• 제목/요약/키워드: Specific absorption coefficient

검색결과 54건 처리시간 0.023초

ChlorophyII and suspended sediment specific absorption coefficient in the sea.

  • Ahn, Yu-Hwan;Moon, Jeong-Eon
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 1998년도 Proceedings of International Symposium on Remote Sensing
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    • pp.399-403
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    • 1998
  • Absorption coefficient per mass unit of particles, specific absorption coefficient, is one of main parameters in developing algorithms for ocean color remote sensing. Specific absorption coefficient of chlorophyll (a$^*_{ph}$) and suspended sediment (SS) were analyzed by "wet filter technique" and "Kishino method" for data sets observed in the Yellow and Mediterranean Seas. A new data-recovering method for the filter technique was also developed using spectrum slopes. This method recovered the baseline of spectrum that was often missed in the Kishino method. High a$^*_{ph}$($\lambda$) values in the oligotrophic Mediterranean Sea and low values in the Yellow Sea were observed, spanning over the range of 0.02 to 0.12 $m^2$/mg, at the chlorophyll maximum absorption wavelength 440nm. The empirical relationship between a$^*_{ph}$ and chlorophyll concentration was found to fit a power function, which was slightly different from that proposed by Bricaud et ai. (1995). Absorption specific coefficients for suspended sediment (a$^*_{SS}$) didn't show any relationship with concentrations of suspended sediment. However, the average value of a$^*_{SS}$ at 440nm was close to the specific absorption coefficient of soil (loess) measured by Ahn (1990). The more-pronounced variability of a$^*_{SS}$ than a$^*_{ph}$ perhaps can explain more wide range of size-distribution for SS, which were determined by their specific gravity and agitation of water mass in the sea surface.

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폴리에스테르 흡음재의 음향특성 (Acoustical Properties of Polyester Sound Absorbing Materials)

  • 주경민;용호택;이동훈
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2001년도 추계학술대회논문집 II
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    • pp.1347-1352
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    • 2001
  • In this study, the acoustic properties of polyester sound absorbing materials with three different bulk densities were investigated by calculating and measuring the acoustic parameters in terms of characteristic impedance, propagation constant, and absorption coefficient. For the calculations, Delany and Bazley's empirical equation was used together with the experimentally obtained specific flow resistivities under steady flow conditions. For the experimental measurements, the well-known two-thickness method was accessed. The experimentally measured values of characteristic impedance and propagation constant were generally agreed well with the corresponding calculated values. Based on the comparisons between the calculations and measurements, it was found that the magnitude of the absorption coefficient was closely related to the characteristic impedance and the real part of the propagation constant. Especially, the maximum magnitude of the absorption coefficient was depended upon the imaginary part of the propagation constant indicating the phase change of the propagation constant.

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Flyash를 이용한 블록의 흡음특성에 관한 연구 (A Study on the Characteristic of Sound Absorption of Flyash Blocks)

  • 변홍식;이태관
    • 한국환경과학회지
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    • 제11권3호
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    • pp.235-240
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    • 2002
  • The blocks using flyash were prepared in this study. The characteristic of sound absorption of flyash block was investigated. It was revealed that the chemical additives and flyash played an important role to determine the characteristic of sound absorption. Chemical additive affects the capability of sound absorption while flyash affects the characteristic of sound absorption, i.e. high value of the sound absorption coefficient at the specific frequencies(1KHz and 2KHz). The flyash block showed higher sound absorption coefficient than that of the commercial concrete block having carpet on the surface. It was also shown that the sound absorption coefficient increases with increase of the content of flyash in the block. However, it was found that the 70wt% of flyash in the flyash block was the optimum content to obtain the highest sound absorption coefficient.

Consideration of Temperature and Slip Correction for Photothermal Spectrometry

  • Lee, Jeonghoon
    • Asian Journal of Atmospheric Environment
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    • 제9권1호
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    • pp.86-90
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    • 2015
  • Temperature was considered to estimate the minimum detectable absorption coefficient of aerosol particles from photothermal spectroscopy. Light energy absorbed by subsequent emission from the aerosol results in the heating of the aerosol sample and consequently causes a temperature change as well as changes in thermodynamic parameters of the sample. This thermal effect is the basis of photothermal spectroscopy. Photothermal spectroscopy has several types of techniques depending on how the photothermal effects are detected. Photothermal interferometry traces the photothermal effect, refractive index, using an interferometer. Photoacoustic spectroscopy detects the photothermal effect, sound wave, using a microphone. In this study, it is suggested that the detection limit for photothermal spectroscopy can be influenced by the introduction of a slip correction factor when the light absorption is determined in a high temperature environment. The minimum detectable absorption coefficient depends on the density, the specific heat and the temperature, which are thermodynamic properties. Without considering the slip correction, when the temperature of the environment is 400 K, the minimum detectable absorption coefficient for photothermal interferometry increases approximately 0.3% compared to the case of 300 K. The minimum detectable absorption coefficient for photoacoustic spectroscopy decreases only 0.2% compared to the case of 300 K. Photothermal interferometry differs only 0.5% point from photoacoustic spectroscopy. Thus, it is believed that photothermal interferometry is reliably comparable to photoacoustic spectroscopy under 400 K.

적조 원격탐사 기술 개발을 위한 적조생물의 광특성 연구 (A Study on Optical Properties of Red Tide Algal Species)

  • 이누리;문정언;안유환;양찬수;윤홍주
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2006년도 추계학술발표회
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    • pp.187-191
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    • 2006
  • 적조 종에 따라 해색이 다르다는 점에 착안해 해색 모델로부터 적조 종을 역 추정하는 기술을 개발하는데 있어 기본 입력 변수가 되는 적조 생물에 관한 광학적 특성(흡수, 역산란 특성)을 연구하였다. 실험실 수준에서의 적조 생물의 광특성을 조사하기 위해서 남해에서 채취 된 21종의 적조 생물을 배양하고 spectrophotometer를 이용해 광합성 색소에 의한 흡수계수(absorption coefficient, a)와 역산란 계수 (backscattering coefficient, $b_b$)를 측정하였다. 또한 spectrophotometer를 이용해 측정된 흡수 및 역산란 계수와 클로로필 농도를 이용하여 비 흡광계수 $(a^*)$와 비역산란계수$(b_b^*)$를 계산하였으며 이들 스펙트럼의 모양과 값을 비교하였다. 적조 생물 종에 따른 $a^*$은 파장대 440nm 에서 $0.005-0.06m^2/mg$의 값을 가지며, $b_b^*$의 범위는 $10^{-2}\sim10^{-4}m^2/mg$로 종간 약 100배의 차이가 있었다. 이와 같이 적조생물 종에 따라 스펙트럼의 모양과 값에서 차이를 나타냈으며 21종의 적조 생물 중에서 해색 스펙트럼으로 종간 구분이 가능한 종은 7-8 종이었다. 이 결과는 해색모델 개발에 있어 입력변수로 활용될 것이다.

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전달행렬법을 이용한 다중 다공판 시스템의 흡음성능 예측 (Estimation of the Sound Absorption Performance for Multiple Layer Perforated Plate Systems by Transfer Matrix Method)

  • 이동훈;허성춘;권영필
    • 한국소음진동공학회논문집
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    • 제12권9호
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    • pp.709-716
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    • 2002
  • A practical method of predicting the sound absorption coefficient for multiple perforated-plate sound absorbing system was developed using transfer matrix method. The proposed method was validated by comparing the calculated absorption coefficients of a single layer perforated plate with the values measured by the two-microphone impedance tube method for various porosity and spacing of the perforated plate. The developed transfer matrix method was further applied to estimate the multiple layer perforated plates and it is shown that the estimated absorption coefficients agree well with the measured values.

참오동나무의 열처리가 기체투과성, 흡음율과 음향투과손실에 미치는 영향 (Effect of Heat Treatment on the Gas Permeability, Sound Absorption Coefficient, and Sound Transmission Loss of Paulownia tomentosa Wood)

  • KANG, Chun-Won;JANG, Eun-Suk;JANG, Sang-Sik;Cho, Jae-Ik;KIM, Nam-Hun
    • Journal of the Korean Wood Science and Technology
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    • 제47권5호
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    • pp.644-654
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    • 2019
  • 참오동나무의 섬유방향기체투과성(gas permeability), 횡단방향 흡음율(sound absorption coefficient)과 음향투과손실(sound transmission loss)을 평가하고 열처리의 영향을 파악하고자 참오동나무 원반을 100, 160, $200^{\circ}C$로 열처리하고 기체투과성, 흡음율, 음향투과손실을 각각 측정하여 무처리 원반의 결과와 비교하였다. 그 결과, 두께 20 mm 참오동나무 원반의 섬유방향 기체투과성(specific permeability)은 무처리, 100, 160, $200^{\circ}C$ 열처리의 경우 각각 0.254, 0.279, 0.314, 0.452로 열처리에 의해 기체투과성이 약간 증가하였다. 두께 20 mm 무처리 참오동나무 원반의 50-6400 Hz 평균흡음율은 0.101이었으며 온도 100, 160, $200^{\circ}C$로 열처리한 목재의 50-6400 Hz 평균흡음율은 0.109, 0.096 그리고 0.106이었다. NRC (noise reduction coefficient) 는 각각 0.060, 0.067, 0.062 그리고 0.071 이었다. 두께 20 mm 무처리 참오동나무 원반의 50-6400 Hz 주파수범위에서 음향투과손실은 평균 36.93 dB이었다. 열처리에 의해 참오동나무 원반의 기체투과성과 흡음율은 열처리에 의해 그리고 열처리 온도 증가에 의해 약간 증가하였으나 증가정도는 미미하였다.

STUDY ON OPTICAL PROPERTY OF RED TIDE ALGAL SPECIES

  • Lee, Nu-Ri;Ahn, Yu-Hwan;Moon, Jeong-Eon;Yang, Chan-Su;Yoon, Hong-Ju
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2006년도 Proceedings of ISRS 2006 PORSEC Volume I
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    • pp.324-327
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    • 2006
  • This research is about the optical characteristic of red tide which is collected from Nam-Hae for basic research of red tide remote sensing technique development. 21 kinds of red tide organisms are cultivated to investigate optical characteristic of them on the level of laboratory, and chlorophyll specific absorption coefficient($a^*$) and backscattering coefficient($b_b^*$) are estimated by using spectrophotometer. Absorption spectrums according to species are appeared diversely from 0.005 to 0.06 (mg/ $m^2$), and the shapes of spectrums are also different. The range of $b_b^*$ are appeared $10^{-2}{\sim}10^{-4}$ mg/ $m^2$, which have around 100 times differences between species, and the shape of spectrum also have significant difference between species. These results are able to use as an input data of inverse model from ocean color.

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황해와 지중해에서의 클로로필 및 부유입자의 비흡광계수 연구 (Specific Absorption Coefficients for the Chlorophyll and Suspended Sediment in the Yellow and Mediterranean Sea)

  • 안유환;문정언
    • 대한원격탐사학회지
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    • 제14권4호
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    • pp.353-365
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    • 1998
  • 해수 중에서 클로로필을 포함하는 식물성 플랑크톤 미생물 입자와 그 외 모든 부유입자의 단위 질량 당 광 흡수계수의 크기, 즉 "비흡광계수"는 ocean color 원격탐사 기술개발에서 가장 중요한 요소 중의 하나이다. 분석방법으로는 spectrophotpmeter을 사용한 "젖은 필터법"과 "Kishino법"을 사용하였다. 황해에서는 직접 광학적 관측으로, 지중해에서는 과거의 databank를 활용하여 클로로필(ph)과 부유침전물(ss)의 "비흡광수계수"($a^{*}_{ph}$$a^{*}_{ss}$)가 분석되었다. 그리고 필터법에서 측정 중 baseline의 변동에 의하여 발생하기 쉬운 측정오차를 제거하기 위한 새로운 분석방법을 제안하였다. 이것은 흡광 스펙트럼의 기울기를 이용한 것으로, 필터 technique 와 Kishno method에서 간혹 발생하는 baseline의 변경을 완전하게 복구할 수 있게 되었다. 식물성 플랑크톤의 광흡수 파장인 440nm에서 분석한 결과, 비흡광계수는 지중해의 빈 영양해에서 큰 값이 얻어졌으며, 서해 및 남해의 부 영양해에서는 아주 낮은 값이 관측되었다. 즉, 관측 값의 범위는 약 0.01 - 0.12 $m^2$/mg 이며, 해수의 영양 등급이 낮을수록 그 값은 증가하는 r서으로 밝혀졌다. 클로로필 농도와 440nm의 비흡광수계수 관계를 희귀 분석한 결과 이들 관계는 지수 함수적으로 표현되며 ($a^{*}_{ph}=0.039 ^{-0.369}$), Bricaud(1995)의 연구결과와 거의 일치되는 것으로 나타났다. 반면에 부유침전물의 비흡광계수는 클로로필 입자와는 다르게 그 자신의 농도와는 별다른 관계를 나타내지 않았다. 그러나 서해 연안해수의 부유침전물의 흡광 스펙트럼의 특징은 Ahn(1990)이 측정한 유상 토양입자의 흡광 스펙트럼과 아주 유사한 거승로 나타났으며 그 값의 범위는 0.005 - 0.08$m^2$/g였다. 그리고 클로로필 입자 보다 훨씬 다양한 침전 부유입자의 광특성은 유기입자와 광물질의 혼합비에 의한 것으로 사료되며 그 외 해수 중에서 생물입자 size 분포 보다 더 광범위한 분포와 다양한 환경(입자의 비중, 해상의 바람, 저질상태, 수심 등)에 의한 것으로 추정되었다.

비극성용매 내의 벤젠 물질전달특성 (Mass transfer characteristics of benzene in nonpolar solution)

  • 최성우;김혜진;박문기
    • 한국환경과학회지
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    • 제11권6호
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    • pp.605-610
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    • 2002
  • The absorption of benzene in nonpolar solution was studied in a laboratory-scale of bubble column varying of gas flow rates and gas-to-liquid ratios. A bubble column had a 0.8∼l$\times$10$\^$-3/ m$^3$ total volume (height 1500 mm, diameter 50 mm). Solution analysis was performed by GC-FID and GC-MSD. The objectives of this research were to select the best absorption fluid and to evaluate the mass transfer characteristics under specific conditions of each absorption. The results of this research were follow as: First, the heat transfer fluid is more efficient than the other nonpolar solution in removing VOC. Second, The benzene removal efficiency improved according to an increasing rate of gas flow. Also, volumetric mass transfer rate of column can be enhanced by increasing gas flow rate. Finally, the relation of gas flow rates, liquid amount, and volumetric mass transfer coefficient was obtained as follows. K$\_$y/a: 0.5906(V$\_$g//L)$\^$0.7611/ The following correlation of mass transfer coefficient and efficiency was proposed. v= 0.06078 K$\_$y/a$\^$0.2444/.