• Title/Summary/Keyword: ring width

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Climate and Growth Relationship in Blue Pine (Pinus wallichiana) from the Western Himalaya, India (인도 서히말리아산 블루파인(Pinus wallichiana)의 연륜생장과 기후와의 관계)

  • Yadav, R. R.;Amalava, B.
    • The Korean Journal of Ecology
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    • v.20 no.2
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    • pp.95-102
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    • 1997
  • Ring width chronologies of blue pine (pinus wallichiana) from two mesic sites, Kanasar(2, 400 m) and Gangotri(3, 000 m), in the western Himalayan region. India were developed to understand tree growth-climate relationship and its applicability in proxy climate studies. The resoponse function analyses of the two chronologies show that the site conditions play an important role in modulating the effect of climatic variables on tree growth. Winter temperature, prior to the growth year, has been found to play positive influence on blue pine growth at both sites. Summer temperature also has very similar response except for June and August. June temperature has negative influence at the lower in contrary to at the higher site. Low August temperature favors tree growth to precipitation has been found to vary which could be due to different precipitation regime at the two sites. Winter precipitation is important for tree growth at the higher, whereas summer at the lower sits. The present study suggests that the tree ring materials of blue pine from the temperate Himalayan regions could be used to develop chronologies for the reconstruction of seasonal climatic variables.

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Tree-Ring Dating of Wood Elements Used for Tongmyungjeon Hall of Changkyung Palace - The Year of Transforming from Ondol Rooms to Wooden Floors- (창경궁 통명전 목부재의 연륜연대 측정 -방에서 마루로 변형된 시기규명을 중심으로-)

  • Park, Won-Kyu;Son, Byung-Wha;Han, Sang-Hyo
    • Journal of architectural history
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    • v.12 no.3
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    • pp.53-63
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    • 2003
  • Tree-ring chronologies can be used to date historical buildings by matching them with the chronologies of living trees or previously dated samples. Tree-ring dating gives a calendar year to each tree ring and produces the felling dates of logs or woods which had been used for buildings. In Korea, several chronologies of Japanese red pine(Pinus densiflora Sieb. et Zucc., 'sonamu' in Korean), a major species for the wooden building materials, have been developed and used for dating historical buildings. In this study, Tongmyungjeon Hall of Changkyung Palace in Seoul was dated by tree rings. The present Tongmyungjeon Hall was known to be reconstructed in A.D. 1834 after burned-out in A.D. 1790. We sampled total of 122 wood samples which were replaced during the repair process in 2002-2003. Felling dates of the samples were determined by the dendrochronological crossdating method. Crossdating method employs graphic comparison of the master patterns (ring-width chronologies of known dates) with those of the sample chronologies of unknown dates. Tree-ring dates confirmed that the reconstruction of 1834 utilized second-handed timbers as well as fresh-cut ones. The felling dates of wooden floor frames were mostly A.D. 1913, indicating the 'Ondol' floors were changed to the wooden floors around 1914 when the Japanese rulers brutally destroyed the royal Korean Palaces and transformed palace buildings to their offices or exhibition halls after occupying Korea in 1910. This study proved that tree-ring dating was a useful and accurate method to identify the critical dates for the history of Korean traditional buildings.

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Tree-Ring Dating of Korean Traditional Furnitures: A Case Study on Cabinet and Chest (전통목가구의 연륜연대측정 : 장(欌)과 반닫이 사례연구)

  • Park, Won-Kyu;Kim, Yo-Jung
    • Journal of the Korean Wood Science and Technology
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    • v.33 no.3 s.131
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    • pp.1-10
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    • 2005
  • Tree-ring chronologies can be used to date historical buildings or furnitures by matching them with chronologies of living trees. Tree-ring dating gives a calendar year to each tree ring and produces the cutting dates of logs or woods. In this study, we intend to extend our tree-ring dating applications to Korean furnitures. As a case study, we examined two traditional furnitures, one cabinet 'Jang' and the other chest, 'Bandaji'. The cutting date of the cabinet woods was A.D. 1839. The date of the outmost ring in the chest was A.D. 1904. Due to no bark present, the cutting date of the chest was only estimated as $1930{\pm}10$ by 'sapwood rings' estimation method. Ring-width pattern of the latter one also indicated that the origin of the chest must be Kangwon province. This case study suggests that tree-ring dating would be a useful and accurate method to identify the critical dates for the chronicles of Korean traditional furnitures.

Species Identification and Tree-Ring Analysis of Wooden Elements in Daewoong-jeon of Hwagye-temple, Seoul, Korea (서울 화계사 대웅전 목부재의 수종 및 연륜연대 분석)

  • Lee, Kwang Hee;Park, Chang Hyun;Kim, Soo Chul
    • Journal of Conservation Science
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    • v.36 no.5
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    • pp.326-332
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    • 2020
  • The this study's objective was to conduct species identification and tree-ring dating for the wood elements of Daewoong-jeon(main temple), Hwagye-temple, Seoul, Korea. Most of the wood elements were made from Pinus spp.(hard pine). However, one large beam was constructed from Abies spp.. For the tree-ring dating, cores were taken from the elements using a drill, and ring-width plots of individual samples were produced with the TSAP software program. The tree-ring dating results showed that, the date of the outermost ring of most elements (20 elements), including beams and pillars, were from AD 1839 to 1870. Among them, five elements had bark, and felling dates were AD 1868 and 1869. These dates confirmed the historical records that Daewoongjeon was rebuilt in AD 1870 from the records of hidden materials(Bokjangmul) in Jongdori by the survey 2012.

Species Identification and Tree-Ring Dating of the Wooden Elements Used in Juheulgwan of Joryeong (Gate No.1), Mungyeong, Korea (문경 조령 주흘관(제 1관문) 목부재의 수종 및 연륜연대 분석)

  • LEE, Kwang Hee;PARK, Chang Hyun;KIM, Soo Chul
    • Journal of the Korean Wood Science and Technology
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    • v.49 no.6
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    • pp.550-565
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    • 2021
  • This study's objective was to conduct species identification and tree-ring dating of wooden elements used in Mungyeong Juheulgwan of Joryeong (Gate No. 1). Of the 84 wooden elements evaluated, 76 were confirmed to be hard pines, 5 were soft pines, and 3 belonged to Abies spp. For tree-ring dating, cores of the wooden elements were collected using a drill, and ring-width plots of individual samples were constructed using the TSAP software. The results of performing tree-ring dating for the outermost ring of 59 hard pine wooden elements revealed the following 4 felling dates: summer of 1708-late fall of 1709, summer of 1792-early spring of 1794, late fall of 1838-early spring of 1840 and 1867, and early spring-fall of 1872. These felling dates were found to be consistent with those in the construction and repair records of the Annals of Joseon Dynasty, Juhulgwan Jungsugi, and those engraved on Juhulgwan Walls. It is believed that some of the wooden materials harvested at that time were stored and used since there was a difference of approximately10 years between the repair records and felling dates.

A 12-bit Hybrid Digital Pulse Width Modulator

  • Lu, Jing;Lee, Ho Joon;Kim, Yong-Bin;Kim, Kyung Ki
    • Journal of Korea Society of Industrial Information Systems
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    • v.20 no.1
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    • pp.1-7
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    • 2015
  • In this paper, a 12-bit high resolution, power and area efficiency hybrid digital pulse width modulator (DPWM) with process and temperature (PT) calibration has been proposed for digital controlled DC-DC converters. The hybrid structure of DPWM combines a 6-bit differential tapped delay line ring-mux digital-to-time converter (DTC) schema and a 6-bit counter-comparator DTC schema, resulting in a power and area saving solution. Furthermore, since the 6-bit differential delay line ring oscillator serves as the clock to the high 6-bit counter-comparator DTC, a high frequency clock is eliminated, and the power is significantly saved. In order to have a simple delay cell and flexible delay time controllability, a voltage controlled inverter is adopted to build the deferential delay cell, which allows fine-tuning of the delay time. The PT calibration circuit is composed of process and temperature monitors, two 2-bit flash ADCs and a lookup table. The monitor circuits sense the PT (Process and Temperature) variations, and the flash ADC converts the data into a digital code. The complete circuits design has been verified under different corners of CMOS 0.18um process technology node.

Districting the Growth Zone by Diameter Growth Pattern for Pinus densiflora in Kangwon Province (직경생장(直徑生長)패턴에 따른 강원도(江原道) 소나무의 생장권역(生長圈域) 구분(區分))

  • Song, Chul Chul;Byun, Woo Hyuk;Lee, Woo Kyun
    • Journal of Korean Society of Forest Science
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    • v.84 no.1
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    • pp.71-76
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    • 1995
  • This study on Pinus desiflora in Kangwon Province has been performed for the purpose of classifying its growth area by geographical factors. To classify its growth area, the basic data which had were the measured values for annual ring width from cores were used. Individual variations in the measured values were removed through the standardization. Regional mean chronologies were estimated from the standardized values. The growth area was classified by the cluster analysis on the basis of the regional mean standardized indices. The results of this study shown that annual growth patterns to be clustered similar to geographical distribution in Kangwon Province. And the regional variations of annual growth patterns in the western part of Kangwon province were greater than those in the eastern part of Kangwon province.

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Reverse voltage characteristics of 4H SiC Schottky Diode by Edge termination Method (4H 탄화규소 쇼트키 다이오드에서 접합종단기법에 따른 항복전압특성)

  • Cheong, Hui-Jong;Bahng, Wook;Kang, In-Ho;Kim, Sang-Cheol;Han, Hyeon-Sook;Kim, Nam-Kyun;Lee, Yong-Jae
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2005.07a
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    • pp.191-192
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    • 2005
  • The reverse breakdown voltages of 4H-SiC SBD(schottky barrier diode)s with FP(Field Plate) and/or FLR(Field Limiting Ring) as a edge termination, were investigated. The breakdown voltages of SBDs with FP ware investigated varying the overlap width from $1{\mu}m$ to $30{\mu}m$. The maximum average breakdown voltages was 475V. There is no significant changes for the devices with overlap width of between $5{\mu}m\sim30{\mu}m$. It was confirmed that the dielectric breakdown of the thin thermal oxide is main cause of device failure. However, the breakdown voltage of SBD with FLR was 1400V even though the FLR edge termination structure was not optimized.

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THE STABILITY OF CERTAIN SETS OF ATTACHED PRIME IDEALS RELATED TO COSEQUENCE IN DIMENSION > k

  • Khanh, Pham Huu
    • Bulletin of the Korean Mathematical Society
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    • v.53 no.5
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    • pp.1385-1394
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    • 2016
  • Let (R, m) be a Noetherian local ring, I, J two ideals of R, and A an Artinian R-module. Let $k{\geq}0$ be an integer and $r=Width_{>k}(I,A)$ the supremum of lengths of A-cosequences in dimension > k in I defined by Nhan-Hoang [9]. It is first shown that for each $t{\leq}r$ and each sequence $x_1,{\cdots},x_t$ which is an A-cosequence in dimension > k, the set $$\Large(\bigcup^{t}_{i=0}Att_R(0:_A(x_1^{n_1},{\ldots},x_i^{n_i})))_{{\geq}k}$$ is independent of the choice of $n_1,{\ldots},n_t$. Let r be the eventual value of $Width_{>k}(0:_AJ^n)$. Then our second result says that for each $t{\leq}r$ the set $\large(\bigcup\limits_{i=0}^{t}Att_R(Tor_i^R(R/I,\;(0:_AJ^n))))_{{\geq}k}$ is stable for large n.

Scale Factor Error and Random Walk Characteristics of a Body Dither Type Ring Laser Gyro (몸체진동형 링레이저 자이로의 환산계수 오차 및 불규칙잡음 특성)

  • 심규민;정태호;이호연
    • Journal of the Korea Institute of Military Science and Technology
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    • v.2 no.1
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    • pp.139-149
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    • 1999
  • In this paper, we estimate the scale factor error and random walk characteristics of the ring laser gyro which has the body dither for Lock-in compensation. And then, we compared those results with the static test results for 28cm square ring laser gyro which has about 0.5 deg/sec static Lock-in. In the case of sinusoidal body dither, dynamic Lock-in occurs periodically at the points where the gyro output pulse becomes the integer multiples of body dither frequency. The width of dynamic Lock-in is changed by variation of dither amplitude, and, between the width of dynamic Lock-in which occurs at the even multiple points of body dither frequency and that at the odd muliple points of body dither frequency, it has 180o phase difference. Generally random body dither is adopted to compensate for dynamic Lock-in. Then if the irregularity is not large enough, the scale factor error by dynamic Lock-in is not vanished. And if the irregularity is large enough, the scale factor error decreases, but random walk becomes larger relatively. And we confirmed that the larger body dither amplitude, the smaller random walk.

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