island defense force, which is in charge of Jeju Island, Ulleung Island, Dokdo Island and five northwestern boarder island defenses, it should be in the size of one brigade. Also for standing international peace keeping operation, it requires one brigade. Therefore Marine Corps should be organized into three divisions. The result of the research yields a few policy implications when building appropriate military strength for Unified Korea. First, Unified Korea requires lower number of ground troops compared to that of current ROK(Republic of Korea) force. Second, air-sea forces should be drastically reinforced. Third, appropriate military strength of the Unified Korean military should be based on current ROK military system. Forth, building appropriate military strength for Unified Korea should start from today, not after reunification. Because of this, South Korea should build a military power that can simultaneously prepare for current North Korea's provocations and future threats from neighboring countries after reunification. The core of this research is to decide appropriate military strength for Unified Korea to realize relative balance that will ensure defense sufficiency from neighboring countries threats. In other words, this research should precisely be aware of threats posed by neighboring countries and decide minimum level of military strength that could realize relative balance in conflict situation. Moreover this research will show the path for building appropriate military strength in each armed force.

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흰멍게의 정미성분(呈味成分)에 관(關)한 연구(硏究) (A Study on the Taste Compounds of an Ascidian, Styela plicata)

  • 이응호;정선규;전중균;차용준;정수열
    • 한국식품과학회지
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    • 제15권1호
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    • pp.1-5
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    • 1983
  • 흰멍게, Styela plicata의 정미성분(呈味成分)의 함량(含量)을 밝히기 위하여 육(肉)과 피(皮)중의 핵산관련물질(核酸關聯物質), 유리(遊離)아미노산(酸), betaine, TMAO, TMA, total creatinine의 함량(含量)을 분석(分析) 검토(檢討)하였다. 핵산관련물질(核酸關聯物質)의 함량(含量)은 육(肉)에서 AMP가 $1.2{\mu}mole/g$으로 가장 많았다. 그리고 IMP도 $0.8{\mu}mole/g$으로 상당히 많이 함유(含有)되어 있었다. 피(皮)에서도 같은 경향(傾向)이었지만 그 함량(含量)이 육(肉)에 비(比)하여 아주 적었다. 육(肉)중에 다량(多量)으로 함유(含有)된 유리(遊離)아미노산(酸)은 proline, alanine, glutamic acid 및 serine으로서 이들 5종(種)의 유리(遊離)아미노산(酸)이 전체(全體) 유리(遊離)아미노산(酸)의 72%를 차지하였다. 피(皮)에서도 이들 유리(遊離)아미노산(酸)이 전체(全體) 유리(遊離)아미노산(酸)의 82%를 차지하였으나 그 함량(含量)은 육(肉)의 약(約) 1/10 정도에 불과(不過)하였다. 육(肉)중의 betaine 질소량(窒素量)은 16.4mg/100g으로서 육(肉)의 전체(全體)엑스분질소량(分窒素量)의 6.1%를 차지하였다. 피(皮)에서는 0.9mg/100g으로서 그 함량(含量)이 아주 낮았다. TMAO 및 TMA는 그 함량(含量)이 비교적(比較的) 미량(微量)이었다. total creatinine 질소량(窒素量)은 육(肉)과 피(皮)에서 각각(各各) 5.8mg/100g 및 1.1mg/100g으로서 전체(全體)엑스분질소량(分窒素量)의 2%정도였다.

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포항(浦項) 및 장기분지(盆地)에 대한 고지자기(古地磁氣), 층서(層序) 및 구조연구(構造硏究); 화산암류(火山岩類)의 K-Ar 연대(年代) (Paleomagnetism, Stratigraphy and Geologic Structure of the Tertiary Pohang and Changgi Basins; K-Ar Ages for the Volcanic Rocks)

  • 이현구;문희수;민경덕;김인수;윤혜수;이타야 테츠마루
    • 자원환경지질
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    • 제25권3호
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    • pp.337-349
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    • 1992
  • The Tertiary basins in Korea have widely been studied by numerous researchers producing individual results in sedimentology, paleontology, stratigraphy, volcanic petrology and structural geology, but interdisciplinary studies, inter-basin analysis and basin-forming process have not been carried out yet. Major work of this study is to elucidate evidences obtained from different parts of a basin as well as different Tertiary basins (Pohang, Changgi, Eoil, Haseo and Ulsan basins) in order to build up the correlation between the basins, and an overall picture of the basin architecture and evolution in Korea. According to the paleontologic evidences the geologic age of the Pohang marine basin is dated to be late Lower Miocence to Middle Miocene, whereas other non-marine basins are older as being either Early Miocene or Oligocene(Lee, 1975, 1978: Bong, 1984: Chun, 1982: Choi et al., 1984: Yun et al., 1990: Yoon, 1982). However, detailed ages of the Tertiary sediments, and their correlations in a basin and between basins are still controversial, since the basins are separated from each other, sedimentary sequence is disturbed and intruded by voncanic rocks, and non-marine sediments are not fossiliferous to be correlated. Therefore, in this work radiometric, magnetostratigraphic, and biostratigraphic data was integrated for the refinement of chronostratigraphy and synopsis of stratigraphy of Tertiary basins of Korea. A total of 21 samples including 10 basaltic, 2 porphyritic, and 9 andesitic rocks from 4 basins were collected for the K-Ar dating of whole rock method. The obtained age can be grouped as follows: $14.8{\pm}0.4{\sim}15.2{\pm}0.4Ma$, $19.9{\pm}0.5{\sim}22.1{\pm}0.7Ma$, $18.0{\pm}1.1{\sim}20.4+0.5Ma$, and $14.6{\pm}0.7{\sim}21.1{\pm}0.5Ma$. Stratigraphically they mostly fall into the range of Lower Miocene to Mid Miocene. The oldest volcanic rock recorded is a basalt (911213-6) with the age of $22.05{\pm}0.67Ma$ near Sangjeong-ri in the Changgi (or Janggi) basin and presumed to be formed in the Early Miocene, when Changgi Conglomerate began to deposit. The youngest one (911214-9) is a basalt of $14.64{\pm}0.66Ma$ in the Haseo basin. This means the intrusive and extrusive rocks are not a product of sudden voncanic activity of short duration as previously accepted but of successive processes lasting relatively long period of 8 or 9 Ma. The radiometric age of the volcanic rocks is not randomly distributed but varies systematically with basins and localities. It becomes generlly younger to the south, namely from the Changgi basin to the Haseo basin. The rocks in the Changgi basin are dated to be from $19.92{\pm}0.47$ to $22.05{\pm}0.67Ma$. With exception of only one locality in the Geumgwangdong they all formed before 20 Ma B.P. The Eoil basalt by Tateiwa in the Eoil basin are dated to be from $20.44{\pm}0.47$ to $18.35{\pm}0.62Ma$ and they are younger than those in the Changgi basin by 2~4 Ma. Specifically, basaltic rocks in the sedimentary and voncanic sequences of the Eoil basin can be well compared to the sequence of associated sedimentary rocks. Generally they become younger to the stratigraphically upper part. Among the basin, the Haseo basin is characterized by the youngest volcanic rocks. The basalt (911214-7) which crops out in Jeongja-ri, Gangdong-myon, Ulsan-gun is $16.22{\pm}0.75Ma$ and the other one (911214-9) in coastal area, Jujon-dong, Ulsan is $14.64{\pm}0.66Ma$ old. The radiometric data are positively collaborated with the results of paleomagnetic study, pull-apart basin model and East Sea spreading theory. Especially, the successively changing age of Eoil basalts are in accordance with successively changing degree of rotation. In detail, following results are discussed. Firstly, the porphyritic rocks previously known as Cretaceous basement (911213-2, 911214-1) show the age of $43.73{\pm}1.05$$49.58{\pm}1.13Ma$(Eocene) confirms the results of Jin et al. (1988). This means sequential volcanic activity from Cretaceous up to Lower Tertiary. Secondly, intrusive andesitic rocks in the Pohang basin, which are dated to be $21.8{\pm}2.8Ma$ (Jin et al., 1988) are found out to be 15 Ma old in coincindence with the age of host strata of 16.5 Ma. Thirdly, The Quaternary basalt (911213-5 and 911213-6) of Tateiwa(1924) is not homogeneous regarding formation age and petrological characteristics. The basalt in the Changgi basin show the age of $19.92{\pm}0.47$ and $22.05{\pm}0.67$ (Miocene). The basalt (911213-8) in Sangjond-ri, which intruded Nultaeri Trachytic Tuff is dated to be $20.55{\pm}0.50Ma$, which means Changgi Group is older than this age. The Yeonil Basalt, which Tateiwa described as Quaternary one shows different age ranging from Lower Miocene to Upper Miocene(cf. Jin et al., 1988: sample no. 93-33: $10.20{\pm}0.30Ma$). Therefore, the Yeonil Quarterary basalt should be revised and divided into different geologic epochs. Fourthly, Yeonil basalt of Tateiwa (1926) in the Eoil basin is correlated to the Yeonil basalt in the Changgi basin. Yoon (1989) intergrated both basalts as Eoil basaltic andesitic volcanic rocks or Eoil basalt (Yoon et al., 1991), and placed uppermost unit of the Changgi Group. As mentioned above the so-called Quarternary basalt in the Eoil basin are not extruded or intruaed simultaneously, but differentiatedly (14 Ma~25 Ma) so that they can not be classified as one unit. Fifthly, the Yongdong-ri formation of the Pomgogri Group is intruded by the Eoil basalt (911214-3) of 18.35~0.62 Ma age. Therefore, the deposition of the Pomgogri Group is completed before this age. Referring petrological characteristics, occurences, paleomagnetic data, and relationship to other Eoil basalts, it is most provable that this basalt is younger than two others. That means the Pomgogri Group is underlain by the Changgi Group. Sixthly, mineral composition of the basalts and andesitic rocks from the 4 basins show different ground mass and phenocryst. In volcanic rocks in the Pohang basin, phenocrysts are pyroxene and a small amount of biotite. Those of the Changgi basin is predominant by Labradorite, in the Eoil by bytownite-anorthite and a small amount pyroxene.

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第四紀 後期 英陽盆地의 自然環境變化 (The Late Quaternary Environmental Change in Youngyang Basin, South Eastern Part of Korea Penninsula)

  • 윤순옥;조화룡
    • 대한지리학회지
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    • 제31권3호
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    • pp.447-468
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    • 1996
  • 영양부근 반변천이 절단감입곡류를 하여 생신 구유로상에 약 7m 두께의 토탄지가 형성되어 있다. 이 토탄지를 대상으로 boring 자료분석과 화분분석을 실시하여 토탄지의 지형발달과 제4기 식생 및 기후환경변화를 검토하였다. 구유로상(연지와 원당지 일대)에 토탄지가 형성된 것은 주위산지에서 공급된 선상지성 퇴적물에 의해 구유로가 막혀 습지가 형성되었기 때문에 가능했던 것으로 볼 수 있다. 토탄층은 그 특징에 따라 하부층과 상부층으로 구분되며, 이들 사이에는 부정합관계가 있다. 탄소 연대측정자료, 각 화분분대 화분조성상의 특징, 토탄퇴적속도 등으로 볼 때, 하부토탄층은 대략 60,000년 BP경부터 퇴적되기 시작하여 만빙기까지, 상부토탄층은 완신세 중기경부터 거의 현재까지 형성된 것으로 추정된다. boring지점 1(YY1)과 지점 2(YY2)의 토탄층 화분분석결과는 수목류의 우점시기로 대비할 때, 총 다섯개의 화분대(화분대 YYI, YYII, YYIII, YYIV와 YYV)와 12개의 아분대로 구분되었다. 두지점 간에는 퇴적상 뿐 아니라 화분조성에서도 일견 차이가 있다. 즉, 공통적으로 화분대 III이 존재했으나 화분대 I, II는 주상도 YY1에서만, 화분대 IV와 V는 주상도 YY2에서만 나타났다. 하부토탄층은 화분대 I, II, III시기를 포함하며, NAP시기로서 쑥(Artemisia)속, 오이풀(Sanguisorba)속, 미니라과(Umbelliferae), 벼과(Gramineae)와 사초과(Cyperaceae)등 초본류의 비율이 월등히 높고, 한냉기 수목으로 출현하는 가문비나무(Picea)속, 소나무(Pinus)속, 자작나무(Betula)속 등의 목본류를 포함하며, 이들 목본류의 절대화분량은 상부토탄층에 비해 극히 적어 산림밀도가 낮은 Wurm빙기의 식생경관을 나타내었다. 상부토탄층은 화분대 IVb, V시기를 포함하며, AP시기로서 Pinus와 Quercus 등이 높은 비율로 나타내고 절대 화분량도 많아, 홀로세 온난기의 삼림경관를 나타내었다. 각 화분대 및 아분대 우점수목의 기후환경에 대응하는 생태적 특징으로 작성한 가상 기온변화곡선의 내용은 다음과 같다: 화분대 I은 Butula우점기로서 약 57,000년 BP까지 형성되었으며, 상대적 한냉기로 간주된다. 화분대 II는 EMW우점시기로서 $57,000{\sim}43$,000년 BP에 형성되었으며, Alt Wurm에서 mittel W${\"{u}}$rm으로 전환되는 Interstadial로 간주된다. 화분대 III은 43,000~15,000년 BP간의 가장 오랜 시기를 포함하며, mittel Wurm${\sim}$Jung Wurm기에 해당한다. 한냉기인 화분대 III시기 중에는 Betula, Pinus, Picea 등의 목본류가 교대로 우점하는데, YY1에서 Quercus 와 Picea의 화분조성 변화로 볼 때 아분대 IIId시기가 가장 한냉하였을 것으로 추정된다. 화분아분대 IVa는 하부 화분대와 상부 화분대간의 전환기층으로서 피나무(Tilia)속 우점기로 나타나며, Holocene에 해당하는 화분대 IVb와 V는 약 7,000년 BP부터 현재까지 식생변화로 각각 Quercus와 Pinus가 우점하는 시기로 한국 동해안의 曺(1979)의 화분대 I과 II에 각각 대비된다. Bartlein et al.(1986)의 diagram을 통해 볼 때, 영양지역의 Wurm빙기 최성기의 7월 평균기온은 현재보다 약 10${^\circ}$C 더 낮았을 것으로 추측된다.

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