• 제목/요약/키워드: Injection well design

검색결과 141건 처리시간 0.03초

암반 대수층에서 개방형 지열 시스템의 개발 및 적용 (Development of a Groundwater Source Heat Pump in a Fractured Rock Aquifer)

  • 심병완;김성균;최한나;이수형;하규철;김용철
    • 신재생에너지
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    • 제17권3호
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    • pp.32-41
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    • 2021
  • A groundwater source heat pump (GWHP) was developed in this study by adapting a borehole heat exchanger with closed-loop and open-loop systems in a new building. In the pilot test building, the air-conditioning on the second floor was designed to employ a closed-loop system and that on the third floor had an open-loop system. The GWHP design is based on the feasibility of groundwater resources at the installation site. For the hydrogeological survey of the study site, pumping and injection tests were conducted, and the feasibility of GWHP installation was evaluated based on the air-conditioning load demand of the building. The site was found to be satisfactory for the design capacity of the thermal load and water quality. In addition, the effect of groundwater movement on the performance of the closed-loop system was tested under three different operational scenarios of groundwater pumping. The performance of the system was sustainable with groundwater flow but declined without appropriate groundwater flow. From long-term observations of the operation, the aquifer temperature change was less than 2℃ at the observation well and 5℃ at the injection well with respect to the initial groundwater temperature. This pilot study is expected to be of guidance for developing GWHPs at fractured rock aquifers.

Experimental Design in Laboratory for Ecological Restoration in the Slag Dumping Area

  • Kim, Jin-Man;Kwak, Seck-Nam
    • 한국환경과학회지
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    • 제18권10호
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    • pp.1065-1070
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    • 2009
  • Experimental design for ecological restoration approach was investigated from the P' company's slag dumping area with higher pH value. The degree of pH recovery was measured by the injection of carbon dioxide from the LNG exhaust gas, and the residual carbon, for example, calcium and carbonate which can be controlled by artificial seaweed beds. The degree of adaptability from 3 algaes (Undaria pinnatifida, Sargassum horneri and Ecklonia stolonifera) and uptake nutrient function of Ecklonia stolonifera chosen in the first treatment were measured in the laboratory to determine the transplanting algae in artificial seaweed beds. The higher value of pH was decreased to 7.0~8.5 by injection of LNG exhaust gas with flow rate $20\;m^3/min$. In the experiment design at laboratory, the upper part of frond of Undaria pinnatifida and Sargassum horneri began to decay, and the color changed after 10 days. However, those of Ecklonia stolonifera were after 14~20 days. The uptake rate of nutrient from Ecklonia stolonifera was higher than those of other algaes, and those was similar pattern in the control (e.g. seawater); The DIN concentration uptake of Ecklonia stolonifera was $1.88\;{\mu}g/L/hr$ avg. in leachate, but $2.19\;{\mu}g/L/hr$ avg. in seawater. However, the ${PO_4}^3$-P concentration uptake was $0.18\;{\mu}g/L/hr$ avg. in leachate, but $0.31\;{\mu}g/L/hr$ avg. in seawater. These result indicated Ecklonia stolonifera uptaked these nutrients in the leachate as well as in seawater, and it may suggested for this species to transplant for constructing artificial seaweed beds.

Modeling and analysis of selected organization for economic cooperation and development PKL-3 station blackout experiments using TRACE

  • Mukin, Roman;Clifford, Ivor;Zerkak, Omar;Ferroukhi, Hakim
    • Nuclear Engineering and Technology
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    • 제50권3호
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    • pp.356-367
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    • 2018
  • A series of tests dedicated to station blackout (SBO) accident scenarios have been recently performed at the $Prim{\ddot{a}}rkreislauf-Versuchsanlage$ (primary coolant loop test facility; PKL) facility in the framework of the OECD/NEA PKL-3 project. These investigations address current safety issues related to beyond design basis accident transients with significant core heat up. This work presents a detailed analysis using the best estimate thermal-hydraulic code TRACE (v5.0 Patch4) of different SBO scenarios conducted at the PKL facility; failures of high- and low-pressure safety injection systems together with steam generator (SG) feedwater supply are considered, thus calling for adequate accident management actions and timely implementation of alternative emergency cooling procedures to prevent core meltdown. The presented analysis evaluates the capability of the applied TRACE model of the PKL facility to correctly capture the sequences of events in the different SBO scenarios, namely the SBO tests H2.1, H2.2 run 1 and H2.2 run 2, including symmetric or asymmetric secondary side depressurization, primary side depressurization, accumulator (ACC) injection in the cold legs and secondary side feeding with mobile pump and/or primary side emergency core coolant injection from the fuel pool cooling pump. This study is focused specifically on the prediction of the core exit temperature, which drives the execution of the most relevant accident management actions. This work presents, in particular, the key improvements made to the TRACE model that helped to improve the code predictions, including the modeling of dynamical heat losses, the nodalization of SGs' heat exchanger tubes and the ACCs. Another relevant aspect of this work is to evaluate how well the model simulations of the three different scenarios qualitatively and quantitatively capture the trends and results exhibited by the actual experiments. For instance, how the number of SGs considered for secondary side depressurization affects the heat transfer from primary side; how the discharge capacity of the pressurizer relief valve affects the dynamics of the transient; how ACC initial pressure and nitrogen release affect the grace time between ACC injection and subsequent core heat up; and how well the alternative feeding modes of the secondary and/or primary side with mobile injection pumps affect core quenching and ensure stable long-term core cooling under controlled boiling conditions.

점도변화와 흡착현상을 고려한 시멘트계 그라우트재의 새로운 침투 기준 (A New Groutability Criterion of Cement-based Grout with Consideration of Viscosity and Filtration Phenomenon)

  • 김종선;이인모;이문선;최항석
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 춘계 학술발표회
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    • pp.154-163
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    • 2009
  • The groutability depends on the properties of the grout, its injection processes, and on the mechanical properties of the soil formation. During the process of pouring cement-based grouting into a porous medium, a variation with time occurs in the viscosity of grout suspension. In addition the particle filtration phenomenon will limit the expansion of the grouted zone because cement particles are progressively stagnant within the soil matrix. In this paper, a closed-form solution was derived by implementing the mass balance equations and the generalized phenomenological filtration law, which can be used to evaluate the deposition of cement-based grout in the soil matrix. The closed-form solution relevant to a particular spherical flow was modified by a step-wise numerical calculation, considering the variable viscosity caused by a chemical reaction, and the decrease in porosity resulting from grout particle deposition in the soil pores. A series of pilot-scale chamber injection tests was performed to verify that the developed step-wise numerical calculation is able to evaluate the injectable volume of grout and the deposition of grout particles. The results of the chamber injection tests concurred well with that of the step-wise numerical calculation. Based on the filtration phenomenon, a new groutability criterion of cement-based grout in a porous medium was proposed, which might facilitate a new insight in the design of the grouting process.

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COMS 특별세션 (COMS BIPROPELLANT PROPULSION SYSTEM)

  • Han, Cho-Young;Park, Eung-Sik;Baek, Myung-Jin;Lee, Ho-Hyung
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2007년도 Proceedings of ISRS 2007
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    • pp.41-44
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    • 2007
  • Korea Aerospace Research Institute (KARI) has jointly developed a bipropellant propulsion system for Communication, Ocean and Meteorological Satellite (COMS) with EADS Astrium in UK. The technology relevant to a bipropellant propulsion system is quite new one in Korea, which is transferred for the first time, with development of COMS propulsion system. It hasn't ever attempted before, and hasn't got any general idea itself as well, in Korea. The COMS Chemical Propulsion System (CPS) is designed to perform both the orbital injection function, to take the spacecraft from transfer orbit to Geostationary Earth Orbit (GEO), and all on-station propulsive functions throughout the lifetime of the satellite. All station keeping manoeuvres are performed using the CPS. The design, manufacture and testing of COMS CPS are addressed in this paper. Feasibility of COMS CPS applicable to the other advanced mission is investigated as well.

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섬유코팅용 왁스링 성형을 위한 자동화 시스템 개발 (Development of Automatic Wax-Ring Manufacturing System for Silk Coating)

  • 조영학;맹희영
    • 한국생산제조학회지
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    • 제22권3_1spc호
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    • pp.531-536
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    • 2013
  • An automatic wax-ring manufacturing system for silk coating was developed, which consisted of a container, pallet with a cooling part, injection port, and removing device. The removing device is a system to load, lift, and cut the wax-ring, which is widelyused for various silk-coating industrial purposes. A novel removing device equipped with a water cooling circulation system is proposed in this paper. It has the benefit of easy control, as well as the convenience of loading and unloading without the use of other equipment. Three-dimensional modeling techniques were adopted to develop integrated functions for the automatic wax-ring manufacturing system, which made it possible to confirm the smooth integration/interface of each part and the system's interrelations with other manufacturing systems.

Subharmonic Injection Locking 방법을 이용한 X-Band 주파수 합성기 설계 (The Design of a X-Band Frequency Synthesizer using the Subharmonic Injection Locking Method)

  • 김지혜;윤상원
    • 한국전자파학회논문지
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    • 제15권2호
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    • pp.152-158
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    • 2004
  • Subharmonic injection locking 방식을 이용하여 디지털 위성방송 시스템의 신호원으로 사용될 수 있는 낮은 위상 잡음과 우수한 전력 효율을 갖는 X-band 주파수 합성기를 설계, 제작하였다. 주파수 합성기는 위상 고정 발진기의 역할과 동시에 고조파 발생기로 동작하는 1.75 GHz의 주 발진기(master발진기)와 10.5 GHz 부 발진기(slave 발진기)로 구성되어 있다. PLL 방법을 적용하여 구성된 1.75 GHz 주 발진기는 능동부를 형성하는 트랜지스터와 버퍼 증폭기의 역할을 하는 BJT 트랜지스터를 직렬 연결하여 사용하였는데 첫 단은 위상고정 발진기의 역할을 하고 둘째 단은 45 GHz의 차단 주파수(cutoff frequency)를 갖는BJT를 사용함으로써 고조파 발생기로 동작하게 하여 안정적으로 Injection Locking 될 수 있도록 인가될 신호인 6차 고조파의 크기를 충분히 크게 발생시키도록 하였다. 고조파 발생기로부터 발생한 6차 고조파는 뒤에 위치한 약 45 dB 이득을 갖는 증폭기로 동작하는 부 발진기에 인가되어 Injection Locking 된다. 이러한 특성을 갖는 회로 구조를 이용하여, ILO 방식을 이용함으로 얻는 간단한 회로 구조와 낮은 위상 잡음 특성은 물론 보다 우수한 전력 효율을 갖는 10.5 GHz 주파수 합성기를 설계 제작하였다. 제작된 10.5 GHz 주파수 합성기는 7.4 V/49 mA,-0.5 V/4 mA의 전력 소모와 4.53 dBm의 출력 전력, 그리고 10 kHz와 100 kHz 이격 주파수에서 각각 -95.09 dBc/Hz와-108.90 dBc/Hz의 위상 잡음 특성을 얻었다.

실내 굴진 시험을 통한 폼 주입 조건에 따른 인공 사질토 지반에서 EPB TBM 굴진성능에 대한 고찰 (Study on EPB TBM performance by conducting lab-scaled excavation tests with different foam injection for artificial sand)

  • 이효범;신다한;김대영;신영진;최항석
    • 한국터널지하공간학회 논문집
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    • 제21권4호
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    • pp.545-560
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    • 2019
  • EPB TBM 굴진 중 다양한 지반 조건에서 적절한 양의 폼(Foam), 폴리머(Polymer) 등 첨가제의 주입은 TBM 공사의 안정성은 물론 굴진 성능을 결정하는 중요한 요소이다. 국외에서는 90년대부터 최근까지 EPB TBM 공법을 토사 지반에 적용할 때 최적의 첨가제 주입에 대한 연구가 활발하게 이루어졌으나 국내에서는 이와 관련된 연구가 매우 부족한 실정이다. 따라서 본 연구에서는 굴착토 컨디셔닝에 가장 널리 사용되는 폼을 첨가제로 선정하고 폼 주입에 따른 토사 지반에서의 TBM 굴진 성능 변화를 일련의 실내 굴진 시험을 통해 파악하였다. 굴진 시험은 인공 사질토 지반을 동일 다짐 조건으로 조성하고 폼의 주입량과 상태를 나타내는 변수인 FIR (Foam Injection Ratio), FER (Foam Expansion Ratio), $C_f$ (Surfactant Concentration) 값을 변화시켜가며 수행되었으며, 각 시험에서 굴진 중 측정된 토크 값을 측정하였다. 또한 굴진 시험 후, 배토된 흙의 슬럼프 값을 비교하여 컨디셔닝 된 시료의 워커빌리티(workability)를 평가하였으며, 블레이드에 설치된 알루미늄 커터의 무게 변화를 측정하여 컨디셔닝 조건에 따른 동일 위치에서의 커터 마모량을 비교하였다. 최종적으로 측정된 토크, 슬럼프 값, 마모량 결과의 비교를 통해 본 연구에서 적용된 인공 사질토 지반에서 최적 TBM 굴진을 위한 폼 주입비를 도출하였다. 연구 결과를 통해 지반 조건에 따라 다른 최적의 TBM 굴진 성능을 확보하기 위해서는 장비 부하, 기계 마모, 워커빌리티 확보에 대하여 적정 수준을 만족하는 폼 주입 조건이 존재하고 이에 대응하기 위한 사전 폼 주입 설계가 필요한 것으로 나타났다.

Experimental and model study on the mixing effect of injection method in UV/H2O2 process

  • Heekyong Oh;Pyonghwa Jang;Jinseok Hyung;Jayong Koo;SungKyu Maeng
    • Membrane and Water Treatment
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    • 제14권3호
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    • pp.129-140
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    • 2023
  • The appropriate injection of H2O2 is essential to produce hydroxyl radicals (OH·) by mixing H2O2 quickly and exposing the resulting H2O2 solution to UV irradiation. This study focused on evaluating mixing device of H2O2 as a design factor of UV/H2O2 AOP pilot plant using a surface water. The experimental investigation involved both experimental and model-based analyses to evaluate the mixing effect of different devices available for the H2O2 injection of a tubular hollow pipe, elliptical type of inline mixer, and nozzle-type injection mixer. Computational fluid dynamics analysis was employed to model and simulate the mixing devices. The results showed that the elliptical type of inline mixer showed the highest uniformity of 95%, followed by the nozzle mixer with 83%, and the hollow pipe with only 18%, after passing through each mixing device. These results indicated that the elliptical type of inline mixer was the most effective in mixing H2O2 in a bulk. Regarding the pressure drops between the inlet and outlet of pipe, the elliptical-type inline mixer exhibited the highest pressure drop of 15.8 kPa, which was unfavorable for operation. On the other hand, the nozzle mixer and hollow pipe showed similar pressure drops of 0.4 kPa and 0.3 kPa, respectively. Experimental study showed that the elliptical type of inline and nozzle-type injection mixers worked well for low concentration (less than 5mg/L) of H2O2 injection within 10% of the input value, indicating that both mixers were appropriate for required H2O2 concentration and mixing intensity of UV/ H2O2 AOP process. Additionally, the elliptical-type inline mixer proved to be more stable than the nozzle-type injection mixer when dealing with highly concentrated pollutants entering the UV/H2O2 AOP process. It is recommended to use a suitable mixing device to meet the desired range of H2O2 concentration in AOP process.

Design optimization of the outlet holes for bone crystal growing with bioactive materials in dental implants: Part II. number and shapes

  • Lee, Kangsoo;Kim, Geug Tae;Lee, Yong Keun
    • 한국결정성장학회지
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    • 제23권2호
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    • pp.76-80
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    • 2013
  • For further improvement of osseo-integration of bone crystal with a dental implant, a design optimization study is carried out for various holes inside its body to deliver bioactive materials and the effect of bioactive material injection on the bone crystal growing. When bioactive material is absorbed, the bone crystal can grow into holes, which would increase the strength of implant bonding as well as a surface integration. The stress concentrations near the uppermost outlet holes were reduced with increasing the number of outlet holes. A design improvement in the uppermost outlet was shown to be effective in reducing the stress concentration. For design parameters under consideration in this study, total area of outlet of 6.38 $mm^2$ and maximum stress of 1.114 MPa, which corresponds to type 6-C. It is due to the minimization of maximum stress and total area of outlet. The design of the outlet facing down was more effective in reducing the maximum stress value compared with a horizontal symmetry.