• 제목/요약/키워드: sandy texture

검색결과 259건 처리시간 0.02초

Quick Response 기반의 Moss-Customization 구현을 위한 점포유형에 관한 소비자 태도 연구 (Consumers' Attitude on Textile for Quick Response based Mass-Customization in Marketing Channels)

  • 신상무;이효정
    • 한국의류학회지
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    • 제26권11호
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    • pp.1527-1576
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    • 2002
  • Quick Response based Mass-Customization can be produced and distributed customized goods and services on mass basis in apparel e-business. Because consumers can: t touch and feel the apparel products in e-business, they tend to have the negative buying behavior. The purpose of this study is to investigate the differences of consumer's texture sensibility of apparel products based on marketing channels (on-line/off-line). Two types of questionnaires for on-line and of f-line were used to assess consumer sensibility on apparel fabric. The 8 swatches were selected in regard to the previous literatures. 205 questionnaires for each type (on-line/off-line) were distributed. Statistical devices were t-test, mean and standard deviation with SPSS10.0. The result of this study was showed that there were partially significant differences on consumers' texture sensibility on apparel products between on-line and off-line. Under on-line environment, consumers perceived corduroy as warm, strong, and sandy. taffeta as warm, sandy, and glossy, denim as sandy, and warm, organza as sandy, and thin, satin as sandy, dense, and modern, chiffon as sandy, and flat, velvet as warm, and soft, single jersey as warm, soft, and comfortable. Therefore, apparel firms cooperating based Mass-Customization in e-business have to pay attention to the differences on consumers’ texture sensibility of on-line apparel products from those of off-line.

밭작물 소비수량에 관한 기초적 연구(III)-고추 및 가을 무우- (Basic Studies on the Consumptive Use of Water Required for Dry Field Crops (3) -Red Pepper and Radish-)

  • 김철기;김진한;정하우;최홍규;권영현
    • 한국농공학회지
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    • 제32권1호
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    • pp.55-71
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    • 1990
  • The purpose of this study is to find out the basic data for irrigation plans of red pepper and radish during the growing period, such as total amount of evapotranspiration, coefficent of evapotranspiration at each growth stage, the peak stage of evapotranspiration, the maximum ten day evapotranspiration , optimum irrigation point, total readily available moisture and intervals of irrigation date. The plots of experiment were arranged with split plot design which were composed of two factors, irrigation point for main plot and soil texture for split plot, and three levels ; irrigation point with pH1.7-2.0, pF2.1-2.4 and pF2.5-2.8, at soil texture of sandy soil, sandy loam and silty clay for both red pepper and radish, with two replications. The results obtained are summarized as follows. 1.1/10 exceedance probability values of maximum total pan evaporation during growing period for red peppr and radish were shown as 663.6 mm and 251.8 mm. respectively, and those of maximum ten day pan evaporation for red pepper and radish, 67.1 mm and 46.9 mm, respectively. 2.The time that annual maximum of ten day pan evaporation can he occurred, exists at any stage between the middle of May and the late of August for red pepper, and at any stage between the late of August and the late September for radish. 3.The magnitude of evapotranspiration and its coefficient for red pepper was occurred large in order of pF1.7-2.0 pF2.1-2.4 and pF2.5~2.8 in aspect of irrigation point and the difference in the magnitude of evapotranspiration and of its coefficient between levels of irrigation point was difficult to be found out due to the relative increase in water consumption resulted from large flourishing growth at the irrigation point in lower water content for radish. In aspect of soil texture they were appeared large in order of sandy loam, silty clay and sandy soil for both red pepper and radish. 4.The magnitude of leaf area index was shown large in order of pF2.1-2.4, pF2.5-2.8, and pFl.7-2.0, for red pepper and of pF2.5-2.8, pF2.1-2.4, pFl.7-2.0 for radish in aspect of irrigation point, and large in order of sandy loam, silty clay, sandy soil for both red pepper and radish in aspect of soil texture 5.1/10 exceedance probability value of evapotranspiration and its coefficient during the growing period for red pepper were shown as 683.5 mm and 1.03, respectively, while those of radish, 250.3 mm and 0, 99. respectively. 6.The time that the maximum evapotranspiration of red pepper can be occurred is in the middle of August around the date of ninetieth to hundredth after transplanting, and the time for radish is presumed to be in the late of September, around the date of thirtieth to fourtieth after sowing. At that time, 1/10 exceedance probability value of ten day evapotranspiration and its coefficient for red pepper is assumed to be 81.8 mm and 1.22, respectively, while those of radish, 49, 7 mm and 1, 06, respectively. 7.Optimum irrigation point for red pepper on the basis of the yield of raw matter is assumed to be pFl.7-2.0 for sandy soil, pF2.5-2.8 for sandy loam, and pF2.1-2.4 for silty clay. while that for radish is appeared to be pF2.5-2.8 in any soil texture used. 8.The soil moisture extraction patterns of red pepper and radish have shown that maximum extraction rates exist at 7 cm deep layer at the beginning stage of growth in any soil texture and that extraction rates of 21 cm to 35 cm deep layer are increased as getting closer to the late stage of growth. And especially the extraction rates have shown tendency to be greatest at 21cm deep layer from the most flourishing stage of growth for red pepper and at the last stage of growth for radish. 9.The total readily available moisture on the basic of the optimum irrigation point become 3.77-8.66 mm for sandy soil, 28.39-34.67 mm for sandy loam and 18.40-25.70 mm for silty clay for red pepper of each soil texture used but that of radish that has shown the optimum irrigation point of pF2.5-2.8 in any soil texture used. 12.49-15.27 mm for sandy soil, 23.03-28.13 mm for sandy loam, and 22.56~27.57 mm for silty clay. 10.On the basis of each optimum irrigation point. the intervals of irrigation date at the growth stage of maximum consumptive use of red pepper become l.4 days for sandy soil, 3.8 days for sandy loam and 2.6 days for silty clay, while those of radish, about 7.2 days.

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토성에 따른 마 괴경의 특성과 수량 (Effects of Soil Texture on Tuber Characteristics and Yield in Dioscorea opposita Thunb)

  • 박상구;강동균;김영효;정상환;최부술
    • 한국약용작물학회지
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    • 제8권2호
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    • pp.89-93
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    • 2000
  • 절편씨마를 이용하여 마를 재배할 경우 토성에 따른 괴경의 형태적 특성과 수량성의 차이를 단마 품종 '마1호'와 장마 품종 '안동재래종'을 공시하여 검토한 결과를 요약하면 다음과 같다. 사토에서는 괴경의 길이가 짧고 분기의 발생이 많아 괴경의 모양이 좋지 않았다. 양토와 사양토에서는 사토에 비하여 분기 발생이 적어 괴경의 모양이 양호하였으며, 괴경의 생체수량은 단마가 $21{\sim}27%$, 장마가 각 6% 증수되었고 , 상마수량은 단마가 $45{\sim}55%$, 장마가 $20{\sim}22%$ 증수되었다. 식양토에서 단마는 괴경의 분지 발생이 다소 많았으며, 장마는 괴경의 굵기가 가늘고 만곡되어 모양이 좋지 않았다.

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감초 생육 및 품질에 미치는 재배 토성의 영향 (Effects of Cultural Soil Texture on Growth and Quality of Glycyrrhiza uralensis Fischer)

  • 남상영;김인재;최성열;김민자;김영호;송인규;이광재;박재호;김태중
    • 한국국제농업개발학회지
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    • 제23권5호
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    • pp.531-536
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    • 2011
  • 재배토성이 감초 생육 및 품질에 미치는 영향을 구명코자 2009년부터 2년간 시험을 수행한 결과를 요약하면 다음과 같다. 1. 재배년생별 생육중 경엽은 1년생, 포복경 2년생, 근은 2년생에서 양호한 경향을 보였으며, 토성에 따라서 경엽중은 사양토에서 무거웠고, 초장, 분지수, 경태는 사질식양토에서 우수하였다. 2. 포복경의 길이, 수, 무게 등 생육은 사질식양토 > 사양토 > 양질사토 순으로 좋았다. 3. 주근과 지근의 생육은 양질사토에서 길었으며, 주근경, 지근경은 사양토에서 굵었다. 지근수는 사질식양토에서 다소 많았다. 4. 근 수량은 주근, 지근 등에서 사양토 > 사질식양토 > 양질 사토 순으로 많으며, 1년생과 2년생 근 상품 수량은 사양토에서 양질사토 204 kg/10a 대비 57%, 2년생은 71% 각각 증수하였다. 5. 글리시리진(glycyrrhizinic acid)의 함량은 1년생은 사질식 양토에서 1.62%, 2년생은 사양토에서 1.58%로 가장 높았다.

재배토양의 수분 및 토성이 시호의 생육상황 및 항산화효소 활성에 미치는 영향 (Effect of Soil Moisture and Texture on Saikosaponins Content and Antioxidative Enzyme Activities in Bupleurum falcatum L.)

  • 정형진;신동현;이인중;권순태;임종국;유정민;정규영;김길웅
    • 한국자원식물학회지
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    • 제13권2호
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    • pp.95-103
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    • 2000
  • 토성 및 토양수분에 따른 시호근의 생육특성과 saikosaponin함량 및 항산화효소 활성 변화를 조사해 본 결과, 수분과다 토양에서 는 삼도시 호는 장수시호보다 생육 억제정도가 매우 높았고, 건물중은 과습, 적습, 과건 재배 순으로 높았고, 수분조건에 따른 토성별로는 과건은 식양토, 사양토, 사토 순으로, 적습과 과습시는 사토, 사양토, 식양토 순으로 높았다. 토양수분조건별 saikosapon a, d, c함량은 과건, 적습, 과습 순으로 높았고, 토성간에는 사토, 사양토, 식양토 순으로 높았다. POD 활성은 지상부는 장수시호가 삼도에 비하여 매우 높았고, 토양 수분함량간에는 장수는 과건, 과습, 적습 조건 순으로 높았으나, 삼도시 호는 과건, 적습, 과습 순으로 높았다. SOD활성은 지상부와 지하부 공히 장수시호가 높은 경향이나, 수분조건별로는 과건, 과습, 적습순으로 높았으며, 건조상태의 경우 두 품종 모두 사토에서 높았다. 시호에서 뿌리의 Saikosaponin함량과 POD 및 SOD 함량과는 정의상관을 나타내는 경향이었고 줄기 및 뿌리길이와 POD함량과는 부의 상관을 나타내었다.

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토양용액 채취를 위한 토성별 한계수분함량 설정 (Determination of moisture threshold for solution sampling in different soil texture)

  • 이창훈;김명숙;공명석;김유학;오택근;강성수
    • 농업과학연구
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    • 제41권4호
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    • pp.399-404
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    • 2014
  • Soil moisture is an important factor for the availability and circulation of nutrients in arable soil. The purpose of this study was to set thresholds moisture content on soil nitrate concentration in the solution for real-time diagnosis. Sandy loam, silt loam, and sandy loam was filled with $1.2g\;cm^{-3}$ at Wagner pots, 0, 100, and $200mg\;L^{-1}$ of $KNO_3$ was saturated. Nitrate in standard solution was recovered about 95% by passing the porous cup. Nitrate concentrations in sampling of soil solution were examined by using a porous cup. The soil solution was higher in accordance with sandy loam> silt loam> clay loam, limited water filled pore space for sampling soil solution was 33.7, 56.4, and 62.2%, respectively. Nitrate concentration in the soil solution was negligible at sandy loam and silt loam during sampling periods, which was decreased about 50~82% in clay loam compared to the initial $NO_3$-N concentration in the saturated $KNO_3$ solution. Over limitation of soil solution sampling, soil EC and $NO_3$-N content were increased with the saturated $NO_3$-N concentration, regardless of soil texture (p<0.05). Conclusively, soil solution by using a porous cup was possible, regardless of the soil texture, which was useful for the diagnosis in nitrate concentration of soil solution. However, because nitrate concentration of soil solution in a clay loam changes, it was necessary for careful attention in order to take advantage for the real-time diagnosis of nitrogen management in soil.

신규 채소작물용 번행초의 토성 및 염도에 대한 생육 반응 (Growth responses of New Zealand Spinach [Tetragonia tetragonoides (Pall.) Kuntze] to different soil texture and salinity)

  • 김성기;김인경;이긍주
    • 농업과학연구
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    • 제38권4호
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    • pp.631-639
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    • 2011
  • This research was conducted to investigate potential use of New Zealand spinach (Tetragonia tetragonoides) as a new vegetable crop which will be cultivating in salt-affected soils including reclaimed land. Traditionally New Zealand spinach has been studied to explore functional compound or salt removing potential. To cultivate the crop species in the salt-affected soil widely, it is essential to obtain salt and soil texture responses under the controlled environment. Fifty nine New Zealand spinach ecotypes native to Korean peninsula first collected over seashore areas, and primitive habitat soil environment was evaluated by analyzing soil chemical properties from 32 locations. Different textures of sandy, silt loam, and sandy loam soils were prepared from nearby sources of sea shore, upland and paddy soils, respectively. Target salinity levels of 16.0 dS/m, 27.5 dS/m, 39.9 dS/m, and 52.4 dS/m in electrical conductivity (ECw) were achieved by diluting of 25, 50, 75, 100% (v/v) sea water to tap water (control, 0.6 dS/m), respectively. Various measurements responding to soil texture and irrigation salinity included plant height, root length, fresh weight (FW), dry weight (DW), leaf parameters (leaf number, leaf length, leaf width), lateral branching, and inorganic ion content. was found to adapt to diverse habitats ranging various soil chemical properties including soil pH, organic matter, exchangeable bases, EC, and cation exchange capacity (CEC) in Korea. Responding to soil texture, New Zealand spinach grew better in silt loam and sandy loam soil than in sandy soil. Higher yield (FW and DW) seemed to be associated with branch number (r=0.99 and 0.99, respectively), followed by plant height (r=0.94 and 0.97, respectively) and leaf number (r=0.89 and 0.84, respectively). Plant height, FW, and DW of the New Zealand spinach accessions were decreased with increasing irrigation salinity, while root length was not significantly different compared to control. Based on previous report, more narrow spectrum of salinity range (up to 16 dS/m) needs to be further studied in order to obtain more accurate salinity responses of the plant. As expected, leaf Na content was increased significantly with increasing salinity, while K and Ca contents decreased. Growth responses to soil texture and irrigation salinity implied the potential use of New Zealand spinach as a leafy vegetable in salt-affected soil constructed with silt loam or sandy loam soils.

Effect of Soil Textures on Fruit Yield, Nitrogen and Water Use Efficiencies of Cucumber Plant as Affected by Subsurface Drip Fertigation in the Greenhouse

  • Lim, Tae-Jun;Park, Jin-Myeon;Park, Young-Eun;Lee, Seong-Eun;Kim, Ki-In
    • 한국토양비료학회지
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    • 제48권5호
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    • pp.372-378
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    • 2015
  • Growing crops under different soil textures may affect crop growth and yield because of soil N availability, soil N leaching, and plant N uptake. The objective of this study was to evaluate effects of three different soils (sandy loam, loam, and clay loam) on cucumber (Cucumis sativus L.) yield, nitrogen (N) use efficiency (NUE), and water use efficiency (WUE) by subsurface drip fertigation in the greenhouse. Three different soil textures are sandy loam, loam, and clay loam with 3 replications. The dimension of each lysimeter was $1.0m(W){\times}1.5m(L){\times}1.0m(H)$. Cucumber was transplanted on April $8^{th}$ and Aug $16^{th}$ in 2011. The subsurface drip line and tensiometer was installed at 30 and 20 cm soil depth, respectively. An irrigation with $100mg\;NL^{-1}$ concentration was automatically applied when the tensiometer reading was 10 kPa. Volumetric soil water content for cucumber cultivation was the highest in 30 cm soil depth regardless of soil texture and was lowered when soil depth was deeper. The volumetric soil water contents at soil depths of 10, 30, 50, and 70 cm were the highest at clay loam, followed by loam, and sandy loam. The growth of cucumber at the $50^{th}$ day after transplanting was the lowest at sandy loam. Cucumber fruit yields were similar for all three soil textures. The highest amount of water use at sandy loam was observed. Nitrogen and water use efficiencies for cucumber were higher for clay loam, followed by loam and sandy loam, while the amount of N leaching was the greatest under sandy loam, followed by loam, and clay loam. Overall, growing cucumber on either loam or clay loam is better than sandy loam if subsurface drip fertigation is used in the greenhouse.

토성(土性)과 용적밀도(容積密度)가 최소생육제한수분범위(最小生育制限水分範圍)에 미치는 영향(影響) (Effects of Soil Texture and Bulk Density on the Least-Limiting Water Range)

  • 조인상;현병근;조현준;장용선;신제성
    • 한국토양비료학회지
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    • 제30권1호
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    • pp.51-55
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    • 1997
  • Three soils, sandy loam, loam and silty clay loam, were selected and three inches soil cores with 4 bulk density(BD) levels were made by compressing the soils wetted with 3 levels water. Mechanical and water characteristics were measured and analyzed the mechanical resistance limiting water, available water and least-limiting water range. Mechanical resistance limiting water(MRLW) were appeared at higher bulk density than $1.6Mg/m^3$ in sandy loam, and $1.4Mg/m^3$ in loam and silty clay loam. The least-limiting water ranges were sharply decreased at the bulk density $1.6Mg/m^3$ in sandy loam and loam, $1.4Mg/m^3$ in silty clay loam. There were big deferences between available water contents and least limiting water ranges in finer texture and higher bulk density soils.

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라이시미터 조건에서 토성이 벼의 생육 및 논토양의 지하삼투수량에 미치는 영향 (Effect of Soil Texture on Rice Growth and Paddy Soil Percolation under Lysimeter Condition)

  • 채제천;김성원
    • 한국작물학회지
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    • 제46권3호
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    • pp.236-240
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    • 2001
  • 논토양의 토성에 따른 벼의 수량, 관개용수량 및 지하삼투수량의 차이를 구명코자 사양토, 식양토, 식토 등 3종류의 토성에서 1999년과 2000년 라이시미터(lysimeter) 조건에서 실험한 결과는 다음과 같다. 1. 벼의 초장과 분얼 및 쌀 수량은 토성 처리간 유의한 차이가 없었다. 2. 벼 생육기간 중 총관개용수량은 1년차에는 식양토, 사양토, 식토 순으로 각각 3,306, 2,650, 2,002 l/$m^2$ 이었고 2년차에는 사양토, 식양토, 식토 순으로 각각 5,281, 4,984, 3,968 l/$m^2$이었다. 3.벼 재배기간 중 총지하삼투수량은 1년차에는 식양토, 사양토, 식토가 각각 2,141, 1,228, 862 l/$m^2$ 이었고, 2년차에는 사양토, 식양토, 식토에서 각각 4,448, 3,833, 2,925 l/$m^2$이었다. 4. 지표면하 10cm까지의 깊이에 분포하는 벼 뿌리의 비율은 사양토 56.0%, 식양토 61.4%, 식토 72.0%로 식토일수록 표층부 분포 비율이 높았다. 5. 논토양에서 지하삼투수량은 토성의 영향도 있으나 토양 중 벼 뿌리 생장량의 영향도 있어서, 뿌리 생장량이 많았던 처리구의 지하삼투수량이 증가하는 것으로 나타났다.

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