• Title/Summary/Keyword: 그늘

Search Result 208, Processing Time 0.031 seconds

First report of Stellaria sessiliflora Y. Yabe (Caryophyllaceae) from Korea (한국 미기록식물: 그늘별꽃(석죽과))

  • So, Ji Hyeon;Kim, Dae Hong;Koo, Ae Sook;Kim, Myoung Jun;Lee, Nam Sook
    • Korean Journal of Plant Taxonomy
    • /
    • v.45 no.2
    • /
    • pp.178-182
    • /
    • 2015
  • Stellaria sessiliflora Y. Yabe (Caryophyllaceae), which is known to be distributed throughout Japan excluding Okinawa, was recently found on Jeju Island in Korea. Reports on the Japanese flora state that this species is distributed on Jeju Island, and a photograph of one specimen (Slide No. 6294) collected from Jeju Island by Ohwi in May 1935 confirms this. Additionally, specimens at the National Arboretum and Korea Forest Research Institute indicate that S. sessiliflora has occurred on Jeju Island for a considerable amount of time. However, the species has never been officially listed in the flora of Korea. Stellaria sessiliflora is distinguished from S. media by having broader leaves with a slightly undulate margin, petiolate leaves on the upper part of the stem, and 10 stamens. The local name 'Geu-Neul-Byeol-Kkot' is given to the species based on its shady habitat under deciduous broadleaf forest. Details of the morphological characters, an illustration, the type specimen, voucher specimen data, and photographs of Stellaria sessiliflora in Korea are presented.

Design of Group type automatic opening and closing shade curtain (그룹형 자동 개폐 그늘막장치 GRS의 설계)

  • Kim, Phyoung Jung;Hong, Sung Woong
    • Proceedings of the Korea Information Processing Society Conference
    • /
    • 2020.11a
    • /
    • pp.197-199
    • /
    • 2020
  • 태풍이나 갑작스러운 기후변화와 같은 돌발 상황이 발생하면 첫째, 그늘막을 일일이 찾아 접어야 하고, 둘째, 안전사고가 발생하지 않도록 안내방송을 해야 하고, 셋째, 접거나 펼칠 때 사람들이 다치지 않도록 경광등을 켜야 하고, 넷째, 그늘막 손상 사건에 대한 뺑소니를 처리해야 하는 등을 해결하는 GRS를 설계한다. GRS는 첫째, 30~500여 개의 컨트론러에 그룹형 자동 개폐 명령 기법을 개발하고 둘째, 30~500여 개의 컨트론러에 그룹형 안내방송기법 및 그늘막 개폐 시 주위에 사람 있는지 확인하여 안전사고 예방 기법 개발을 통해 그늘막의 관리 효용성을 높이고자 한다.

Pergola's Shading Effects on the Thermal Comfort Index in the Summer Middays (여름철 낮 그늘시렁의 차양이 온열쾌적 지표에 미치는 영향)

  • Ryu, Nam-Hyong;Lee, Chun-Seok
    • Journal of the Korean Institute of Landscape Architecture
    • /
    • v.41 no.6
    • /
    • pp.52-61
    • /
    • 2013
  • This study was conducted to investigate the effects of pergola's shading on the thermal comfort index in the summer. The 3 type of pergolas($4m{\times}4m{\times}h2.7m$) which were screened overhead(I)/overhead west(II)/overhead west north(III) plane with reed blind for summer shading and winter wind break, were constructed on the 4th floor rooftop. Thereafter the meteorological variables(air temperature, humidity, radiation, and wind speed) of pergola I, III and rooftop were measured from 14 to 16 August 2013(1st experiment), those of pergola I, II and rooftop were measured from 26 to 28 August 2013(2nd experiment). The effects of pergola's shading on the radiation environment and mean radiant temperature($T_{mrt}$), standard effective temperature($SET^*$) were as follows. The maximum 1 h mean values of differences ${\Delta}$ of the sums of shortwave radiant flux densities absorbed by the human body (${\Delta}K_{abs,max}$) between pergola I, III and nearby sunny rooftop were $-119W/m^2$, $-158W/m^2$, those between pergola I, II and rooftop were $-145W/m^2$, $-159W/m^2$. The maximum 1 h mean values of differences ${\Delta}$ of the sums of long wave radiant flux densities absorbed by the human body (${\Delta}L_{abs,max}$) between pergola I, III and nearby sunny rooftop, were $-15W/m^2$, $-17W/m^2$, those between pergola I, II and nearby rooftop, were $-8W/m^2$, $-7W/m^2$. The response of the direction dependent long wave radiant flux densities $L_1$ on the pergola's shading turned out to be distinctly weaker as compared to shortwave radiant flux densities $K_1$. The pergola's shading leads to a lowering of $T_{mrt}$ and $SET^*$. The peak values of $T_{mrt}$ absorbed by the human body were decreased $16^{\circ}C$ and $21.4^{\circ}C$ under pergola I and III as compared to that of nearby rooftop in the 1st experiment. Those were decreased $18.8^{\circ}C$ and $20.8^{\circ}C$ under pergola I and II as compared to that of nearby rooftop in the 2nd experiment. The peak values of $SET^*$ absorbed by the human body were decreased $2.9^{\circ}C$ and $2.6^{\circ}C$ under pergola I and III as compared to that of nearby rooftop in the 1st experiment. Those were decreased $3.5^{\circ}C$ and $2.6^{\circ}C$ under pergola I and II as compared to that of nearby rooftop in the 2nd experiment. The relative $SET^*$ decrease in pergola II, III compared to nearby sunny rooftop $SET^*$ were lower than that in pergola I, revealing the influence of the wind speed. Therefore it is essential to design pergola to maximize wind speed and minimize solar radiation to achieve comfort in the hot summer. The $SET^*$ under pergola I, III were exceeded $28.7^{\circ}C$ and $30.4^{\circ}C$ which were the upper limit of thermal comfort and tolerable zone during all most daytimes in the 1st experiment(maximum air temperature $37.5^{\circ}C$). The $SET^*$ under pergola I was exceeded $28.7^{\circ}C$ which was the upper limit of thermal comfort zone at 13h, that under pergola II was exceeded $28.7^{\circ}C$ from 8h to 14h, meanwhile the $SET^*$ under pergola I, II were within thermal tolerable zone during most daytimes in the 2nd experiment(maximum air temperature $34.4^{\circ}C$). Therefore to ensure the thermal comfort of pergola for summer hottest days, pergola should be shaded with not only reed blind but also climbing and shade plants. $T_{mrt}$ and $SET^*$ were suitable index for the evaluation of pergola's shading effects and outdoors.

방음벽의 원리

  • 임병덕
    • Journal of KSNVE
    • /
    • v.3 no.3
    • /
    • pp.192-198
    • /
    • 1993
  • 옥외에서 발생하는 소음은 음원과 수음점 사이의 시선을 차단하는 장애물을 설치하는 방법이외에는 달리 방도가 없는 경우가 많다. 빛과 마찬가지로 소리도 시선이 차단되면 소리의 그늘이 지는데 빛의 경우보다는 상당히 강한 음장이 이 그늘에 존재한다. 그늘 영역에서의 음장은 소리의 회절현상에 기인하는 것으로서 회절음장은 곧 방음벽의 차음효과를 좌우한다. 방음벽의 차음효과는 잉여감쇠(excessive attenuation)로 표시되는데 잉여감쇠에 영향을 주는 인자는 방음벽의 기하학적 조건, 음향학적 성질, 설치지면, 주변지형, 풍속 및 온도분포와 같은 기상조건, 음원의 특성 등 다양하지만 가장 기본적인 인자는 기하학적인 조건이다. 본고는 방음벽의 원리에 국한하여 살펴보기 위해 기술된 것이므로 주로 판 또는 쐐기 형태의 물체에 의한 회절현상을 취급하였다.

  • PDF

A Beach Parasol-Type Solar Power System for Utilization of Renewal Energy (신재생 에너지 활용을 위한 백사장 그늘막 태양광 발전 시스템)

  • Lee, Jae-Min;Lee, Chang-Sung
    • Proceedings of the KAIS Fall Conference
    • /
    • 2007.11a
    • /
    • pp.166-169
    • /
    • 2007
  • 본 논문에서는 신재생 에너지 활용을 위한 백사장 그늘막 겸용 태양광 발전 시스템을 제안한다. 영동지역(경포대 해수욕장)에 시스템을 설계 제작하여 설치하고 전력 생산능력과 발전 성능 및 그늘막 이용도를 조사하였다. 제안하는 발전 시스템은 상용전원과 연계하는 방식으로서 해수욕장을 중심으로 한 최대 전력 수요기의 신재생 에너지 활용방안으로서 매우 유용함을 확인하였다.

  • PDF

A taxonomic study on sect. Rhomboidales Kük. and sect. Digitatae Fr. of genus Carex L. subgen. Eucarex Cross & Germ. (Cyperaceae) in Korea (한국산 사초속 사초아속(Carex L. subgen. Eucarex Cross & Germ.) 피사초절과 그늘사초절 식물의 분류학적 연구)

  • Oh, Yong Cha;Kim, Ji Hyun
    • Korean Journal of Plant Taxonomy
    • /
    • v.32 no.3
    • /
    • pp.301-338
    • /
    • 2002
  • Morphological characters of sections Rhomboidales (four taxa) and Digitatae (seven taxa) of the subgen. Eucarex (genus Carex, Cyperaceae) were reexamined. The epidermal patterns of perigynium, achene and leaf were investigated by SEM and LM. Morphological characters such as length and width of stem, leaf, bract, spike, scale, perigynium and achene, and shape of cross-sectioned stem, spike, scale, apex of scale, perigynium, beak and base of perigynium, achene, hair present or absent in perigynium, number of involucre and epidermal pattern of perigynium, achene and leaf(shape of fundamental epidermal cell and cell wall, type of silica body, shape of beak epidermal cell and cell wall in perigynium, subsidiary cell shape, size and frequency of stomatal complex of leaf) were useful for the identification of the observed 11 taxa. According to the current study, examined 11 taxa of sections Rhomboidales and Digitatae were distinct from each other regarding by length of leaf, stem, pistillate scale and perigynium, shape and epidermal cell of perigynium beak. C. lanceolata and C. humilis have been confused due to similar morphological characters. C. lanceolata and C. humilis were distinct, however with respect to from length of stem, leaf ligule present or absent, shape of cross-sectioned stem, epidermal patterns of perigynium, achene and leaf. And C. lanceolata could be distinguished from C. pediformis by shape of perigynium and achene, shape of cross-sectioned of stem, epidermal pattern of perigynium, achene and leaf.

Studies on the Screening for Shade Tolerance in Soybean (대두내륭성계통의 선발에 관한 연구)

  • Kwon, S.H.;Won. J.L.
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.24 no.3
    • /
    • pp.51-57
    • /
    • 1979
  • In order to screen the shade tolerance soybean lines, several important agronomic characters were studied after shade treatment at various growth stages. A severe influence of light reduction on agronomic characters found during the late flowering to pod filling period, and the response to shading was significantly different among the lines tested. Examining of pods number per plant after shade treatment during pod filling stage would be most effective method in the screening for shade tolerance soybean lines.

  • PDF

An Inquiry Over Rayleigh's Pioneering Experiments for the Detection of Shadow, Reflection, Interference, and Diffraction of Sound (소리의 그늘, 반사, 간섭, 회절의 검출을 위한 레일리의 선구적 실험에 대한 연구)

  • Ku, Ja-Hyon
    • The Journal of the Acoustical Society of Korea
    • /
    • v.26 no.2
    • /
    • pp.55-60
    • /
    • 2007
  • The shadow, reflection, interference, and diffraction are proper phenomena concerning sound that is a kind of wave. By the late nineteenth century, similar optical phenomena had been detected already but these phenomena concerning sound had not been convincingly detected. It was Rayleigh who succeeded in detecting those phenomena without any reasonable doubt by the virtue of his original instruments and smart experimental settings. Rayleigh could detect the sound shadow by using the corner of a building and erase the shadow by some reflectors. And he constructed some apparatus similar to Young's interference apparatus famous in optics to detect the sonic interference. Furthermore, he first succeeded in illustrating the acoustical effectiveness of Poisson's disk by which optical diffraction had already been well known, and tested the effect of diffraction by spherical obstacles to ascertain that the result coincided with his theory.