23 research outputs found

    A Study on Output Characteristics of Wave Energy Conversion System combined with Breakwater depending on Geometry of Seawater Entrance Section

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    This paper deals with the characteristics of wave energy conversion system combined with breakwater including an air-driven wells turbine and cross-flow water turbine. The wave energy converter with Oscillating Water Column(OWC) has mostly been studied to raise energy conversion efficiency. The aim of this research is to verify the effectiveness of curved seawater entrance section of OWC chamber through both numerical simulation using LabVIEW and scale model experiment in the 2-D wave tank. Incident wave was assumed as sinusoidal, and other minor losses except for entrance loss were ignored, and also cavity resonance wasn't considered in the simulation. The simulation was conducted at 2.0sec in wave period and 0.13m in wave height. And 5 different entrance loss coefficients were used as parameters:0.01,0.02,0.1,0.5. The simulation result which contains the velocity of free-water surface, the vertical displacement of water and the available energy to the turbine shows that the effect of entrance loss coefficient is not significant under the assumptions as mentioned above. Scale model with 4 different types of entrance section was used in the experiment. The model contains a cross-flow water turbine and a wells turbine. Experimental conditions were almost same as numerical simulation at 2.0sec in wave period, 0.13m in wave height, 0.7m in depth of water. Turbine RPM, output voltage from DC generator, water level in the OWC chamber and air pressure under the wells turbine were measured by CompactRIO system based on LabVIEW. The most obvious difference found in the experimental results depending on the geometry was a hydrodynamic performance from cross-flow water turbine: it was about 25%. Through the model experiment, it can be inferred that an elliptic curved surface whose horizontal distance is longer than vertical distance can improve wave energy conversion efficiency by reducing head loss in the fixed OWC chamber. The experimental results provide a blueprint for the inlet geometry design of wave energy conversion system combined with breakwater.Nomenclatures โ…ฒ List of tables โ…ต List of figures โ…ถ Abstract โ…น ์ œ 1 ์žฅ ์„œ ๋ก  1 1.1 ์—ฐ๊ตฌ ๋ฐฐ๊ฒฝ 1 1.2 ์—ฐ๊ตฌ ๋™ํ–ฅ 2 1.3 ์—ฐ๊ตฌ ๋‚ด์šฉ ๋ฐ ๊ตฌ์„ฑ 3 ์ œ 2 ์žฅ ํŒŒ๋ ฅ๋ฐœ์ „์‹œ์Šคํ…œ 4 2.1 ํŒŒ๋ž‘์—๋„ˆ์ง€ 4 2.1.1 ํŒŒ๋ž‘์˜ ํŠน์„ฑ 4 2.1.2 ์ˆ˜์‹ฌ์— ๋”ฐ๋ฅธ ํŒŒ๋ž‘์˜ ๋ถ„๋ฅ˜ 5 2.2 ๋ฐฉํŒŒ์ œ ๋ถ€์ฐฉํ˜• ํŒŒ๋ ฅ๋ฐœ์ „์‹œ์Šคํ…œ ๊ตฌ์„ฑ 8 2.2.1 ์ง„๋™์ˆ˜์ฃผ ์ฑ”๋ฒ„ 9 2.2.2 ๊ณต๊ธฐํ„ฐ๋นˆ 10 2.2.3 ํšก๋ฅ˜ํ„ฐ๋นˆ 11 2.2.4 ํ•ด์ˆ˜์œ ์ž…๊ตฌ ํ˜•์ƒ 12 ์ œ 3 ์žฅ ์‹œ๋ฎฌ๋ ˆ์ด์…˜ 13 3.1 ๊ฐœ์š” 13 3.2 ์ˆ˜ํ•™์  ๋ชจ๋ธ๋ง 14 3.3 ํ”„๋กœ๊ทธ๋žจ ๊ตฌ์„ฑ 18 3.4 ์‹œ๋ฎฌ๋ ˆ์ด์…˜ ๊ฒฐ๊ณผ 20 ์ œ 4 ์žฅ ๋ฐฉํŒŒ์ œ ๋ถ€์ฐฉํ˜• ํŒŒ๋ ฅ๋ฐœ์ „ ๋ชจํ˜•์‹คํ—˜ 22 4.1 ์‹คํ—˜์กฐ๊ฑด 22 4.2 ๋ชจํ˜•์‹คํ—˜ ์žฅ์น˜ 23 4.2.1 ์กฐํŒŒ์ˆ˜์กฐ 23 4.2.2 ๋ฐฉํŒŒ์ œ ๋ถ€์ฐฉํ˜• ํŒŒ๋ ฅ๋ฐœ์ „ ๋ชจํ˜• 23 4.2.3 ๋ฐ์ดํ„ฐ์ˆ˜์ง‘ ์žฅ์น˜ 27 4.3 ๋ฐ์ดํ„ฐ๋ถ„์„ ํ”„๋กœ๊ทธ๋žจ 33 ์ œ 5 ์žฅ ์‹คํ—˜ ๋ฐ ๊ณ ์ฐฐ 42 5.1 ์›ฐ์ฆˆํ„ฐ๋นˆ๊ณผ ํšก๋ฅ˜ํ„ฐ๋นˆ์˜ ํšŒ์ „์†๋„ 42 5.2 ๋ฐœ์ „๊ธฐ ์ถœ๋ ฅ ์ „์•• 46 5.3 ์ง„๋™์ˆ˜์ฃผ ๋‚ด๋ถ€ ์ˆ˜์œ„๋ณ€ํ™” 50 5.4 ์›ฐ์ฆˆํ„ฐ๋นˆ ์ž…๊ตฌ์˜ ๊ณต๊ธฐ ์†๋„ 53 5.5 ์ง„๋™์ˆ˜์ฃผ ๋‚ด๋ถ€ ์ž์œ ์ˆ˜๋ฉด์˜ ์†๋„ 56 ์ œ 6 ์žฅ ๊ฒฐ ๋ก  59 ์ฐธ ๊ณ  ๋ฌธ ํ—Œ 6

    Experimental Study on Performance of Wave Energy Converter System with Counter-Weight

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    Movable body type wave energy converter system with counter-weight converts energy from heave motion of buoy to rotatory power. Measuring rotatory power is conducted to evaluate the energy conversion efficiency of wave energy converter, which is installed on 2-dimensional ocean generating basin with power take-off system composed torque sensor and brake. At the same time, this study analyzes performance of energy conversion according to wave height and weight condition of both flywheel and counter-weight by changing load torque and wave period. Therefore, this research is able to be useful basic material such as optimal design of movable body type wave energy converter and improving its energy conversion efficiency as well.List of Tables List of Figures Abstract 1. ์„œ๋ก  1.1 ์—ฐ๊ตฌ๋ฐฐ๊ฒฝ 1.2 ๊ธฐ์กด์—ฐ๊ตฌ 1.3 ์—ฐ๊ตฌ๋‚ด์šฉ 2. ์นด์šดํ„ฐ์›จ์ดํŠธ ํŒŒ๋ ฅ๋ฐœ์ „์‹œ์Šคํ…œ 2.1 ํŒŒ๋ ฅ๋ฐœ์ „์‹œ์Šคํ…œ ๊ตฌ์„ฑ 2.2 ํŒŒ๋ ฅ๋ฐœ์ „์‹œ์Šคํ…œ ์›๋ฆฌ 3. ์‹คํ—˜๋ฐฉ๋ฒ• ๋ฐ ๋ชจํ˜• 3.1 ์‹คํ—˜์กฐ๊ฑด 3.2 ๋ชจํ˜• 3.3 ์‹คํ—˜์žฅ์น˜ ๋ฐ ๋ฐฉ๋ฒ• 3.4 ๋ฐ์ดํ„ฐ ๊ณ„์ธก ๋ฐ ์ฒ˜๋ฆฌ๋ฐฉ๋ฒ• 4. ์—ฐ๊ตฌ ๊ฒฐ๊ณผ ๋ฐ ๊ณ ์ฐฐ 4.1 ์นด์šดํ„ฐ์›จ์ดํŠธ์˜ ์˜ํ–ฅ 4.2 ํ”Œ๋ผ์ดํœ ์˜ ์˜ํ–ฅ 4.3 ํŒŒ๊ณ ์˜ ์˜ํ–ฅ 4.4 Capture Width Ratio 4.5 ๊ณ ์ฐฐ 5. ๊ฒฐ๋ก  ๋ฐ ํ–ฅํ›„๊ณผ์ œ 5.1 ๊ฒฐ๋ก  5.2 ํ–ฅํ›„๊ณผ์ œ Reference Bibliography ๊ฐ์‚ฌ์˜

    (An) experimental study on the forensic odontological method in identification of death by drowning : studies on intrusion of water into pulp tissue

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    ์น˜์˜ํ•™๊ณผ/์„์‚ฌ[ํ•œ๊ธ€] ์ต์ˆ˜์—๋Š” ํŠน์ •์ง€์—ญ์— ํŠน์ดํ•œ ์œ ๊ธฐ์งˆ ๋˜๋Š” ๊ด‘๋ฌผ์งˆ์ด (ํ˜„ํƒ์•ก ๋˜๋Š” ์šฉ์•ก์ƒ์œผ๋กœ)ํฌํ•จ๋  ์ˆ˜ ์žˆ๋‹ค. ๋”ฐ๋ผ์„œ, ์กฐ๋ฅ˜, ๊ทœ์กฐ๋ฅ˜, ๋ชจ๋ž˜, ์ง„ํ™ ๊ทธ๋ฆฌ๊ณ  ๋ถ„ํ•ด๋ฌผ์งˆ๊นŒ์ง€๋„ ์ต์‚ฌ์˜ ์žฅ์†Œ๋ฅผ ์ง€์ ํ•˜๋Š”๋ฐ ์‚ฌ์šฉ๋  ์ˆ˜ ์žˆ๋‹ค. ์ต์‚ฌ์ฒด์—๋Š” ๋ง๋‹จํ๋ถ€์ข…์ด ์žˆ์–ด, ๋‹จ๋ฐฑ์งˆ๊ณผ ์ต์ˆ˜๊ฐ€ ํ์ˆœํ™˜์„ ๋– ๋‚˜ ํํฌ์†์œผ๋กœ ๋“ค์–ด๊ฐ€๊ฒŒ ๋œ๋‹ค. Swann์˜ ์‹คํ—˜ (deuterium oxide๋ฅผ ์ถ”์ ์ž๋กœ ์‚ฌ์šฉํ•œ)์€, ์ต์‚ฌ์ฒด์—์„œ๋Š” ์ต์‚ฌ์˜ ๊ณผ์ •์ค‘์— ์ต์ˆ˜๊ฐ€ ๋Œ€์ˆœํ™˜๊ณ„๋ฅผ ์ถœ์ž…ํ•ญ์œจ ์‹œ์‚ฌํ•˜๊ณ  ์žˆ๋‹ค. ๋ฐ˜๋ฉด, ๊ต์‚ดํ•œ ํ† ๋ผ๋ฅผ ๋ถ„์‡„๊ทœ์กฐ์˜ ์ง™์€ ํ˜„ํƒ์•ก์ด ํฌํ•จ๋œ ์ต์ˆ˜์— ํˆฌ์ˆ˜ํ•œ, Crosfill๊ณผ Holden์˜ ์กฐ์‚ฌ๋Š” ์ด๋Ÿฌํ•œ ๋ฌผ์งˆ๋“ค์ด ํŽ˜ํฌ๊ฐ•๋‚ด์— ์กด ์žฌํ•จ์„ ๋ณด์—ฌ์ฃผ์—ˆ๋‹ค( 3๋งˆ๋ฆฌ์˜ ํ† ๋ผ์ค‘ 2๋งˆ๋ฆฌ์—์„œ). ์ด๋Ÿฌํ•œ ๊ฒฐ๊ณผ๋กœ ๋ณผ ๋•Œ, ์ต์‚ฌ์ฒด๋กœ์„œ ๋ฐœ๊ฒฌ๋œ ์‹œ์ฒด์˜ ํํฌ๋‚ด์— ์ด์ข…์˜ ์ž…์ž๊ฐ€ ์žˆ๋‹ค๋Š” ์†Œ๊ฒฌ์€ ์ƒ์‹œ์— ํˆฌ์ˆ˜๋˜์—ˆ๋‹ค๊ณ  ์ฆ๋ช…ํ•˜๊ธฐ์—” ๋งŒ์กฑ์Šค๋Ÿฝ์ง€ ๋ชปํ•˜๋‹ค. ์ด๋Ÿฌํ•œ ๋ฌธ์ œ์ ์„ ์ œ๊ฑฐํ•˜๊ธฐ ์œ„ํ•ด ์ €์ž๋Š” ํ•ด๋ถ€ํ•™์  ๊ตฌ์กฐ๊ฐ€ ํŠน์ดํ•œ ๊ฐœ์˜ ์น˜์ˆ˜๋ฅผ ์„ ํƒํ•˜์—ฌ, ๋‹ค์Œ์˜ ์„ฑ์ ์„ ์–ป์—ˆ๋‹ค. 1 .์‹คํ—˜๊ทœ์กฐ์ˆ˜ ๋‚ด์—์„œ ์ต์‚ฌ์‹œํ‚จ ์˜ˆ์—์„œ์˜ ์น˜์ˆ˜๋‚ด ๊ทœ์กฐ๋ฆฝ์˜ ๋ถ„ํฌ๋ฅผ ์กฐ์‚ฌํ•˜์˜€๋‹ค. 2. ๊ต์‚ดํ›„ ๊ทœ์กฐ์ˆ˜ ๋‚ด์— ํˆฌ์ˆ˜ํ•œ ์˜ˆ์—์„œ๋Š” ์น˜์ˆ˜๋‚ด ๊ทœ์กฐ๋ฆฝ์„ ๋ณผ ์ˆ˜ ์—†์—ˆ๋‹ค. 3. Gentiana Violet์šฉ์•ก์œผ๋กœ์จ๋Š” ์ต์‚ฌํŒ๋‹จ์ด ๋ถˆ๊ฐ€๋Šฅํ•  ์ •๋„๋กœ ์†Œ๋Ÿ‰์˜ ์ต์ˆ˜๋งŒ์ด ์นจํˆฌ๋จ์ด ์ถ”์ •๋œ๋‹ค. An Experimental Study on the Forensic Odontological Method in Identification of Death by Drowning - Studies on Intrusion of Water into Pulp Tissue- SUNG HOON HAN, D.D.S. Dept of Dental Science, The Graduate School, Yonsei University (Directed by Assistant Professor : Chong Youl Kim, D.D.S. M.S.D., Ph. D.) Drowning media may contain organic or mineral matter(in suspension or solution) which are characteristic of a particular locality or source. Thus algae diatoms, sand,mud, and even dissolved matter, may be used to indicate the palce where drowning has cooerred. In drowning there is a terminal pulmonary oedema in which both protein and fluids leave the pulmonray circulation and enter the alveoli. Swann;s experiment (using deuterium oxide as a tracer) show that water leaves and enters the circulation during the drowning process in drowning . On the other hand, Crosfill and Holden's investigations on rabbits, immersed after death water containing a dense suspension of crush diatoms, have shown the presence of these bodies in the alveolar spaces (two our of three rabbits). In the view of this results, it appears that the finding of foreign particles in the alveolae of the lung of a body found drowned cannot be regarded as satisfactory proof that immersion had occurred during life. So as to get rid of the above problem, the author selected dental pulp tissue of dog, specially structured anatomically, and obtained the following results. 1. In the case of drowning in water containing a dense sespension of crush diatoms, the distribution of diatoms in the pulp tissue was studied. 2. In the cases of experimental animals which were strangulated first and then thrown into water, the distribution of diatoms in the pulp tissue was not observed. 3. It was very hard to determine drowning by Gentiana Violet solution. [์˜๋ฌธ] Drowning media may contain organic or mineral matter(in suspension or solution) which are characteristic of a particular locality or source. Thus algae diatoms, sand,mud, and even dissolved matter, may be used to indicate the palce where drowning has cooerred. In drowning there is a terminal pulmonary oedema in which both protein and fluids leave the pulmonray circulation and enter the alveoli. Swann;s experiment (using deuterium oxide as a tracer) show that water leaves and enters the circulation during the drowning process in drowning . On the other hand, Crosfill and Holden's investigations on rabbits, immersed after death water containing a dense suspension of crush diatoms, have shown the presence of these bodies in the alveolar spaces (two our of three rabbits). In the view of this results, it appears that the finding of foreign particles in the alveolae of the lung of a body found drowned cannot be regarded as satisfactory proof that immersion had occurred during life. So as to get rid of the above problem, the author selected dental pulp tissue of dog, specially structured anatomically, and obtained the following results. 1. In the case of drowning in water containing a dense sespension of crush diatoms, the distribution of diatoms in the pulp tissue was studied. 2. In the cases of experimental animals which were strangulated first and then thrown into water, the distribution of diatoms in the pulp tissue was not observed. 3. It was very hard to determine drowning by Gentiana Violet solution.restrictio

    Experimental studies on the effect of cariogenic diet and salivation on the dental caries in albino rats

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    ์น˜์˜ํ•™๊ณผ/๋ฐ•์‚ฌ[ํ•œ๊ธ€] ์น˜์•„์šฐ์‹์ฆ์˜ ๋ฐœ์ƒ์›์ธ๊ณผ ๊ธฐ์ „ ๋ฐ ์˜ˆ๋ฐฉ๊ด€๋ฆฌ์˜ ์›๋ฆฌ๋ฅผ ๊ตฌ๋ช…ํ•˜๋ ค๋Š” ๋งŽ์€ ๋…ธ๋ ฅ์˜ ๊ฒฐ๊ณผ ์—ฌ๋Ÿฌ ๊ฐ€์ง€ ๋ณต์žกํ•œ ์ธ์ž๋“ค์ด ๊ด€์—ฌํ•จ์ด ๋ฐํ˜€์กŒ์œผ๋ฉฐ ๊ทธ ์ค‘์—์„œ๋„ ์‹์ด์˜ ์„ฑ๋ถ„ ๋ฐ ์„ธ๊ท ์˜ ์—ญํ• ์ด ์ค‘์š”ํ•จ์ด ์ธ์ง€๋˜์—ˆ๋‹ค. ๊ทธ๋Ÿฌ๋‚˜ ์•„์ง๊ป ๋ฐํ˜€์ง€์ง€ ์•Š์€ ๋ถ€๋ถ„์ด ๋งŽ์•„ ์‹คํ—˜๋™๋ฌผ์— ์˜ํ•œ ์น˜์•„์šฐ์‹ ๋ฐœ์ƒ์— ๊ด€ํ•œ ์—ฐ๊ตฌ๊ฐ€ ๊ณ„์† ๋ณด๊ณ ๋˜์–ด ์˜ค๊ณ  ์žˆ๋‹ค. ์น˜์•„์šฐ์‹ ๋ฐœ์ƒ์— ๊ด€ํ•œ ์—ฐ๊ตฌ๋ฅผ ํ•จ์— ์žˆ์–ด ์‹คํ—˜๋™๋ฌผ๋กœ์„œ๋Š” ๋ฐฑ์„œ๊ฐ€ ๊ฐ€์žฅ ์ ํ•ฉํ•จ์ด ์•Œ๋ ค์ง„ ๋ฐ” ์žˆ์–ด ์ €์ž๋Š” ์—ฐ์„ธ๋Œ€ํ•™๊ต ์˜๊ณผ๋Œ€ํ•™ ๋™๋ฌผ์‹ค์—์„œ ์‚ฌ์œกํ•˜๊ณ  ์žˆ๋Š” ์ƒํ›„ 21โˆผ25์ผ์˜ ์ฒด์ค‘ 40gm๋‚ด์™ธ์˜ ์ž์„ฑ ๋ฐฑ์„œ 60๋‘์— ์šฐ์‹์„ฑ์‹์ด์™€ ํƒ€์•ก๋ถ„๋น„์— ์˜ํ–ฅ์„ ๋ฏธ์น˜๋Š” ์•ฝ์ œ๋ฅผ ํˆฌ์—ฌํ•˜๋ฉฐ 90์ผ๊ฐ„ ์‚ฌ์œกํ•œ ํ›„ ์šฐ์‹ ๋ฐœ์ƒ์˜ ์–‘์ƒ์„ ๊ฒ€ํ† ํ•˜์—ฌ ๋‹ค์Œ๊ณผ ๊ฐ™์€ ๊ฒฐ๋ก ์„ ์–ป์—ˆ๋‹ค. ์ œ1๊ตฐ : balanced diet+water ์ œ2๊ตฐ : balanced diet+pilocarpine water ์ œ3๊ตฐ : balanced dist+atropine water ์ œ4๊ตฐ : cariogenic diet+water ์ œ5๊ตฐ : cariogenic diet+pilocarpine water ์ œ6๊ตฐ : cariogcnic diet+atropine water 1. cariogenic diet ๊ตฐ๋“ค์ด balanced diet ๊ตฐ๋“ค์— ๋น„ํ•˜์—ฌ ์„ฑ์žฅ์ด ๊ทนํžˆ ์ €์กฐํ•˜์˜€์œผ๋ฉฐ ํƒ€์•ก๋ถ„๋น„๊ฐ€ ์„ฑ์žฅ์— ๋ฏธ์น˜๋Š” ์˜ํ–ฅ์€ ๋ณ„๋กœ ๊ด€์ฐฐ๋˜์ง€ ์•Š์•˜๋‹ค. 2. ์น˜์•„์šฐ์‹๋ฐœ์ƒ์ด 6๊ตฐ> 4๊ตฐ> 5๊ตฐ> 3๊ตฐ> 1๊ตฐ> 2๊ตฐ์˜ ์ˆœ์„œ๋กœ์„œ ์‹์ด๊ฐ€ ์šฐ์‹๋ฐœ์ƒ์— ๋ฏธ์น˜๋Š” ์˜ํ–ฅ์ด ํฌ๋ฉฐ ํƒ€์•ก๋ถ„๋น„๋„ ์น˜์•„์šฐ์‹๋ฐœ์ƒ๊ณผ ๋ฐ€์ ‘ํ•œ ๊ด€๊ณ„๊ฐ€ ์žˆ์Œ์ด ํ™•์ธ๋˜์—ˆ๋‹ค. 3. ์ƒํ•˜์•…๊ฐ„์˜ ์šฐ์‹๋ฐœ์ƒ์€ ํ•˜์•…์ด ์ƒ์•…๋ณด๋‹ค ๋‹ค์†Œ ๋†’์€ ๊ฒƒ์œผ๋กœ ๋‚˜ํƒ€๋‚ฌ๋‹ค. 4. ๋ฐฑ์„œ์šฐ์‹๊ด€์ฐฐ์—ฐ๊ตฌ์— ์œ„์ƒ์ฐจ ํ˜„๋ฏธ๊ฒฝ ๊ด€์ฐฐ์— ์˜ํ•œ major sulcal scoring์ด ๊ถŒ์žฅํ• ๋งŒํ•˜๋‹ค. EXPERIMENTAL STUDIES ON THE EFFECT OF CARI0GENIC DIET AND SALIVATION ON THE DENTAL CARIES IN ALBINO RATS Sung-Hoon, Han. D.D.S.,M.S.D. Dept. of Dental Science, Graduate School, Yonsei Univ. (Directed by prof. Chong-you, Kim.D.D.S., M.S.D., Ph.D.) The author had divided the sixty female weaning albino rats from Yonsei University-Animal House into following 6 groups and the rats were fed for 90 days. Group 1 : balanced diet + water Group 2 : balanced diet + pilocarpine water Group 3 : balanced diet + atropine water Group 4 : cariogenic diet + water Group 5 : cariogenic diet + pilocarpine water Group 6 : cariogenic diet + atropine water At this time, the animals were sacrified and the induced dental caries had been observed according to the caries rate, the carious teeth index and caries score by Keyes'method. The results were as followings; 1. The average gain of body weight in cariogenic diet groups was much less than that of in balanced diet groups. 2. The dental caries susceptibility order was as follows, group 6> group 4> group 5> group 3>, group 1> group 2. This shows influence to dental caries susceptibility of diet was very significant and the influence of salivary flow was significant too. 3. The caries scores of lower molars were somewhat higher than the scores of upper molars. 4. The method by phase difference microscope were recommendable for major sulcal scoring for experimental dental caries study of rats. [์˜๋ฌธ] The author had divided the sixty female weaning albino rats from Yonsei University-Animal House into following 6 groups and the rats were fed for 90 days. Group 1 : balanced diet + water Group 2 : balanced diet + pilocarpine water Group 3 : balanced diet + atropine water Group 4 : cariogenic diet + water Group 5 : cariogenic diet + pilocarpine water Group 6 : cariogenic diet + atropine water At this time, the animals were sacrified and the induced dental caries had been observed according to the caries rate, the carious teeth index and caries score by Keyes'method. The results were as followings; 1. The average gain of body weight in cariogenic diet groups was much less than that of in balanced diet groups. 2. The dental caries susceptibility order was as follows, group 6> group 4> group 5> group 3>, group 1> group 2. This shows influence to dental caries susceptibility of diet was very significant and the influence of salivary flow was significant too. 3. The caries scores of lower molars were somewhat higher than the scores of upper molars. 4. The method by phase difference microscope were recommendable for major sulcal scoring for experimental dental caries study of rats.restrictio
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