• Title/Summary/Keyword: Clark

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Morphological description and molecular analysis of newly recorded Anneissia pinguis (Crinoidea: Comatulida: Comatulidae) from Korea

  • Kim, Philjae;Shin, Sook
    • Journal of Species Research
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    • v.9 no.4
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    • pp.467-472
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    • 2020
  • The crinoid specimens of the genus Anneissia were collected from Nokdong, Korea Strait, and Moseulpo, Jeju Island. The specimens were identified as Anneissia pinguis (A.H. Clark, 1909), which belongs to the family Comatulidae of the order Comatulida. Anneissia pinguis was first described by A.H. Clark in 1909 around southern Japan. This species can be distinguished from other Anneissia species by a longish and stout cirrus, much fewer arms, and short distal cirrus segments. The morphological features of Korean specimens are as follows: large disk (20-35 mm), 28-36 segments and 32-43 mm length cirrus, division series in all 4 (3+4), very stout and strong distal pinnule with 18-19 comb and 40 arms. In Korea fauna, only three species of genus Anneissia were recorded: A. intermedia, A. japonica, and A. solaster. In this study, we provide the morphological description and phylogenetic analysis based on cytochrome c oxidase subunit I.

Redescription of the First Zoea of Microcassiope orientalis (Crustacea: Decapoda: Xanthidae)

  • Lee, Seok Hyun
    • International Journal of Advanced Culture Technology
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    • v.8 no.2
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    • pp.277-282
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    • 2020
  • The first zoea of Microcassiope orientalis is described and illustrated from laboratory hatched materials. Comparisons with previous studies of the first zoeal stages in the Xanthidae from Korean waters, revealed that some former studies were incorrected. The first zoea of M. orientalis described by Ko was identical to the first zoea of Macromedaeus distinguendus described by Terada. In addition, zoeal stages of Nanocassiope granullipes described by Ko & Clark was revealed the zoeal stages of M. cassiopes. So, the first zoea of M. orientalis is redescribed and illustrated in detailed with color photo herein, and compare its morphological characteristics with previous described zoea of N. granulipes by Ko & Clark.

Two New Records of Colobometridae (Echinodermata, Crinoidea, Comantulida) in Korea (한국산 돌기발갯고사리류(극피동물문, 바다나리강, 바다나리목)의 2미기록종)

  • Shin, Sook
    • Animal Systematics, Evolution and Diversity
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    • v.18 no.1
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    • pp.157-163
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    • 2002
  • Some cirnoids collected by scuba divers from Jeju Island are identified. Of which two species, Cyllometra manca(Carpenter, 1888) and Decametra tigrina (A. H. Clark,1907) belonging to the family colobometridae and order Comantulida, turned out to be new to the Korean fauna. The Colobometridae is reported in Korea for the first time.

Flood Alert and Warning Scheme Based on Intensity-Duration-Quantity (IDQ) Curve considering Antecedant Moisture Condition (선행함수지수를 고려한 강우강도-지속시간-홍수량(IDQ) 곡선기반의 홍수예경보기법)

  • Kim, Jin-Gyeom;Kang, Boosik
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.35 no.6
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    • pp.1269-1276
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    • 2015
  • The methodology of utilizing Intensity-Duration-flood Quantity (IDQ) curve for flood alert and warning was introduced and its performance was evaluated. For this purpose the lumped parameter model was calibrated and validated for gauged basin data set and the index precipitation equivalent to alert and warning flood was estimated. The index precipitation and IDQ curves associated by three different Antecedant Moisture Conditions (AMCs) are made provision for various possible flood scenarios. The test basin is Wonju-cheon basin ($94.4km^2$) located in Gangwon province, Korea. The IDQ curves corresponding to alert (50% of design flood level) and warning (70% of design flood level) level was estimated using the Clark unit hydrograph based lumped parameter model. The performance evaluation showed 0.704 of POD (Probability of Detection), 0.136 of FAR (False Alarm Ratio), and 0.633 of CSI (Critical Success Index), which is improved from the result of IDQ with single fixed AMC.

Development of a multi channel measurement system for the cellular respiration measurement (세포 호흡량 측정용 다채널 측정 시스템 개발)

  • Nam, Hyun-Wook;Park, Jung-Il;KimPak, Young-Mi;Pak, James Jung-Ho
    • Journal of Sensor Science and Technology
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    • v.19 no.1
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    • pp.36-42
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    • 2010
  • This paper describes a multi channel measurement system which can measure the cellular respiration level in a solution containing cells by using a Clark-type sensor with the solution temperature control unit. The Clark-type sensor can measure the cellular respiration level in the solution because it can measure the reduction current depending on the dissolved oxygen level in the solution. This measurement system was maintained the temperature within ${\pm}0.1^{\circ}C$ of the setting temperature value by on/off control method in order to measure the precise cellular respiration level. The measurement system showed that the applied voltage to the working electrode was very stable(-0.8 V$\pm$ 0.0071 V) by using proportional control method. From the current measurement, the response time and the linearity correlation coefficient were 25 sec and 0.94, respectively, which are very close to the results of the commercial product. Using this system and the fabricated Clarktype sensor, the average ratio of the uncoupled OCR(oxygen consumption rate) to the coupled OCR was 1.35 and this is almost the same as that obtained from a commercial systems.

Analyis of stormwater and runoff characteristics in Anseongcun basin using HEC-HMS (HEC-HMS을 이용한 안성천 유역의 강우 유출 특성 분석)

  • Hwang, Byung-Gi;Yang, Seung-Bin
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.4
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    • pp.17-24
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    • 2018
  • The HEC-HMS model was applied to identify the rainfall-runoff processes for the Anseongchun basin, where the lower part of the stream has been damaged severely by tropical storms in the past. Modeling processes include incorporating with the SCS-CN model for loss, Clark's UH model for transformation, exponential recession model for baseflow, and Muskingum model for channel routing. The parameters were calibrated through an optimization technique using a trial and error method. Sensitivity analysis after calibration was performed to understand the effects of parameters, such as the time of concentration, storage coefficient, and base flow related constants. Two storm water events were simulated by the model and compared with the corresponding observations. Good accuracy in predicting the runoff volume, peak flow, and the time to peak flow was achieved using the selected methods. The results of this study can be used as a useful tool for decision makers to determine a master plan for regional flood control management.