• 제목/요약/키워드: cool-season grasses

검색결과 46건 처리시간 0.019초

축구경기장의 잔디초종 선정에 관한 연구 - 2002년 월드컵 인천경기장 모형돔을 대상으로 - (Turfgrass Selection for Soccer Fields - A Simulation of the Inchon 2002 World Cup Stadium -)

  • 심상렬;정대영
    • 한국조경학회지
    • /
    • 제30권2호
    • /
    • pp.88-94
    • /
    • 2002
  • This study was conducted to select suitable turfarasses for use at 2002 world cup soccer fields in Korea. A 1/1000 scale Inchon worldcup soccer dome was constructed for this research. Species and seeding rates of cool-season grasses used inside and outside the dome were Kentuck bleugrass 10g/$m^2$ (KB), Kentucky bleugrass 10g/$m^2$+ perennial ryegrass 10g/$m^2$ mixture (KB+PR) and Kentucky bleugrass 6g/$m^2$+tall fescue 14g/$m^2$+ perennial ryegrass 4g/$m^2$ mixture (KB+TF+PR). Warm-season grasses also used in this study were Zoysia japonica 'Anyangjungzii' (ZA) and Zoysia japonica 'Zenith'(ZZ) which were layed as sod. So, total 5 types of grasses were used inside and outside the dome. The rootzone was constructed by the multi-layer method(United States Golf Association method). The plots were designed by randomized block design. Cool-season grasses(KB, KB+PR, KB+TF+PR) were found to be better performers for visual rating and visual color than the zoysiagrasses(ZA, ZZ). There were no significant differences in turf performance within cool-season grasses, while ZA showed better turf performances than ZZ within zoysiagrasses. The green color was maintained for about 10 months in the col-season grasses(KB, KB+PR, KB+TF+PR) compared to about 5~6 months in the zoysiagrasses. Root length and density data revealed higher values for KB, KB+PR and KB+TF+PR compared to ZA and ZZ. Root performance of 22 was better than ZA within zoysiagrasses which was the opposite result of turf performances. There was also no significant difference between U performance inside and outside the dome. However, the decreasing tendency of turf quality inside the dome at the end of the study showed that more proper maintenance technology was needed inside the d[me. It could be concluded by this study that cool-season grasses(KB, KB+PR, KB+TF+PR) were more suitable turfgrasses than waits-season zoysiagrasses(ZA, ZZ) for use at 2002 world cup soccer fields in Korea.

축구경기장 토양의 물리적 특성과 잔디 마모특성 - 2002년 월드컵 인천경기장 모형돔을 대상으로 - (Physical Properties of Soil and Turfgrass Wear Characteristics of Soccer Fields - A Simulation of the Inchon 2002 World Cup Stadium -)

  • 심상렬;정대영
    • 한국조경학회지
    • /
    • 제30권1호
    • /
    • pp.96-104
    • /
    • 2002
  • This study was conducted to investigate physical properties of soil and turfgrass wear characteristics within turfgrasses inside or outside the stadium A 1/1000 scale model Inchon world cup soccer d[me was constructed for this test. Turfgrasses planted inside and outside the model dome were; Kentucky bluegrass(KB), Kentucky bluegrass + perennial ryegrass mixture (KB+PR), Kentucky bluegrass + tall fescue + perennial ryegrass mixture (KB+TF+PR), Zoysia japonica 'Anyangjungzii'(ZA) and Zoysia japonica 'Zenith\`(ZZ). The rootzone was constructed by the multi-layer method (United States Golf Association method). Traffic on turfgrasses was treated with a 120kg roller. Surface soil hardness, soil penetration and water infiltration values on cool-season grasses(KB, KB+PR, KB+TF+PR) was found to be better for soccer play compared to zoysiagrasses(ZA, ZZ). No big differences in surface soil hardness, soil penetration and water infiltration values were found between inside and outside of the model dome. Wear damage on cool-season grasses caused by the traffic treatment was low compared to zoysiagrasses. However, there was no difference in wear damage by the traffic treatment within cool-season grasses while wear damage on ZA was higher than on ZZ within zoysiagrasses. It could be concluded that physical properties and wear characteristics on cool-season grasses were much better for soccer play than on zoysiagrasses.

주요 초본식물의 비탈면 파종적기에 관한 연구 (A study on the seeding timing of several herbaceous plants for the slope revegetation works)

  • 김남춘
    • 한국조경학회지
    • /
    • 제25권2호
    • /
    • pp.62-72
    • /
    • 1997
  • This study was conducted to find out the hydroseeding timing of several herbaceous plants for the slope revegetation works. Four native plants and five introduced grasses were used for this experiment and were seeded on the cut slopes by hands in April, May, June, September and October. To identify the best seeding timing, germination percentage, ground covering rate, number of tillers and plant heights were investigated. There were wide differences in germination and ground covering rates of native plants are lower than those of cool-season foreign grasses and they show different germination rates according to seeding timing. Among them, Arundinella hirta var. ciliata shows the most apparent germinatin pattern according to seeding timing. 2. Seeding timing : Native plants tend to germinate well in May and June and cool-season foreign grasses in May and September. But Native plants show extremely low germination rates in autumn, so it is necessary to adjust the seeding rates when seeding in autumn. When seeding in May, it will be possible to use native plants-seed-mixture without using introduced foreign grasses. In sum, the best seeding timing of cool-season foreign grasses are May and September, and warm-season foreign grass is May and June. The best seeding timing of native plants seem to be in May and June.

  • PDF

도로사면녹화를 위한 식생배합에 관한 연구 (Studies on Seed Mixtures for Slope Revegetation of the Road)

  • 이재필;김남춘;홍성관
    • 한국조경학회지
    • /
    • 제23권2호
    • /
    • pp.113-123
    • /
    • 1995
  • This study was conducted to find out appropriate rates of seed mixture of both native and foreign plants in order for stabilization of early afforestation and proper vegetation on road slope. The results are summarized as follows: 1. Characteristics of germination : After seeding, 2 weeks for both Lespedeza bicolor and Lespedeza cuneata, and 4 weeks for both Arundinella hirta and Zoysia japonica were needed for vigorous germination, and 1-4 wee17s for 3 cool-season grasses were spent for gradual germination. 2. Plant height : There was no difference between Lespedeza cuneata and Lespedeza bicolor in plant height by 7 treatments. As mixture rates of cool-season grasses were lowered, plant height of Arundinella hirta became longer. Descending order of co81-season grasses for plant height was Tall fescue, Perennial ryegrass and Creeping redfescue. 3. Number of tillers : The number of tillers tended to increase in the experimental plots where competition was low. 4 Ground cover rate : Ground cover rate was the highest in Mixture IV (96.7%) and was fluctuated from 13.3% on Sept. 13 to 45% on Nev. 3 in Mixture III. Descending order of gronud cover rates in 7 treaments was Mixture IV, Mixture III. Mixture II, Mixture Ⅶ, Mixture V, Mixture Ⅵ, Mixture I, and Mixtur III when measured on Oct. 13 5. Visual assessment: High preferences were observed on Mixture IV and Ⅶ In sun the best seed mixtures were Mixture IV and Ⅶ. It meant that (1) either mixture of 70% the native plants with 30% cool-season graaes or (2) mixture of 80% the native plants with 20% cool-season glasses was best for this study.

  • PDF

도로비탈면 녹화에 사용되는 주요 초목식물의 지하부 생육이 토양안정에 미치는 효과에 관한 연구 (Studies on the soil - erosion- control effect of underground growth of several grasses used to rodside vegetation)

  • 김남춘
    • 한국조경학회지
    • /
    • 제18권2호
    • /
    • pp.45-55
    • /
    • 1990
  • 비탈면에 초목식생이 도입되면 훼손된 인위비탈명의 지표면 녹화를 이룰 뿐 아니라 비탈면의 지표면유거수의 거동에 상당한 영향을 미치어 토양표층의 면상침식이나 불안정한 상태의 토사유출의 억제에 상당히 효과적이며, EH한 토층 깊숙이 뿌리를 내리는 일부 식물에의해서는 표층분양의 만지에도 상당한 효과를 지닌다고 불수 있다. 본 연구의 결과 이러한 기능들에 대한 식물들의 효과들이 상대적으로 비교될 수 있었으며, 이들을 혼파처리시 변화되는 경관의모습을 예측할 수도 있었다. 주요 실험내용별 연구결과를 요약하면 다음과 같다. 1.초기조성속도 외래도입초종들 중에서 한지형 잔디들이 우수하였으나 여름철을 지나면서 부터는 그 세력이 급격히 약화되었다. 반대로 난지형잔디들과 자생식물들은 초기조성속도는 느리나 dufmadfm 지나면서 왕성한 생육을 함으로써, 혼파처리시에 이러한 식물들의 장 . 단점을 이용하는 것이 바람직한 것으로 판단된다. 2. 초종별지성부 및 지하부이 생장량을 비교 분석한 결과 지상부는 Weeping lovegrass 와 쑥 등의 건중량이 많았으며, 지하부의 생장에 있어서는 쑥의 건중량이 가장 많은 것으로 나타났으며, 그 다음이 Weeping lovegrass, 비수리, Creeping redfescue 등이었다. 또한 외래도입토종중 Creeping redfescre와 Tall fescue는 지하부와 지상부의 발달이 비교적 균형을 이루고 있었으며, 식근성 뿌리구조를 지닌 비수리는 비록 근중량은 쑥보다 적으나 깊이 뿌리가 형성 되는 특징이 있었으므로 지표면붕양에는 가장 억제효과가 있는 식물로 생각된다. 3. 초종별 뿌리의 전단력을 조사한 결과 초기에는 Italian ryegrass가 우세하였으나 시간이 경과하면서 부터는 Weepihg lovegrass, 비수리, 쑥 등의 뿌리 전단력이 증대되는 것으로 나타나 이들이 혼합된 혼파처리구들은 높은 측정치들을 기록하였다. 따라서 초기에 조성속도가 빠른 한지형잔디들이 지표면을 피복하도록 하고 여름의 고온기와 장마시기에는 뿌리전단력이 우수한 이러한 초종들로 지표면이 피복되도록 하는 것이 이상적이라 생각된다. 4. 혼파처리간의 토사유출량을 비교한 결과 토사 유출 억제효과는 한지형과 나지형잔디들의 혼합형(MixtureIII)과 자생처리구(MixtureV), Italian ryegrass와 자생식물의 혼합형(MixtureIV)등에서 비교적 낮은 수치를 토사유출량을 기록하였다. 이러한 결과는 자생식물들이 비록 초기생육속도는 외래도입초종에 떨어지지만 토사유출의 억제효과면에서는 이들 외래초종에 필적할 수 있음을 나타낸다고 할 수 있겠다.

  • PDF

혼합파종에 따른 CSG 식생 블록 내 식물의 발아, 피복도 및 근계력 특성 (The Germination, Cover View and Root Potential Properties of Plants within CSG Planting Block by Mixture Seeding)

  • 김영익;연규석;김용성
    • 한국농공학회논문집
    • /
    • 제52권4호
    • /
    • pp.63-71
    • /
    • 2010
  • This study was performed to evaluate the planting properties and root potential of planting block with mixing seeding of herbaceous plants and cool-season grasses in CSG blocks manufactured by cemented sand and materials (CSG) in order to develop environmentally friendly CSG block applied revegetation. Five types of CSG mix designs with cement contents were determined, and the mechanical properties of CSG materials were studied experimentally. To analyze growth properties of plants within CSG block, germination ratio, visual cover, plant height and root potential were measured in four weeks and eight weeks after seeding. The germination regardless mixture seeding of plants and CSG mixproportions started within 4 ~ 7 days after seeding and the germination ratio were in the range of 60 ~ 65 %. The visual cover of kinds of plants evaluated by visual rating system were in the range of 6 ~ 8 in case of seeding the species of cool-season grasses and were in the range of 4 ~ 6 in case of seeding the species of herbaceous plants in four weeks after seeding. The root potential of CSG block with the species of cool-season grasses and herbaceous plants were in the range of $5.7{\times}10^{-3}{\sim}7.7{\times}10^{-3}$ MPa and $2.3{\times}10^{-3}{\sim}6.7{\times}10^{-3}$ MPa in eight weeks after seeding, respectively.

An Overview of Teff (Eragrostis teff Zuccagni) Trotter) as a Potential Summer Forage Crop in Temperate Systems

  • Habte, Ermias;Muktar, Meki S.;Negawo, Alemayehu T.;Lee, Sang-Hoon;Lee, Ki-Won;Jones, Chris S.
    • 한국초지조사료학회지
    • /
    • 제39권3호
    • /
    • pp.185-188
    • /
    • 2019
  • The production of traditional cool season grasses in temperate regions is becoming hampered during summer seasons due to water deficit. Thus, incorporating water use efficient warm season annual grasses are generally considered to fill the gap of summer season forage reduction that would offer considerable flexibility and adaptability to respond to forage demand. Teff (Eragrostis teff Zuccagni) Trotter) is, a C4 drought tolerant warm season annual grass primarily grown for grain production, recently gaining interest for forage production particularly during summer season. Previous reports have showed that teff is palatable and has comparable forage biomass and feed quality as compared to other warm season annual grasses which would make it an alternative forage. However, the available data are not comprehensive to explore the potential of teff as forage, hence further assessment of genotype variability and performance along with compatibility study of teff with forage production system of specific environment is key for future utilization.

난지형 및 한지형 지피식물의 엽색변화에 관한 연구 II. 엽색특성 및 엽수명연장 (A Study on the Seasonal Color Characteristics of Warm- and Cool-Season Grasses II. Color Characteristics and Life-span of Leaves in Turfgrasses and Cover Plants+)

  • 심재성;민병훈;서병기
    • 아시안잔디학회지
    • /
    • 제9권4호
    • /
    • pp.293-316
    • /
    • 1995
  • Nitrogen fertilization and cutting practice were studied on turfgrasses and cover plants to investigate the possibility of maintaining green color during the growing season. Research also involved the effect of the nitrogen on a few morphological characteristics of leaf performance elements which might give an information to coloration and life-span of turf leaves. Treatments in the first experiment undertaken on pot included one N level: 350kgN /ha applied as compound fertilizer in split applications of one-half in mid-May and the rest both in late June and August, and four spring-summer cuts: late May, late June, late July and late August. The soil filled in pot a moderately well-drained sandy loam. In the second experiment(field observation) leaf length and width, inflorescence and flowering, and color performance were also investigated. With nitrogen fertilizer applied on turfs, desirable turf color was maintained during a period of poor coloration in specific seasons such as mid-summer for cool season grasses and late fall for warm season grasses comparing to the non-treatment. However, this was not stimulated by cutting treatment to nitrogen status existed. Cutting effect on coloration was more remarkable in both Korean lawngrass and Manilagrass than in cool season turfgrasses such as Italian rye-grass, perennial ryegrass and tall fescue. Especially down-slide of leaf color in cool season turfgrasses could he detected in mid-summer /early fall season ranging up to mid-September. In early November as well as mid-September, Italian ryegrass, perennial ryegrass and tall fes-cue retained a high level of green color as followed by nitrogen application and cutting treatment, and little detectable variation of leaf color notation between cool season turfgrasses was obtained. However, Korean la'vngrass and Manilagrass failed to retain the green color until early November. Color notations in cool season turfgrasses investigated early November on the final date of the experiment ranged from 5 GY 3/1 to 4/8 in 'Ramultra' Italian ryegrass, 'Reveile' perennial ryegrass and 'Arid' tall fescue, but those in Zoysiagrasses were 7.5 YR 4/8 in Korean lawngrass and 2.5 y 5 /6 in Manilagrass. Life-span of leaves was shorter in Italian ryegrass, perennial ryegrass and tall fescue than in beth Korean lawngrass and Manilagrass with and without nitrogen application. In general, leaves appeared in early May had a long life-span than those appeared in late April or mid-June. Nitrogen application significantly prolonged the green color retaining period in perennial ryegrass, Italian ryegrass, Korean lawngrass and Manilagrass, and this was contrasted with the fact that there was no prolonged life-span of leaves emerging in early May and mid-June in tall fescue. SPAD reading values in 48 turfs and cover plants investigated in the field trial were increasing until late June and again decreasing till September. Increasing trends of reading value could be observed in the middle of October in most of grasses. On the other hand, clovers and reed canarygrasses did not restore their color values even in October. Color differences between inter-varieties, and inter-species occurred during the growing season under the field condition implicated that selection of species and /or cultivars for mixture should be taken into consideration. In Munsell color notation investigated in the final date in the middle of November, 32 cultivars belonged under the category of 5 GY and 10 cultivars under the category of 7.5 GY. This was implying that most of cool season turfs and cover plants grown in the center zone of Korean Peninsula which are able to utilize for landscape use can bear their reasonable green color by early or mid-November when properly managed. The applicable possibilities of SPAD readings and Munsell color notation to determine the color status of turfgrasses and cover plants used in this study were discussed.

  • PDF

경기장 지붕의 막구조가 잔디생육에 미치는 광환경에 대한 영향분석 (Analysis of Light Environment to Turfgrass Growth under the Roof Membrane on Stadium)

  • 주영규;이동익;송규동;심규열
    • 아시안잔디학회지
    • /
    • 제18권3호
    • /
    • pp.119-128
    • /
    • 2004
  • This study was conducted to analyze the effect of roof membrane on light environment that influence on turfgrass growth under domed stadium. Roof structure on experimental plot was constructed with PTFE and PE same as Busan Asiad Main Stadium. Tested turfgrass species were combinations of cool-season grasses(Kentucky Bluegrass, perennial ryegrass, $KBG80+PR20\%,\;KBG33+PR33+Fine fescue33\%)$ and warm-season grasses(zoysiagrass, 'An-yang middle-leaf, 'Zenith', Bermudagrass) established with seeding or sodding. The experimental set-up and research work were initiated November 1999 and finished on August 2000 at near Busan Asiad Main Stadium. By the result of computer simulation of daylight radiant energies on the turf surface were lower than needs of normal sport turf growth. The shortage of radiant resulted pest infection on cool-season grass mixture compared with warm-season. But turf color and density showed the best results on Kentucky bluegrass or its mixture plot. Over all the results showed that the best quality of turfgrass growth was occurred on full sun area, and the next was under PTFE membrane. The application of artificial lighting system may increase the turfgrass growth under domed stadium(partially) covered with roof membrane.