• 제목/요약/키워드: SiB2-Paddy

검색결과 16건 처리시간 0.032초

Simple Biosphere Model 2 (SiB2)의 생태학적 응용 (Application of Simple Biosphere Model (SiB2) to Ecological Research)

  • 김원식;조재일
    • The Korean Journal of Ecology
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    • 제27권4호
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    • pp.245-256
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    • 2004
  • Simple Biosphere model 2(SiB2)는 전구기후모형 (global climate model)의 지표면모형으로서 토양-식생-대기 사이의 에너지, 물 및 이산화탄소 교환을 모의한다. 특히 광합성-기공전도 하부모형을 포함하고 있어, 식물군락의 광합성과 기공개폐기작을 근거로 하여 이산화탄소 동화량 및 물의 증산량을 계산한다. 따라서 SiB2 수치실험 결과를 통해, 육상생태계에 있어서의 이산화탄소 순환, 물수지, 그리고 환경과 식물군락간의 상호관계를 분석할 수 있다. 본 종설은 일례로서 개량된 SiB2-Paddy를 이용하여, 다양한 식생 및 토지 이용을 보이는 태국 챠오플라야강 유역의 하천유출량 변화에 관한 연구를 소개한다. 이는 SiB2 수치실험결과가 지표면 식생의 차이에 따른 유출량의 변화를 예측 가능하며, 이를 통하여 육상생태계에 있어서 식생이 갖는 기능적인 측면을 연구하는데 적합한 모형임을 알 수 있었다. 그러나 SiB2모형을 이용하여 더욱 정확도 높은 육상 생태계 모의를 위해서는 토양호흡, 엽면적지수, 식물군락간 경쟁 그리고 뿌리의 분포를 고려한 토양수분 등을 모의할 수 있는 하부모형의 도입이 필요하다.

물꼬관리 및 완효성 비료 시비가 포장단위 논에서의 영양물질 배출부하량에 미치는 영향 (Effects of Controlled Drainage and Slow-release Fertilizer on Nutrient Pollutant Loads from Paddy Fields)

  • 김계웅;강문성;송인홍;송정헌;박지훈;전상민;장정렬;김진수
    • 한국농공학회논문집
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    • 제58권1호
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    • pp.1-10
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    • 2016
  • The objective of this study was to investigate the effects of farming methods on mass balance from paddy rice. The experiment fields were established at Chunpo-myeon, Iksan-si in the Saemangeum watershed. Experiment was performed during the growing season to assess water and mass balances of the study field in 2013. The three different farming practices were applied: conventional (TR-A), drainage outlet heighten (TR-B) and slow release fertilizer use (TR-C). Drainage amount from TR-B was reduced by 28.5 % compared to the TR-A, while the amount from TR-C was similar to that of TR-A. Overall, nutrient concentration of paddy water were similar among the treatments except for T-P. Mean T-P concentration from TR-C was lower than that from TR-A (p-value<0.05). As the results of mass balance, TR-B appeared to reduce nutrient surface loss, substantially by 30.9 % and 40.8 % for T-N and T-P an compared to TR-A. TR-C treatment also demonstrated nutrient load reduction by 38.2 % and 40.1 % for T-N and T-P. The study results showed that water and fertilizer treatments are effective in surface load reduction respectively from paddy fields, and, long-term monitoring and evaluation is needed to confirm the reduction.

화학분석(化學分析)을 통(通)한 수도(水稻)의 가리적량(加里適量) 추정(推定)에 관한 연구(硏究) (Studies on the Estimation of K2O Requirement for rice through the Chemical Test Data of Paddy Top Soil)

  • 김문규
    • 농업과학연구
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    • 제2권1호
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    • pp.61-100
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    • 1975
  • 수도재배(水稻栽培)에 있어 작중토(作中土)의 유효규산함량(有效珪酸含量), ppm과 유기물함량(有機物含量)% 비(比) $SiO_2$/O.M. 근거(根據)한 N 적량(適量) 추정식(推定式) $Nkg/10a=(4.2+0.096\;SiO_2/O.M.).F$에서 N시비량(施肥量)을 추정(推定) 시용(施用)할 때의 적정(滴定) 가리(加里) 시용량(施用量) 추정식(推定式) $K_2Okg/10a=(K_O/\sqrt{Ca+Mg}-Ks/\sqrt{Ca+Mg})\sqrt{Ca+Mg}{\cdot}47{\cdot}BD$ 단 (但) $K_O/\sqrt{Ca+Mg}=0.03158+0.0007658\;SiO_2/O.M.$ $K_S/\sqrt{Ca+Mg}=Kme/100g/\sqrt{(Ca+Mg)}me/100g$의 타당성(妥當性) 여부(如否)를 판단(判斷)하기 위하여 3수준(水準)의 규회석처리(珪灰石處理)를 주구(主區)로하여 작토중(作土中)의 $SiO_2$/O.M. 비(比)를 증대(增大) 시키고 각주구별(各主區別)로 적정가리시용량(適正加里施用量) 추정식(推定式)에서 추정(推定)한 $K_2O$ 시용량(施用量)과 이에30%를 증비(增肥)하는구(區) 및 적정가리시용추정치(適正加里施用推定値)와는 관계(關係)없이 $K_2O\;8kg/10a$를 시용(施用)하는 3개수준(個水準)의 $K_2O$ 처리구(處理區)를 설정(設定)하여 수도품종(水稻品種) Akibare를 재배(栽培)하는 포장시험(圃場試驗)을 수행(遂行)하고 토양(土壤), 식물체분석(植物體分析) 및 수도(水稻)의 생육(生育)과 수량(收量) 및 수량구성요소(收量構成要素)들을 조사(調査)한 성적(成績)들을 종합검토(綜合檢討)한 결과(結果)를 요약(要約)하면 다음과 같다. 1. 작토중(作土中) 유효규산함량(有效珪酸含量) ppm과 유기물함량(有機物含量)%비(比), $SiO_2$/O.M.에 근거(根據)한 수도(水稻)에 대(對)한 N적량추정식(適量推定式)에서 추정(推定)한 N시용량(施用量)은 수도품종(水稻品種) Akibare의 생육(生育) 및 수량면(收量面)에서 볼 때 과량(過量)이었으며 토양(土壤) 및 식물체(植物體) 분석치(分析値)들에서 검토(檢討)한 결과(結果) $SiO_2$/O.M. 비조절(比調節)의 기본원리(基本原理)는 합당(合當)하나 그 식(式)의 상수(常數) 또는 F값은 변동(變動)되여야 한다고 판단(判斷)되였다. 2. 작토중(作土中)의 K활성도(活性度) 치환성(置換性) 염기 me/100 g비(比) $K/\sqrt{Ca+Mg}$를 조절(調節)하기 위한 $K_2O$ 시비량(施肥量) 추정식(推定式)에서 추정(推定)한 $K_2O$ 시용량(施用量)은 수도품종(水稻品種) Akibare의 생육(生育) 및 수량면(收量面)에서 과량(過量)이였으며 토양(土壤) 및 식물체(植物體) 분석치(分析値)들에서 검토(檢討)한 결과(結果) 조절기준(調節基準)되는 $K_O/\sqrt{Ca+Mg}$의 설정식(設定式) 즉(卽) $K_O/\sqrt{Ca+Mg}=0.03158+0.0007658\;SiO_2/O.M.$의 원리(原理)는 합리적(合理的)이나 기상수(其常數)의 변동(變動)이 필요(必要)하며 $K_S/\sqrt{Ca+Mg}$에 있어서도 토양(土壤)의 K공급능(供給能)을 고려(考慮)할수 있는 새로운 조절기준(調節基準)이 설정(設定)되어야 한다고 판단(判斷)되였다. 3. 수도(水滔)에 대한 $K_2O$ 시용량(施用量) 추정식중(推定式中)의 $K_S/\sqrt{Ca+Mg}$ 조절(調節) 기준(基準)은 K 공급능(供給能)을 대표(代表)할수 있는 작토중(作土中)의 치환성(置換性) Kme/100g에 근거(根據)해서 마음과 같이 설정(設定)함이 보다 합리적(合理的)임을 수도품종(水稻品種) Akibare의 천상수량 $K_2O$ 흡수량면(吸收量面)에서 밝힐수 있었다. 즉 $K_S/\sqrt{Ca+Mg}=0.037+0.78Kme/100g$.

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벼수확 논에서 트랙터견인형 액비살포기의 소요견인력 측정에 관한 연구 (A Study on the Requirement of Tractor Pulling Force of Slurry Manure Spreader for the Utilization in Paddy Field)

  • 오인환;김기덕
    • 한국축산시설환경학회지
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    • 제8권2호
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    • pp.99-106
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    • 2002
  • This study was conducted to improve utilization efficiency of slurry and choose a suitable type of tractor power which can be attached by manure spreader in the paddy field. In the paddy field, the pulling force for the spreader was measured by using a measurement system installed between tractors with and without the spreader. The soil moisture contents at the 0${\sim}$10cm and 10${\sim}$20cm depth of test soil(SiCL) were 28.45% d.b. and 23.47% d.b., respectively in average while Cone Index at l0cm and 15cm depth were 14.5kPa and 16.2kPa, respectively. It was impossible to measure the soil moisture contents and Cone Index below 20cm depth of the soil because the hardness of the soil increased greatly. Thereafter, hard pan of the sampled soil was found at 15${\sim}$20cm depth. While the required power only for the dragged tractor was found to be 3.44kW in the test field, the required pulling powers of tractor considering the pumping were 8.48${\sim}$12.48kW, 12.19${\sim}$16.19kW, 16.96${\sim}$20.96kW, respectively for 2 tons, 3 tons, and 4 tons of tank capacity. As the tank capacity increased, the sinkage of soil were also increased to 7cm, l0cm, and 12cm, respectively for the tractors with 2 tons, 3 tons and 4 tons of tank capacity. Considering about 60% of pulling efficiency of tractor, a tractor which had lower than 25.74kW of pulling power was suitable to pull the spreader and spread the slurry simultaneously for manure spreader with 2 tons of tank capacity. 29.42kW${\sim}$36.78kW of pulling power was found to be optimum for the tractor with 3 tons of tank capacity while over 40.45kW for 4 tons of tank capacity.

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논토양 벼재배에서 제강슬래그의 토양개량제로서의 시용 효과 (Evaluation of Basic Oxygen Furnace Slag as Soil Conditioner in the Rice Paddy Field)

  • 임준택;이인;박인진;이충일;현규환;권병선;김학진
    • 한국토양비료학회지
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    • 제32권3호
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    • pp.295-303
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    • 1999
  • 제강슬래그의 작물재배시 산성토양개량제로서의 이용 가능성을 밝히기 위해 1997년에 공시품종을 동진벼로 하여 순천시 인안동의 간척논, 보성군 유정기 깨시무늬병 대량 발생논 그리고 나주시 남평의 실험논에 무처리, 제강슬래그 4, 8, $12Mg\;ha^{-1}$ 그리고 석회 $2Mg\;ha^{-1}$를 처리하여 벼를 재배하였다. 토양 pH, Ca, Mg, Fe 그리고 규산함량은 제강슬래그 시용량이 증가할수록 높아지는 경향이었다. 토양 pH의 증가는 주로 Ca함량의 증가에서 기인한 것으로 나타났으며 Fe함량은 처리 후 시간이 경과함에 따라 급격히 감소하다가 점차 안정된 값을 보였다. 토양 규산함량도 제강슬래그 시용량이 증가할수록 점차로 높아지는 경향이었고 무처리구나 석회 $2Mg\;ha^{-1}$ 처리구에 비해 유의하게 높아 제강슬래그가 산성토양 개량제, Fe 또는 Si의 공급원으로 이용가능성이 있음을 알 수 있었다. 석회 $2Mg\;ha^{-1}$수준의 토양 Ca함량은 제강슬래그 4 또는 $8Mg\;ha^{-1}$ 처리의 그것과 비슷하여 석회 시용에 의한 토양개량 효과를 얻기 위해서는 석회 시용량의 2~4 배의 제강슬래그를 시용해야 함을 알 수 있었나. 식물체내 무기화학성분 중 식물체내 무기화학성분 중 식물체내 Ca, $SiO_2$ 그리고 Fe함량은 제강슬래그 시용량이 증가할수록 높아지는 경향이었다. 제강슬래그 시용구에서는 생육후기로 갈수록 제강슬래그 4와 $8Mg\;ha^{-1}$ 처리구에서 생육이 양호하였으며 생육후기까지 지속적인 생장이 이루어져 생육후기에는 석회 처리구나 무처리구의 생육량을 능가하였다. 정조수량 및 수량관련 형질은 제강슬래그 4나 $8Mg\;ha^{-1}$ 처리에서 가장 높아 최고 수량을 얻기 위한 제강슬래그 처리수준은 $4{\sim}8Mg\;ha^{-1}$정도로 판단된다.

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기후변화 시나리오에 따른 미래 토지피복변화 예측 및 군집분석을 이용한 지역 특성 분석 (Prediction of Land-cover Change Based on Climate Change Scenarios and Regional Characteristics using Cluster Analysis)

  • 오윤경;최진용;유승환;이상현
    • 한국농공학회논문집
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    • 제53권6호
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    • pp.31-41
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    • 2011
  • This study was conducted to predict future land-cover changes under climate change scenarios and to cluster analysis of regional land-cover characteristics. To simulate the future land-cover according to climate change scenarios - A1B, A2, and B1 of the Special Report on Emissions Scenarios (SRES), Dyna-CLUE (Conversion of Land Use Change and its Effects) was applied for modeling of competition among land-use types in relation with socioeconomic and biophysical driving factors. Gyeonggi-do were selected as study areas. The simulation results from 2010 to 2040 suggested future land-cover changes under the scenario conditions. All scenarios resulted in a gradual decrease in paddy area, while upland area continuously increased. A1B scenario showed the highest increase in built-up area, but all scenarios showed only slight changes in forest area. As a result of cluster analysis with the land-cover component scores, 31 si/gun in Gyeonggi-do were classified into three clusters. This approach is expected to be useful for evaluating and simulating land-use changes in relation to development constraints and scenarios. The results could be used as fundamental basis for providing policy direction by considering regional land-cover characteristics.

논에서 분리한 메탄산화세균 Methylomonas sp. SM4의 특성과 메탄올 생합성 (Characterization and Methanol Biosynthesis of a Methane-Oxidizing Bacterium, Methylomonas sp. SM4, Isolated from Rice Paddy Field Soil)

  • 박성민;;김시욱
    • KSBB Journal
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    • 제32권2호
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    • pp.124-132
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    • 2017
  • A methane-oxidizing bacterium was isolated from rice paddy field soil around Jeollanam-do province, Korea, and characterized. The isolate was gram-negative, orange pigmented and short rod ($1.1-1.2{\times}1.6-1.9{\mu}m$). It was catalase and urease-negative but oxidase-positive. The strain utilized methane and methanol as sole carbon and energy sources. It had an ability to grow with an optimum pH 7.0 and an optimum growth temperature $30^{\circ}C$. The strain was resistant to antibiotic polymyxin B but sensitive to streptomycin, kanamycin, ampicillin, chloramphenicol and rifampicin. The isolate required copper for their growth with concentration range of $2-25{\mu}M$, with an optimum of $10{\mu}M$. Under optimal culture condition, specific cell growth rate and generation time were found to be $0.046hr^{-1}$ and 15.13 hr, respectively. Phylogenetic analysis based on 16S rDNA sequences indicated that the strain formed a tight phylogenetic lineage with Methylomonas koyamae with a value of 99.4% gene sequence homology. So, we named the isolate as Methylomonas sp. SM4. 8.6 mM methanol was accumulated in the reaction mixture containing 70 mM sodium formate and 40 mM $MgCl_2$ (MDH inhibitor) under atmosphere of methane:air (40:60) mixture for 24 hr at $30^{\circ}C$.

수도 IR 667의 적고현상에 미치는 질소의 영향에 관한 연구 (Studies on the Nitrogen Effect in Red Discoloration of Rice IR 667)

  • 곽병화
    • Journal of Plant Biology
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    • 제14권4호
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    • pp.5-13
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    • 1971
  • Pot and paddy field tests were conducted to study red discoloration of rice var. IR 667 leaves with reference to the leading Korean native variety Jinhung and Paldal, with the following results: 1. Minor elements such as Mn, Fe, B, Al, Ca and Si had no influence on the discoloration, but a supply of various soluble nitrogen compounds completely restricted it. The more prosperous the growth of IR 667 with nitrogen, the more severe the discoloration appears when nitrogen absorptin becomes limited. 2. Chlorotic pigments extracted from both IR 667 and Jinhung were compared spectrophotometrically, and found to have different spectral peaks. IR 667 had peak closer to red than Jinhung, indicating the characteristic of the variety. IR 667 was observed to be more sensitive to nitrogen deficiency than Jinhung or the other japonica variety. 3. It was concluded that all the factors limiting nitrogen supply for IR 667 growth, such as low nitrogen application, restriction of root respiration (low temperature, poor drainage, toxic gases or substances in the root zone, etc.) and pest injuries, would result in the appearance of the so-called red discoloration, because of the reduction in nitrogen uptake. Since, the discoloration of IR 667 is varietal characteristic when grown in Korea, control of it may be beneficial cultural practice in increasing grain yield, although the increased succeptibility to pests and a drop in the rate of maturity due to relatively high nitrogen level in the leaves may result in an unexpected drop in yield. It is anticipated that further exploration conducted from practical point of view will establish the relatioknships between the extent of red discoloration, nitrogen availability and grain yield in IR 667.

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지하수 관개에 의한 수도의 멸준양상과 그 방지책에 관한 연구 (Studies on the Rice Yield Decreased by Ground Water Irrigation and Its Preventive Methods)

  • 한욱동
    • 한국농공학회지
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    • 제16권1호
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    • pp.3225-3262
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    • 1974
  • The purposes of this thesis are to clarify experimentally the variation of ground water temperature in tube wells during the irrigation period of paddy rice, and the effect of ground water irrigation on the growth, grain yield and yield components of the rice plant, and, furthermore, when and why the plant is most liable to be damaged by ground water, and also to find out the effective ground water irrigation methods. The results obtained in this experiment are as follows; 1. The temperature of ground water in tube wells varies according to the location, year, and the depth of the well. The average temperatures of ground water in a tubewells, 6.3m, 8.0m deep are $14.5^{\circ}C$ and $13.1^{\circ}C$, respercively, during the irrigation period of paddy rice (From the middle of June to the end of September). In the former the temperature rises continuously from $12.3^{\circ}C$ to 16.4$^{\circ}C$ and in the latter from $12.4^{\circ}C$ to $13.8^{\circ}C$ during the same period. These temperatures are approximately the same value as the estimated temperatures. The temperature difference between the ground water and the surface water is approximately $11^{\circ}C$. 2. The results obtained from the analysis of the water quality of the "Seoho" reservoir and that of water from the tube well show that the pH values of the ground water and the surface water are 6.35 and 6.00, respectively, and inorganic components such as N, PO4, Na, Cl, SiO2 and Ca are contained more in the ground water than in the surface water while K, SO4, Fe and Mg are contained less in the ground water. 3. The response of growth, yield and yield components of paddy rice to ground water irrigation are as follows; (l) Using ground water irrigation during the watered rice nursery period(seeding date: 30 April, 1970), the chracteristics of a young rice plant, such as plant height, number of leaves, and number of tillers are inferior to those of young rice plants irrigated with surface water during the same period. (2) In cases where ground water and surface water are supplied separately by the gravity flow method, it is found that ground water irrigation to the rice plant delays the stage at which there is a maximum increase in the number of tillers by 6 days. (3) At the tillering stage of rice plant just after transplanting, the effect of ground water irrigation on the increase in the number of tillers is better, compared with the method of supplying surface water throughout the whole irrigation period. Conversely, the number of tillers is decreased by ground water irrigation at the reproductive stage. Plant height is extremely restrained by ground water irrigation. (4) Heading date is clearly delayed by the ground water irrigation when it is practised during the growth stages or at the reproductive stage only. (5) The heading date of rice plants is slightly delayed by irrigation with the gravity flow method as compared with the standing water method. (6) The response of yield and of yield components of rice to ground water irrigation are as follows: \circled1 When ground water irrigation is practised during the growth stages and the reproductive stage, the culm length of the rice plant is reduced by 11 percent and 8 percent, respectively, when compared with the surface water irrigation used throughout all the growth stages. \circled2 Panicle length is found to be the longest on the test plot in which ground water irrigation is practised at the tillering stage. A similar tendency as that seen in the culm length is observed on other test plots. \circled3 The number of panicles is found to be the least on the plot in which ground water irrigation is practised by the gravity flow method throughout all the growth stages of the rice plant. No significant difference is found between the other plots. \circled4 The number of spikelets per panicle at the various stages of rice growth at which_ surface or ground water is supplied by gravity flow method are as follows; surface water at all growth stages‥‥‥‥‥ 98.5. Ground water at all growth stages‥‥‥‥‥‥62.2 Ground water at the tillering stage‥‥‥‥‥ 82.6. Ground water at the reproductive stage ‥‥‥‥‥ 74.1. \circled5 Ripening percentage is about 70 percent on the test plot in which ground water irrigation is practised during all the growth stages and at the tillering stage only. However, when ground water irrigation is practised, at the reproductive stage, the ripening percentage is reduced to 50 percent. This means that 20 percent reduction in the ripening percentage by using ground water irrigation at the reproductive stage. \circled6 The weight of 1,000 kernels is found to show a similar tendency as in the case of ripening percentage i. e. the ground water irrigation during all the growth stages and at the reproductive stage results in a decreased weight of the 1,000 kernels. \circled7 The yield of brown rice from the various treatments are as follows; Gravity flow; Surface water at all growth stages‥‥‥‥‥‥514kg/10a. Ground water at all growth stages‥‥‥‥‥‥428kg/10a. Ground water at the reproductive stage‥‥‥‥‥‥430kg/10a. Standing water; Surface water at all growh stages‥‥‥‥‥‥556kg/10a. Ground water at all growth stages‥‥‥‥‥‥441kg/10a. Ground water at the reproductive stage‥‥‥‥‥‥450kg/10a. The above figures show that ground water irrigation by the gravity flow and by the standing water method during all the growth stages resulted in an 18 percent and a 21 percent decrease in the yield of brown rice, respectively, when compared with surface water irrigation. Also ground water irrigation by gravity flow and by standing water resulted in respective decreases in yield of 16 percent and 19 percent, compared with the surface irrigation method. 4. Results obtained from the experiments on the improvement of ground water irrigation efficiency to paddy rice are as follows; (1) When the standing water irrigation with surface water is practised, the daily average water temperature in a paddy field is 25.2$^{\circ}C$, but, when the gravity flow method is practised with the same irrigation water, the daily average water temperature is 24.5$^{\circ}C$. This means that the former is 0.7$^{\circ}C$ higher than the latter. On the other hand, when ground water is used, the daily water temperatures in a paddy field are respectively 21.$0^{\circ}C$ and 19.3$^{\circ}C$ by practising standing water and the gravity flow method. It can be seen that the former is approximately 1.$0^{\circ}C$ higher than the latter. (2) When the non-water-logged cultivation is practised, the yield of brown rice is 516.3kg/10a, while the yield of brown rice from ground water irrigation plot throughout the whole irrigation period and surface water irrigation plot are 446.3kg/10a and 556.4kg/10a, respectivelely. This means that there is no significant difference in yields between surface water irrigation practice and non-water-logged cultivation, and also means that non-water-logged cultivation results in a 12.6 percent increase in yield compared with the yield from the ground water irrigation plot. (3) The black and white coloring on the inside surface of the water warming ponds has no substantial effect on the temperature of the water. The average daily water temperatures of the various water warming ponds, having different depths, are expressed as Y=aX+b, while the daily average water temperatures at various depths in a water warming pond are expressed as Y=a(b)x (where Y: the daily average water temperature, a,b: constants depending on the type of water warming pond, X; water depth). As the depth of water warning pond is increased, the diurnal difference of the highest and the lowest water temperature is decreased, and also, the time at which the highest water temperature occurs, is delayed. (4) The degree of warming by using a polyethylene tube, 100m in length and 10cm in diameter, is 4~9$^{\circ}C$. Heat exchange rate of a polyethylene tube is 1.5 times higher than that or a water warming channel. The following equation expresses the water warming mechanism of a polyethylene tube where distance from the tube inlet, time in day and several climatic factors are given: {{{{ theta omega (dwt)= { a}_{0 } (1-e- { x} over { PHI v })+ { 2} atop { SUM from { { n}=1} { { a}_{n } } over { SQRT { 1+ {( n omega PHI) }^{2 } } } } LEFT { sin(n omega t+ { b}_{n }+ { tan}^{-1 }n omega PHI )-e- { x} over { PHI v }sin(n omega LEFT ( t- { x} over {v } RIGHT ) + { b}_{n }+ { tan}^{-1 }n omega PHI ) RIGHT } +e- { x} over { PHI v } theta i}}}}{{{{ { theta }_{$\infty$ }(t)= { { alpha theta }_{a }+ { theta }_{ w'} +(S- { B}_{s } ) { U}_{w } } over { beta } , PHI = { { cpDU}_{ omega } } over {4 beta } }}}} where $\theta$$\omega$; discharged water temperature($^{\circ}C$) $\theta$a; air temperature ($^{\circ}C$) $\theta$$\omega$';ponded water temperature($^{\circ}C$) s ; net solar radiation(ly/min) t ; time(tadian) x; tube length(cm) D; diameter(cm) ao,an,bn;constants determined from $\theta$$\omega$(t) varitation. cp; heat capacity of water(cal/$^{\circ}C$ ㎥) U,Ua; overall heat transfer coefficient(cal/$^{\circ}C$ $\textrm{cm}^2$ min-1) $\omega$;1 velocity of water in a polyethylene tube(cm/min) Bs ; heat exchange rate between water and soil(ly/min)

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