• 제목/요약/키워드: turf quality

검색결과 119건 처리시간 0.022초

USGA 지반구조에서 한지형 잔디의 여름 고온기 적응력, 색상 및 연중 녹색 유지기간 비교 (Comparison of Summer Turf Performance, Color, and Green Color Retention among Cool-Season Grasses Grown under USGA Soil System)

  • 김경남
    • 한국조경학회지
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    • 제33권5호통권112호
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    • pp.83-93
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    • 2005
  • Research was initiated to investigate turf performance under USGA soil system. USGA system 45 centimeters deep was built with rootzone layer, intermediate layer, and drainage layer. Six turfgrass entries were comprised of 3 blends and 3 mixtures from cool-season grasses (CSG). Turfgrass color and quality ratings were best in spring and fall, especially early May to early July and late August to early November. Kentucky bluegrass (KB) consistently produced the greatest performance, while perennial ryegrass (PR) the poorest. Intermediate turf performance between KB and PR was observed with tall fescue (TF). Among CSG mixtures it increased with KB but decreased with PR. There were considerable variations in summer turf Performance. No summer drought injury was found in KB and TF. However, PR showed poor performance through summer as compared with others. Among mixtures, it decreased with PR. It was suggested that PR mix in less than $20\%$ in the mixtures to have an acceptable quality in summer. Cultural intensity also affected it. With lowering mowing height, KB of rhizomatous-type in growth habit kept good quality, while PR and TF with bunch-type in growth habit poor quality. Mowing quality was greatly different among CSG. KB produced clean-cut surface, but PR unclean one. If had an intermediate mowing quality between KB and PR. A great difference in green color retention was observed among CSG. The longest CSG was PR that kept green for 339 days, while the shortest one TF for 267 days. KB continued to keep green for 290 days. The mixtures kept green in color for 292 to 315 days, depending on turfgrass mixing intensity. The greater the PR in content, the longer the green color duration. These results demonstrate that KB was the best and PR the worst among CSG grown in USGA system under a domestic climate, in regards of turf quality, color, mowing quality, summer turf performance and green color duration. KB and TF are most adequate for high-maintenance and low-maintenance area, respectively. In case of mixtures for high-quality turf, it was desirable to use KB-based mixture with PR of below $20\%$ in seeding rate.

Late Fall Nitrogen Application and Turf Cover for Zoysiagrass (Zoysia japonica) Spring Green-up

  • Oh, Jun-Suk;Lee, Yu-Jin;Lee, Sang-Kook
    • Weed & Turfgrass Science
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    • 제4권4호
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    • pp.383-389
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    • 2015
  • The use of zoysiagrass (Zoysia japonica Steud.) in the transition zone is limited because of a lack of cold hardiness although zoysiagrass has many advantages compared to other warm-season and cool-season grasses. Late-fall N fertilization is often applied for darker green color of turfgrass in early spring and more extensive root growth without rapid top growth. The objective of the study was to evaluate the effects of late fall N application and turf cover for zoysiagrass spring green-up. Clear polyvinyl chloride (PVC) film was used for turf cover. The amount of N applied were 5 and $10g\;N\;m^{-2}$ for the low and high N rate treatments, respectively. Covered zoysiagrass had greater turfgrass color and quality in early spring than non-covered zoysiagrass. The high N rate had 0.6 to 2.3 greater turfgrass quality than the low N rate on 7 of 9 rating dates. Slow-release N as late fall fertilization is more effective for turfgrass color and quality than fast-release N in spring. Turf cover could reduce the period of yellow zoysiagrass, and the earlier time of spring green-up could be advanced by increasing turfgrass quality and growth of zoysiagrass.

Bentgrass 생육에 미치는 Polymer Coated Urea의 효과 (Growth Response of Bentgrass to Polymer Coated Urea)

  • 주영규;이재필
    • 아시안잔디학회지
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    • 제11권2호
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    • pp.97-104
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    • 1997
  • The objective of this study was to observe the differences in growth of creeping bentgrass turf to 'polymer coated urea fertilizer' and 'uncoated urea fertilizer', and to analyze durability of fertilizer effect with the 'polymer coated urea'. The experiment was initiated on June 3, 1996, at the Iowa State University Horticulture Research Station, north of Ames, Iowa. The experiment was conducted on an area of 'Penneagle' Creeping bentgrass(Agrostis palustris) maintained at fair-'way mowing height (1.3cm). The study was repeated at the same arrangement beginning on July 25, 1996. Visual quality data, clipping fresh and dry weight, and nitrogen(N) content in the clippings were taken weekly. Quality of the turf increased with increasing N rate. While quality ratings were higher for turf receiving polymer coated urea than for turf receiving uncoated urea at several times following treatment, but not significant. Fresh and dry clipping weights were quite variable during the trial. Visual quality rating and clipping yields improved with increasing rates of N but these differences were not statically significant between polymer coated and uncoated urea treatment. The durability of fertilizer efficiency in polymer coated urea was not last longer compare with uncoated urea from two weeks after treatment. Higher rates of N application increased the concentration of N in tissue but no significant differences between turf plots receiving polymer coated and uncoated urea. Key words: Polymer coated urea, Creeping bentgrass, Fertilizer, Turfgrass.

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한국과 일본의 학교 잔디운동장 현황 (Present Situation of School Turf Ground in Korea and Japan)

  • 김두환;;이재필;김종빈;김석정
    • 아시안잔디학회지
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    • 제13권2호
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    • pp.91-100
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    • 1999
  • School is the center for life of the students, 30% of Korean population. Students spend half of their daily life at school. However, amenity of school is not so good because school grounds in Korea are covered with soil while in USA and Europe with turf. This study was conducted to provide guidelines for constructing natural turf ground at school. 1. As of 1999, number of school grounds covered with turfgrass in Korea is only 130 out of 10,345. More turfs grounds should be constructed to improve amenity of school. Dept. of Education in Japan supports schools to establish turf grounds. 2. In Korea, only Zoysia japonica is used while in Japan several turfgrasses such as Zlysiagrass, bermudagrass and tall fescue are used. 3. In Korea and Japan, turfgrass at school is planted on soil based rootzone system resulting poor quality by heaby traffic. Recently in Japan, sand based rootzone systems such as Califonia and USGA systems are used at the schools with many students. 4. School turf both in Korea and Japan was managed by students and teachers. Turf quality of schools in Korea was not so good due to the poor management.

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잔디 초종에 따른 Thatch 축적의 차이 (The Differences of Thatch Accumulation by Turfgrass Species)

  • 윤용범;이주삼
    • 아시안잔디학회지
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    • 제4권2호
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    • pp.119-123
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    • 1990
  • The experiment was carried out to analysis the differences between classification by the estimate of survey character and thatch accumulation. The results obtained are summarized as follows:1.BentgrassPenncross: had the highest thatch accumulation. 2.Thatch accumulation of creeping season turf was higher than that of bunch type and thatch accumulation of cool season turf was higher than that of warm season turf. 3.The coverage rate was 43.3%, so turf quality was not good. 4.Bermudagrass(Guymon) had the highest content of lignin in thatch and coverage rate. 5.Species had significant negative correlation with the content of lignin.

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부산물 석고를 이용한 잔디 품질 개선 (Turf(Zoysia japonica L.) Quality Enhancement with By-product Gypsum)

  • 김계훈;홍숙진
    • 한국환경복원기술학회지
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    • 제7권3호
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    • pp.56-63
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    • 2004
  • This study was carried out to find out the effect of by-product gypsum(phosphogypsum, PG) application on enhancement of turf quality. For the first experiment, 10 ton $ha^{-1}$ PG was applied to 1m${\times}$10m (width${\times}$length) Plots with 4 replicates on a sloping area of fairway where turf(Zoysia japonica L.) was grown. Both top- and sub-soil samples were collected before and after treatment and were analyzed for pH, EC(e1ectrica1 conductivity), Ca and Mg contents. At the same time when soil samples were collected, specific color difference sensor value(SCDSV) that represented chlorophyll contents, fresh and dry weight of the turf were determined to find out the effect of PG treatment on turf growth. SCDSV of turf from PG treated plots measured at 98 and 147 days after treatment were significantly higher than those from control. Considering higher fresh and dry weight of leaf per unit area from PG treated plots than that from control, it was concluded that the elevated Ca and S level of the PG treated plots resulted in vigorous leaf growth of turf. For the second experiment 2, 5 and 10 ton $ha^{-1}$ PG were applied to 1m${\times}$10m(width${\times}$length) Plots with 3 replicates at a closer location as was used for the first experiment to find out the appropriate PG application rate. Before and after treatment soil and plant samples were collected and were analyzed by the same way as the first experiment. The pH of all the soil samples collected from PG treated plots at 38 days after treatment was lower than that from control. This trend changed as time passed. However, the pH of the soil from 10 ton $ha^{-1}$ PG treated plot was lower than that from control during the whole period of the second experiment. SCDSV, fresh and dry weight of leaf from PG treated plots at all 3 rates were higher than those from control for the second experiment. PG application to turf will be beneficial for both mass consumption of by-product gypsum and enhancement of turf quality.

규산 및 칼리 시비에 따른 벤트그래스 생육 및 내답압성 반응 (Growth and Wear Tolerance of Creeping Bentgrass as Influenced by Silica and Potassium Fertilization)

  • 김용선;김기선
    • 아시안잔디학회지
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    • 제26권2호
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    • pp.116-122
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    • 2012
  • 본 연구는 규산과 칼리 시용이 골프장 그린용 크리핑 벤트그래스 잔디의 생육과 품질 그리고 내답압성에 미치는 영향을 알아보기 위해 실시되었다. 먼저 규산과 칼리 시용에 따른 잔디반응을 살펴보기 위해서 필드조건에서 잔디품질, 뿌리길이, 잔디밀도와 건물중을 평가하였다. 다음으로 답압빈도에 따른 크리핑 벤트그래스의 잔디생육(뿌리길이, 잔디밀도, 건물중)과 잔디품질 및 토양경도를 조사하였다. 마지막으로 30일간의 답압처리조건에서 규산과 칼리의 내답압성 시비효과를 평가하였다. 규산 및 칼리 처리에 따른 잔디뿌리생육에 있어서 규산을 증가함에 따라 뿌리길이가 증가하였다. 크리핑 벤트그래스의 답압빈도에 따른 잔디품질은 1일 2회 처리구가 가장 우수하였으며, 7회 처리구는 무답압 처리구보다 우수하였다. 그러나 15회 이상 답압 처리구는 잔디품질이 월등히 저하하였다. 30일간의 답압처리시 규산 및 황산칼리의 시비효과는 잔디품질 향상 및 뿌리생육 증진효과가 있었다. 규산과 칼리를 처리하였을 때 잔디품질이 대조구보다 각각 6.38%, 10.25% 상승하였으며 규산과 칼리를 혼용 살포하였을 때 가장 잔디품질이 좋았다. 잔디 뿌리길이는 규산을 살포하였을 때 가장 길었으며 대조구보다 11.4%가 길었다. 따라서 답압이 예상되는 골프장 그린용 벤트그래스에서 잔디의 내답압성 증진을 위해서는 규산과 칼리의 시비가 효과적이었다.

Various Turf Covers for Kentucky bluegrass Growth and Spring Green-up

  • Lee, Sang-Kook
    • Weed & Turfgrass Science
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    • 제2권3호
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    • pp.292-297
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    • 2013
  • Winter turfgrass injury is one of the critical problems of many golf courses in Korea. Turfgrass loss from freezing injury due to low temperature leads to many types of damages including weed invasion, increased herbicide cost, increased soil erosion, and expensive re-establishment. Although Kentucky bluegrass (Poa pratensis L.) which is the most widely used among cool-season grasses in Korea is well known as cold tolerance species, freezing injuries to Kentucky bluegrass during winter are often found. Protecting the turfgrass crown is necessary to recover from low temperature stress in winter because shoots and roots can be recovered from the crown. Turf covers may protect the crowns from direct low temperatures and desiccation. Six different turf covers were installed to cover Kentucky bluegrass during a period of low temperatures. Turf covers had positive effects for spring green-up of Kentucky bluegrass based on the study. Applying any type of turf covers on Kentucky bluegrass resulted in an increase average and minimum temperature compared to the uncovered plot. Among turf covers, clear PVC film without holes produced the longest root length and the highest turfgrass quality.

Turf Grass 초종의 건물수량 및 사료가치 비교연구 (A Comparative Study on Dry Matter Yield and Quality of Turf Grasses)

  • 이형석;이인덕;이중해
    • 한국초지조사료학회지
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    • 제23권3호
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    • pp.187-192
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    • 2003
  • 본 시험은 국내에 도입된 잔디형(turf type) 초종을 공시하여 이들 초종의 수량과 사료가치 등을 상호 비교하여 혼파초지를 조성하는데 활용 가능성을 검토하고자 시험을 수행하였다. 시험은 1999년 9월부터 2002년 12월까지 충남대학교 생명과학대학내 부속 초지시험포장에서 수행하였다. 공시된 잔디형 초종은 Kentucky bluegrass(Newport), red fescue(Salem), creeping bentgrass(Crenshaw), perennial ryegrass(Palmer II), tall fescue(Rebell Jr.) 및 redtop(Barricuda) 등 6초종 이었으며, 얻어진 시험결과는 다음과 같다. 1. 3년 평균 ha당 건물수량은 tall fescue (11,439kg)와 red top(11,312kg)이 다른 초종에 비하여 높았다(P <0.05). 2. 조단백질 함량과 건물소화율이 높은 초종은 creeping bentgrass, perennial ryegrass 및 Kentucky blueuass 등이었으며, 상대적으로 낮은 초종은 redtop, red fescue 및 tall fescue 이었다. 3. 3년 평균 ha당 조단백질 수량(CPDM)은 Kentucky bluegrass(2,329kg)와 redtop(2,300kg)이 높았던 반면에, red fescue(1,646kg)가 가장 낮은 결과를 나타내었다(p<0.05). 가소화건물수량(DDM)은 tall fescue(8,995kg)와 redtop(8,896kg)이 높았던 반면에, creeping bentgrass(7,152kg)와 red fascue(6,966kg)는 낮은 편이었다(p<0.05). 이상의 결과를 종합해 볼 때, 혼파초지에 보조초종으로 기대되는 잔디형 초종은 tall fescue, Kentucky bluegrass 및 redtop 이라 하겠다.

USGA 모래 지반구조에서 캔터키블루그래스, 퍼레니얼 라이그래스, 톨훼스큐 및 혼합구 잔디의 연중 품질 차이 (Seasonal Differences in Turf Quality of Kentucky Bluegrass, Perennial Ryegrass, Tall Fescue and Mixtures Grown under a Pure Sand of USGA System)

  • 김경남;남상용
    • 아시안잔디학회지
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    • 제19권2호
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    • pp.151-160
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    • 2005
  • 모래 $100\%$로 조성된 USGA 지반에서 한지형 초종간 비교 실험한 결과 잔디 품질은 초종에 따라 크게 차이가 나타났으며 그 결과를 요약하면 다음과 같다. 1. 연중 한지형 잔디의 품질은 계절적으로 봄과 가을이 양호하였는데, 특히 5월 초순$\sim$7월 초순과 8월 하순$\sim$11월 초순 사이의 기간이 가장 좋았다. 2. 잔디품질이 가장 우수한 초종은 켄터키블루그래스였고 가장 불량한 초종은 퍼레니얼라이그래스였다. 톨훼스큐의 품질은 켄터키블루그래스와 퍼레니얼라이그래스의 중간정도로 나타났다. 혼합구의 잔디품질은 켄터키블루그래스가 많이 혼합될수록 양호하였고, 반대로 퍼레니얼라이그래스가 많을 수록 불량하였다. 3. 여름 고온기의 잔디 적응력은 초종에 따라 상당히 다르게 나타났다. 켄터키블루그래스와 톨훼스큐는 하고 현상으로 인한 피해가 나타나지 않았지만, 내서성 및 내건성이 약한 퍼레니얼라이그래스로 조성된 잔디는 여름 내내 잔디상태가 불량하였다. 켄터키블루그래스, 퍼레니얼라이그래스 및 톨훼스큐를 혼합하여 식재한 혼합구의 경우 퍼레니얼라이그래스가 많을수록 하고 현상 피해가 크게 나타나 잔디상태가 불량하였다. 4. USGA 모래 지반에서 자란 한지형 잔디의 품질은 국내기후 조건에서 켄터키블루그래스가 가장 양호하였으며, 퍼레니얼라이그래스는 한지형 잔디 중 가장 불량하였다. 5. 고품질이 요구되는 지역에는 연중 품질이 우수하고, 여름 고온기에도 잔디 적응력이 우수한 켄터키블루그래스가 가장 적합하였고, 이보다 품질은 다소 떨어지지만 여름에 하고 현상 피해가 없는 톨훼스큐는 저관리 잔디 지역에 적합한 것으로 사료되었다. 그리고 혼합구 사용 시 하고 현상 피해를 최소화하려면 켄터키블루그래스 위주로 하면서 퍼레니얼라이그래스 혼합율은 $20\%$ 이내로 유지 하는 것이 바람직하다고 판단되었다.