Earticle

현재 위치 Home 검색결과

결과 내 검색

발행연도

-

학문분야

자료유형

간행물

검색결과

검색조건
검색결과 : 1,650
No
1

4,000원

Asphalt concrete(Ascon) is used to repair potholes and cracks. Special truck-mounted cargo boxes transport 200℃ asphalt concrete to repair potholes and cracks. However, long working and transportation hours to repair wide roads decrease the temperature of the asphalt concrete inside the cargo boxes. If the asphalt concrete temperature drops below 170℃, the adhesion with roads that need repair decreases. Therefore, the temperature of the asphalt concrete needs to be maintained for a long time. Conventional asphalt concrete cargo boxes are mostly burner-type models using hot air to prevent the temperature of the asphalt concrete from dropping. However, there are significant temperature differences between the asphalt concrete near and far away from the hot air, so the temperature decreases over time and leads to the disposal of large amounts of asphalt concrete. This causes waste of resources and environmental pollution. Therefore, this study proposed a heat dissipation cut-off type cargo box model to solve this problem and demonstrated its performance over conventional burner-type models through tests and analysis.

2

4,000원

본 연구는 화공용 열교환기에서 법랑코팅 적용을 위한 고온의 소성 공정조건 최적화에 대한 기초자료를 얻고자 하는데 그 목적이 있다. Shell & Tube 형태인 열교환기에 법랑코팅 적용을 위해 소성온도를 순차적으로 높이는 방안에 대해 검토하였다. 소성로 내부에서 열교환기의 온도분포에 대해 CFD 상용 프로그램으로 수치계산 하여 구한 온도를 하중조건으로 열응력 해석을 수행하는 연성 해석(FSI) 방식을 이용하여 열교환기의 구조 안전성 에 미치는 영향을 확인하였다. 수치해석 및 실험결과 상온의 열교환기를 바로 860℃도의 소성로에 넣으면 열교환 기의 국부적 온도차로 인한 구조 안전성에 문제가 발생하므로 온도차를 줄이기 위한 예열 과정이 필요하다. 소성공 정 단계가 적은 Case2와 같이 1단계 예열온도 445℃, 2단계 소성온도 860℃가 가장 적합한 것으로 판단된다.

The purpose of this study is to obtain basic data on the optimization of firing process conditions for enamel coating in chemical heat exchanger. The method of increasing the firing temperature in order to apply enamel coating to shell & tube type heat exchanger was examined. The temperature distribution of the heat exchanger in the firing kiln was numerically calculated using a commercial CFD program. The structural safety of the heat exchanger was confirmed by thermal stress analysis using the FSI method. Numerical analysis and experimental results show that there is a problem of safety due to temperature difference when the heat exchanger at room temperature is directly put into a firing kiln at 860℃. Therefore, a preheating process is need to reduce the temperature difference. As in Case2 with fewer firing steps, the first stage preheating temperature of 445℃ and the second stage firing temperature of 860 ℃ are considered to be most suitable.

3

4,000원

The purpose of this study is to analyze the temperature and heat resistance distribution, which is a criterion for evaluating the cooling performance, by using computer simulation of the cooling system combined with the CPU of the individual highest heat generation section, and use it as important data for the heat sink design. Using a single material of Al 6063-T5, which is an integral part of the desktop, fan and heat sink, fins and base, the analysis was carried out with various fin numbers, thicknesses, pitches and shapes of heat sinks. Ambient temperature, 25°C, heat source, 130W and cooling fan speed, 2500 rpm (50CFM) were used as boundary conditions, and heat transfer characteristics regarding temperature distribution and heat resistance were investigated using ANSYS Icepak. As a result, it has been found that as the number of fins of heat sink increases, the heat dissipation area increases to decrease heat resistance, and as the distance between each fin decreases, the ventilation resistance increases to decrease the flow intensity of the cooling air in contact with the heat dissipation area. The sunburst array also exhibits better heat transfer characteristics by obtaining a lower distribution of heat resistance with a cooling effect of about 10°C than the one-way basic array.

5

4,000원

One simple way of increasing the heat transfer for a fin-and-tube heat exchanger is to increase the fin surface area. In this study, a series of tests were conducted on wide slit fin heat exchangers having an increased fin area (Pl/Pt = 0.87), and the results were compared with those of standard slit fin heat exchangers (Pl/Pt = 0.6). Thermal performances of wide silt-finned samples were superior to those of standard slit fin samples. For one row configuration, the j factor of the wide slit fin sample was 11% larger, and the f factor was 33 % smaller than those of the standard slit fin sample. The difference decreased as the number of tube row increased, although wide slit fin sample always yielded superior performance, The reason was attributed to the many narrower slits formed on the wide fin sample. Furthermore, the effect of fin pitch on j and f factor was not significant, and j factor decreased with the increase of the number of tube row.

6

4,000원

Heat transfer and pressure drop of horizontal heat exchangers with different configurations and installations numerically characterized. Three different heat exchangers were used and shaped as linear, wavy, and horizontal slinky, respectively. Installation depth was set from 0.5m to 3.0m and pipe spacing was ranged from 0.3m to 2.1m. The results showed that heat transfer rate and pressure drop were increased with the increase in the installation depth and the pipe spacing. The horizontal slinky heat exchanger carried more heat compared to others due to the greater effective heat transfer surface area per installation area. In terms of a ratio of heat transfer rate to pressure drop indicating the system efficiency, the linear heat exchanger performed better than others. On the other hand, the horizontal slinky heat exchanger was the most effective with respect to a ratio of heat transfer rate to installation cost.

9

4,000원

In this paper, the heat transfer performance of nanofluids is predicted by numerical analysis methods. The nanoparticles used in this study is SiO2, with concentrations of 1, 2, 3vol.%, and the base fluid is water. Reynolds number of nanofluids ranges from 10,000 to 50,000. A numerical study on the heat transfer characteristics of nanofluid was conducted using a single-phase model. The temperature of the fluid entering from the inlet of the tube is 293.15K. A constant heat flux of 31,650W/m2 was applied at the wall, and the thickness of the wall was ignored. Heat transfer coefficients, thermal conductivity and Nusselt number were selected as indicators for comparing heat transfer performance of nanofluids. As the nanofluid concentration increases, the temperature and velocity distribution by the cross section of the coil tube and straight tube increased. As the Reynolds number increases, temperature difference between inner direction and outer direction reduced in coil tube. For straight tube, the temperature difference between the wall and the center of the tube also decreased.

11

4,000원

The increasingly high prices for oil, the exhaustion of fossil fuels as well as concern about global warming are driving rapid growth of alternative sources of energy in the world. The active solution for global environment and exhaustion of energy sources is to develop and popularize the technologies to use natural energy such as sunlight, wind, and water. PV(Photovoltaic) modules are efficient devices that has been considered a logical material for use in buildings. Recent advanced BIPV(Building Integrated PV) technology have rapidly made PVs suitable for direct integration into construction in the world. This study grasped the power production and heat transfer through the simulation on applying BIPV. BIPV has significant influence on decrease efficiency and increase cooling loads through the heat transfer and solar radiation. The purpose of this study is to compare and analyze the power production and heat transfer of each cases in order to improve application of BIPV.

12

전동킥보드 브레이크 디스크의 열전달에 관한 융합 연구 KCI 등재

최계광, 조재웅

한국융합학회 한국융합학회논문지 제11권 제11호 2020.11 pp.233-237

※ 기관로그인 시 무료 이용이 가능합니다.

4,000원

본 연구에서는 전동킥보드 브레이크 디스크 열전달을 해석하였다. 브레이크 디스크의 패드 접촉면에 따라 다른 열이 전달된다. 접촉면에서 멀어진 부분에서는 온도가 작아지는 경향이 거의 일정하였으며 Model A가 Model B 보다 는 약간 더 낮은 온도 분포를 보였다. Model A가 Model B에 비하여 그 최대 등가응력이 7% 정도 더 높다. 설계시에 타원형으로 패드와 접촉하는 Model B가 원형인 Model A 보다는 그 응력이 감소됨을 보였다. 접촉면 위쪽으로 열이 더 많이 전달되는 것으로 미루어 볼 때 설계시 브레이크 디스크의 모서리 부분을 고려하여 본다면 Model B가 Model A보다 그 강도가 더 크다고 사료된다. 본 연구 결과를 전동킥 보드의 설계에 활용한다면 더 강도가 좋은 브레이크 디스 크 설계를 할 수 있을 것이라고 생각된다. 본 연구 결과를 전동킥보드 브레이크 디스크에 적용함으로서 열에 대한 브레 이크의 내구성을 평가할 수 있고 그 결과가 강성 있는 브레이크의 설계와 미적인 융합이 될 수 있다고 보인다.

In this study, the thermal analysis on the brake disc of electric kickboard was analyzed. The different heat is transmitted depending on the pad contact surface of brake disc. The trend that the temperature decreases at the part away from the contact surface was almost constant. And model A showed a slightly lower temperature distribution than model B. Model A has a maximum equivalent stress of 7% higher than model B. By being applied with the higher heat transfer above the contact surface, it is thought that model B has a greater strength than model A if the design takes into account the corner of the brake disc. If this study result is utilized to the design of electric kickboard, the design of brake disc with better strength is considered to be established. The durability of brake against the heat can be evaluated by applying this study result to the brake disc of electric kickboard. And it is seen that the result can be the design of brake with strength and the aesthetic convergence.

13

4,000원

In this study, we investigated to the heat transfer performance of coating nano-structure with various shapes and patterns on the heat transfer surface. As a result of the measurement of the 3D nano shape, it was confirmed that the roughness generally increases when the adhesive is sprayed on the coating surface and finished durability experiment. In the case of TEOS adhesive, the roughness increased by 0.074 ㎛, 0.012 ㎛ and 0.015 ㎛, and the contact angle decreased 12.64°, 1.31°, 9.84° at the coating time of 120 seconds, 180 seconds and 240 seconds, respectively. In the case of PVA adhesive, the roughness increased by 0.069 ㎛, 0.056 ㎛ and 0.03 ㎛, and the contact angle decreased 2.85°, 4.82°, 6.96° at the coating time of 120 seconds, 180 seconds and 240 seconds, respectively. In the case of DGEBF adhesive, the roughness increased by 0.042 ㎛, 0.053 ㎛ and 0 ㎛, and the contact angle decreased 0.81° at the coating time of 120 seconds, increased 4.82°, 6.96° at the coating time of 180 seconds and 240 seconds, respectively. As a result, the durability tends to decrease as more nano-structures are deposited, and 3D nano shapes, contact angles and SEM photographs showed that the performance of the PVA adhesive was superior among the three adhesives.

15

Flow performance of cryomodules in C-ADS InjectorⅡ KCI 등재 SCOPUS

Yu-Qin WAN, Yan-Ning HAN, Jun-Hui Zhang, Chao Li

한국초전도저온학회 (구 한국초전도저온공학회) 한국초전도·저온논문지 (구 한국초전도저온공학회논문지) Vol.24 No.3 2022.09 pp.74-78

※ 기관로그인 시 무료 이용이 가능합니다.

4,000원

Two β=0.10 cryomodules are required for the China Accelerator Driven Subcritical System (C-ADS) injector II accelerator. Flow design is of great importance in the performance of cryomodules, including thermal design, flow distribution, pressure drop and so on. This paper will study convection heat transfer of helium and relation among the pipe diameter, mass flow rate and Reynolds number. Furthermore, the influence of flow geometries on pressure drop and flow distribution will also be done. It was found that the theoretical flow distribution were in good agreement with the experimental data.

16

4,000원

Equipment used for ships operating in the polar regions, such as icebreakers, should consider countermeasures against freezing. This study performed a structural design that prevents freezing and tolerates thermal stress and wind pressure of the air vent louver heating blades. As boundary conditions for performing the analysis, analysis was performed when the flow rates at the inlet end were 10m/s, 20m/s 30m/s, 40m/s, and 50m/s. As a result of the analysis, if the CNT heating element can maintain the heating performance of 200°C, the blade can maintain the room temperature state except for the end of about 40mm. There are pressure drop between the front and rear of the air vent louver. It can be seen that the allowable wind speed varies depending on the design criteria. As a results, it is required to select an optimal heating temperature to prevent condensation of a blade, optimize the generation of compressive stress by thermal expansion, and trade off the wind pressure and thermal stress according to wind speed.

17

에어프라이어의 화재사례와 재현실험을 통한 화재위험성 분석 KCI 등재후보

이정일, 조명식

대한안전경영과학회 대한안전경영과학회지 제22권 제2호 2020.06 pp.39-46

※ 기관로그인 시 무료 이용이 가능합니다.

4,000원

This paper recognizes the risk of ignition of air fryer (machine that can cook fried dishes with hot air without oil) that is far exceeding the sales rate of microwave ovens, which is necessary to modern household kitchen, and identifies fire risk through the operation principle of the process of heat transfer, and the main structure of the machine. The fire test that we conducted is to observe the risk of ignition of the machine due to the damage to the safety system and the possibility of igniting oil paper along with food, to experiment with the possibility of ignition due to blockage of the exhaust due to obstacles, and accumulation of oil stains on the hot wire, and to present the method of fire control and devise countermeasures.

18

4,300원

This paper is a numerical study of the structure of the supply/exhaust pipe for safe cooling inside the heat treatment chamber at high temperature. The chamber of this study maintains the internal temperature at over 400°C. The cooling and exhaust pipe structure is essential for the cooling process to be efficient, safe and fast. Against this background, this paper compares the results according to the shape of the supply/exhaust pipe through the flow analysis and experiments inside the chamber, and compares Deriving the exhaust structure. Through the study of this paper, it was confirmed that the vertical air exhaust system exhibits the most uniform flow and temperature distribution, and the structure will be applied to chamber development and production. The temperature distribution was improved from about 130°C to 80°C. The reliability of the test results is within 6.14%.

19

구리나노입자가 코팅된 열교환기의 안전성 향상을 위한 임계 열유속 측정실험 KCI 등재후보

모용현, 김남진, 전용한, 이덕수

대한안전경영과학회 대한안전경영과학회지 제19권 제4호 2017.12 pp.317-322

※ 기관로그인 시 무료 이용이 가능합니다.

4,000원

When the heat flux on the heating surface following changing heat condition in the boiling heat transfer system exceeds critical heat flux, the critical heat flux phenomenon is going over to immediately the film boiling area and then it is occurred the physical destruction phenomenon of various heat transfer systems. In order to maximize the safe operation and performance of the heat transfer system, it is essential to improve the CHF(Critical Heat Flux) of the system. Therefore, we have analysis the effect of improving CHF and characteristics of heat transfer following the nanoparticle coating thickness. As the results, copper nanocoating time are increased to CHF, and in case of nano-coatings are increased spray-deposited coating times more than in the fure water; copper nanopowder is increased up to 6.40%. The boiling heat transfer coefficients of the pure water are increased up to 5.79% respectively. Also, the contact angle is decreased and surface roughness is increased when nano-coating time is increasingly going up.

20

열방출량 분석을 통한 화재원인 판정에 관한 연구

권오성, 정의경, 최익한

한국화재감식학회 한국화재감식학회 학회지 제8권 제4호 2017.12 pp.21-39

※ 기관로그인 시 무료 이용이 가능합니다.

5,400원

The purpose of this study is to analyze the heat release rate of the initial combustible or heat source in the ignition phase and to determine the criterion for determining whether ignition is possible in the surrounding combustible material in a short time, In the false method of qualitatively estimating the combustion scale of the ignition source with the simple experience of the fire investigator by tracking the progress pattern of the fire in the situation where the initial evidence is lost and there is no witness, To compare the growth rates and to define the ignition characteristics.

 
1 2 3 4 5
페이지 저장