• Title/Summary/Keyword: stream power

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Combustion Characteristics of a Double-cone Partial Premixed Nozzle with Various Fuel hole Patterns (이중 콘형 부분 예혼합 GT 노즐의 연료 분사구 형상 변화에 대한 연소특성)

  • Kim, Han Seok;Cho, Ju Hyeong;Kim, Min Kuk;Hwang, Jeongjae;Lee, Won June
    • Journal of the Korean Institute of Gas
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    • v.24 no.4
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    • pp.25-31
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    • 2020
  • Experimental investigations were conducted to examine the combustion characteristics of a swirl-stabilized double cone premixed burner nozzle used for industrial gas turbines for power generation. Several variants with different fuel injection patterns are tested to compare the combustion characteristics such as NOx and CO emissions, stability, and wall temperature distributions. Main results show that NOx emissions and stability are decreased either when the fuel hole diameter is decreased with the same number of fuel holes, or when the number of fuel holes is reduced with the same total area of fuel holes, both of which are due to a higher penetration of fuel into the air stream. Not only is NOx reduced but also stability is enhanced when the fuel hole diameter varies in an alternating manner with the same total area of fuel holes, showing that NOx reduction is due to a higher penetration of mean fuel injection path while stability enhancement is due to a lowered penetration of minimum fuel injection path.

Mean flow characteristics of two-dimensional wings in ground effect

  • Jung, Jae-Hwan;Yoon, Hyun-Sik;Chun, Ho-Hwan;Hung, Pham Anh;Elsamni, Osama Ahmed
    • International Journal of Naval Architecture and Ocean Engineering
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    • v.4 no.2
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    • pp.151-161
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    • 2012
  • The present study numerically investigates the aerodynamic characteristics of two-dimensional wings in the vicinity of the ground by solving two-dimensional steady incompressible Navier-Stokes equations with the turbulence closure model of the realizable k-${\varepsilon}$ model. Numerical simulations are performed at a wide range of the normalized ground clearance by the chord length ($0.1{\leq}h/C{\leq}1.25$) for the angles of attack ($0^{\circ}{\leq}{\alpha}{\leq}10^{\circ}$) in the prestall regime at a Reynolds number (Re) of $2{\times}10^6$ based on free stream velocity $U_{\infty}$ and the chord length. As the physical model of this study, a cambered airfoil of NACA 4406 has been selected by a performance test for various airfoils. The maximum lift-to-drag ratio is achieved at ${\alpha}=4^{\circ}$ and h / C = 0.1. Under the conditions of ${\alpha}=4^{\circ}$ and h / C = 0.1, the effect of the Reynolds number on the aerodynamic characteristics of NACA 4406 is investigated in the range of $2{\times}10^5{\leq}Re{\leq}2{\times}10^9$. As Re increases, $C_l$ and $C_d$ augments and decreases, respectively, and the lift-to-drag ratio increases linearly.

Examination of the Applicability of TOC to Korean Trophic State Index (TSIKO) (한국형 부영양화지수(TSIKO)의 인자로서 TOC의 적용성 검토)

  • Kim, Bomchul;Kong, Dongsoo
    • Journal of Korean Society on Water Environment
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    • v.35 no.3
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    • pp.271-277
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    • 2019
  • Korean Trophic State Index ($TSI_{KO}$) was developed in 2006, and was composed of COD ($COD_{Mn}$ based on permanganate method), Chlorophyll a (Chl.a) and total phosphorus (TP). However, $COD_{Mn}$ usually represents only 50-60% of total organic matter in stream or lake water due to low oxidizing power of permanganate. This study investigated the relationship between TOC and $COD_{Mn}$ based on the average data for the whole layer in 81 lakes in Korea, during the period 2013-2017. As a result, $COD_{Mn}$ was found to be 1.54 times more than TOC in 66 of the freshwater lakes and 3 brackish lakes (TOC measured using thermo-oxidation method). TOC was about a quarter of $COD_{Mn}$ in 8 coastal lakes (TOC measured using UV-persulfate oxidation method), and it appeared to be underestimated due to chloride interference. Using the data of 69 lakes with exception of 12 brackish lakes, $TSI_{KO}$(TOC) was developed based on the correlation between TOC and $COD_{Mn}$, while $TSI_{KO}$(COD) was replaced with $TSI_{KO}$(TOC). However, for trophic state assessment of brackish lakes, the $TSI_{KO}$(TOC) can only be utilized in case that TOC is measured through thermo-oxidation method. The determination coefficient of $TSI_{KO}$(Chl) to $TSI_{KO}$(COD) in 66 freshwater lakes and 3 brackish lakes was 0.83, while that to $TSI_{KO}$(TOC) was 0.68. This difference could be attributed to the recalcitrant organic part of TOC.

Application of Physical River Assessment System Based on River Classification (하천분류에 따른 물리적 하천환경 평가체계 적용)

  • Kim, Ki Heung;Jung, Hye Ryeon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.508-508
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    • 2016
  • 하천은 지형학적으로 청?장년기에 상 중 하류부가 구별되고 유량과 하상경사의 곱으로 표현되는 유수력(stream power)에 따른 반응으로서 구간별 수리 및 하도특성이 형성된다. 산지가 국토면적의 약 70%를 차지하고 노년기 지형인 유역을 기반으로 하며, 장마 및 태풍 내습시 집중호우에 따른 홍수발생으로 말미암아 대부분 국내의 하천은 상류는 산지, 중류는 곡저평야, 하류는 충적평야를 유하함으로서 구간별로 수리 및 하도 특성이 뚜렷이 구별된다. 홍수 예방을 위한 제방 축조와 용수공급을 위한 보 등 하천 구조물이 설치되어 있으며, 하천 주변에는 배산임수의 취락형성에 따라 주거지 및 대규모 도시가 발달하면서 많은 하천교란이 유발되고 있다. 우리나라 하도 및 수리적 특성인 여울과 소 등의 미지형과 하상매몰도 등 서식환경의 특성 및 하안에 적용되고 있는 다양한 형태의 하천횡단 형상과 하도개수 등 교란 특성을 중점적으로 고려하여 하천의 물리적 특성을 정량적으로 평가할 수 있는 평가체계를 개발하였다. 하도의 물리적 특성은 유량과 하상경사를 매개변수로 하는 유수력에 의하여 변화하므로 하천 유형을 하상경사에 따라 세그먼트 분류법을 적용하여 세그먼트 M, 세그먼트 1 및 세그먼트 2,3으로 구분하고 세그먼트별 하도 및 수리 특성, 하안 및 하천교란 영역에 대한 총 10개의 정량적 평가지표를 개발하였다. 각 지표는 5등급으로 설정되어 있으며, 평가지표의 근거는 미국(EPA) 및 독일(LAWA)의 평가지표를 바탕으로 우리나라 실정에 맞게 수정하였다. 본 연구에서는 하천분류체계에 의한 하천유형의 차이를 고려할 수 있도록 개발된 하천 물리적 평가체계를 남강, 내성천, 갑천, 유등천에 적용하여 검증하고, 적용성을 평가하였다. 우리나라 하천환경의 고유한 특성을 고려한 물리적 하천환경 평가체계는 하천사업을 위한 현재의 하천환경의 진단 및 하천사업의 효과 및 분석 등에 활용할 수 있으며, 하천관리를 위한 지구지정의 정량적 기준 및 관리목표 설정 등 하천계획 설계의 실무과정에서 매우 유용하게 적용될 수 있을 것으로 판단된다.

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Implementation of Video Signal Delivery Protocols for the Camera Device via the Internet (인터넷을 통한 카메라 디바이스의 영상신호 전달 프로토콜 구현)

  • Lee, Ji-Hoon;Chung, Hae;Baek, Bong-Ki;Jo, Young-Rae
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.25 no.5
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    • pp.691-700
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    • 2021
  • The IP cameras have rapidly replaced the analog CCTVs as the cameras have the advantages of not only being able to remotely monitor, but also supplying power through the UTP cable, In this paper, we introduce the protocol architecture of the ONVIF standard which is widely applied to the IP camera and other Internet protocols to support it, and implement the ONVIF Device on a commercial board. Although these functions can be controlled by the Client (PC), several functions such as privacy masks, temperature display of the thermal camera, and ROI (Region of Interest) are implemented through a web viewer on the device. Through the experiment, the functions of ONVIF Profile S and web viewer are verified through SOAP messages exchanged between Device (IP camera) and Client program and streamed images.

Secure and Scalable Blockchain-Based Framework for IoT-Supply Chain Management Systems

  • Omimah, Alsaedi;Omar, Batarfi;Mohammed, Dahab
    • International Journal of Computer Science & Network Security
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    • v.22 no.12
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    • pp.37-50
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    • 2022
  • Modern supply chains include multiple activities from collecting raw materials to transferring final products. These activities involve many parties who share a huge amount of valuable data, which makes managing supply chain systems a challenging task. Current supply chain management (SCM) systems adopt digital technologies such as the Internet of Things (IoT) and blockchain for optimization purposes. Although these technologies can significantly enhance SCM systems, they have their own limitations that directly affect SCM systems. Security, performance, and scalability are essential components of SCM systems. Yet, confidentiality and scalability are one of blockchain's main limitations. Moreover, IoT devices are lightweight and have limited power and storage. These limitations should be considered when developing blockchain-based IoT-SCM systems. In this paper, the requirements of efficient supply chain systems are analyzed and the role of both IoT and blockchain technologies in providing each requirement are discussed. The limitations of blockchain and the challenges of IoT integration are investigated. The limitations of current literature in the same field are identified, and a secure and scalable blockchain-based IoT-SCM system is proposed. The proposed solution employs a Hyperledger fabric blockchain platform and tackles confidentiality by implementing private data collection to achieve confidentiality without decreasing performance. Moreover, the proposed framework integrates IoT data to stream live data without consuming its limited resources and implements a dualstorge model to support supply chain scalability. The proposed framework is evaluated in terms of security, throughput, and latency. The results demonstrate that the proposed framework maintains confidentiality, integrity, and availability of on-chain and off-chain supply chain data. It achieved better performance through 31.2% and 18% increases in read operation throughput and write operation throughput, respectively. Furthermore, it decreased the write operation latency by 83.3%.

Unveiling the mysteries of flood risk: A machine learning approach to understanding flood-influencing factors for accurate mapping

  • Roya Narimani;Shabbir Ahmed Osmani;Seunghyun Hwang;Changhyun Jun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.164-164
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    • 2023
  • This study investigates the importance of flood-influencing factors on the accuracy of flood risk mapping using the integration of remote sensing-based and machine learning techniques. Here, the Extreme Gradient Boosting (XGBoost) and Random Forest (RF) algorithms integrated with GIS-based techniques were considered to develop and generate flood risk maps. For the study area of NAPA County in the United States, rainfall data from the 12 stations, Sentinel-1 SAR, and Sentinel-2 optical images were applied to extract 13 flood-influencing factors including altitude, aspect, slope, topographic wetness index, normalized difference vegetation index, stream power index, sediment transport index, land use/land cover, terrain roughness index, distance from the river, soil, rainfall, and geology. These 13 raster maps were used as input data for the XGBoost and RF algorithms for modeling flood-prone areas using ArcGIS, Python, and R. As results, it indicates that XGBoost showed better performance than RF in modeling flood-prone areas with an ROC of 97.45%, Kappa of 93.65%, and accuracy score of 96.83% compared to RF's 82.21%, 70.54%, and 88%, respectively. In conclusion, XGBoost is more efficient than RF for flood risk mapping and can be potentially utilized for flood mitigation strategies. It should be noted that all flood influencing factors had a positive effect, but altitude, slope, and rainfall were the most influential features in modeling flood risk maps using XGBoost.

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Research on Clothing Origin Certification Systems in Major Overseas Countries (해외 주요국가의 의류 원산지 인증제도 연구)

  • Sieun Lim;Sowon Hahn
    • Journal of Fashion Business
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    • v.27 no.3
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    • pp.63-74
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    • 2023
  • As "Made in Korea" has high branding power in the fashion industry, domestic clothing manufacturers also need to consider branding the country of origin. Therefore, the purpose of this study was to reconsider the need for a domestic certification system and suggest a direction by analyzing apparel origin certification systems operating overseas. The results of this study could be used for planning certification standards and operating methods suitable for regional characteristics and industrial environments when establishing a certification system for clothing produced in Korea. The case study subjects were Japan's J∞ Quality, USA's Made in New York, Italy's 100% Made in Italy, and France's Origin France Guarantee has been classified as certification criteria related to the country of origin include items related to the production process rate in the region and the production area for each production process/stream. Manufacturing technology and design are used for quality standards, safety, hygiene compliance, production facilities, and quality control and are applied to working environment standards. The certification system selects and operates standards according to each country's industrial environment, certification subject, and purpose. Therefore, when designing a domestic apparel certification system, a feasible promotion plan should be established that considers the current state of the domestic industry, which will serve as a driving force for the growth of the apparel manufacturing industry and an opportunity to increase the trust of global fashion consumers.

Economic Comparison of Various Turquoise Hydrogen Production Processes (다양한 청록수소 생산 공정에 대한 경제성 분석)

  • SOOYONG LEE;VAN-TIEN GIAP;MUJAHID NASEEM;JONGHWAN KIM;YOUNG DUK LEE
    • Transactions of the Korean hydrogen and new energy society
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    • v.34 no.3
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    • pp.256-266
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    • 2023
  • Hydrogen production can be classified based on the energy source, primary reactor type, and whether or not it emits carbon dioxide. Utilizing color representation proves to be an effective means of expressing these distinctive characteristics. Among the various clean hydrogen production techniques, there has been a growing interest in turquoise hydrogen production, which involves the decomposition of methane or other fossil fuels. This method offers advantages in terms of large-scale production and cost reduction through the sale of solid-carbon byproduct. In this study, an extensive literature review was conducted to select and analyze several promising candidates for turquoise hydrogen production processes. The efficiency and economics of these processes were evaluated using stream data reported in the literature sources. The findings indicate that the levelized cost of hydrogen production (LCOH) is significantly influenced by the sales of byproducts, specifically the solid-carbon and carbon monoxide byproducts.

A Study on Flow Rate Estimation Using Pressure Fluctuation Signals in Pipe (배관내 압력변동 신호를 이용한 유량 추정 방법 연구)

  • Jeong Han Lee;Dae Sic Jang;Jin Ho Park
    • Transactions of the Korean Society of Pressure Vessels and Piping
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    • v.19 no.2
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    • pp.155-162
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    • 2023
  • In nuclear power plants, the flow rate information is a major indicator of the performance of rotating equipment such as pumps, and is a very important one required for facility operation and maintenance. To measure a flow rate, various types of methods have been developed and used. Among them, the differential pressure type using orifice and the direct doppler type using ultrasonic waves are the most commonly used. However, these flow rate measurement methods have limitations in installation, conditions and status of the measuring part, etc. To solve this problem, we have studied a new technique for measuring flow rate from scratch. In this paper, we have devised a technique to estimate the flow rate using an average moving velocity of large-scale eddy in turbulence that occurs in the piping flow field. The velocity of the large-scale eddy can be measured using the pressure fluctuation signals on the inner surface of the pipe. To estimate the flow rate, at first a cross-correlation function is applied to the two pressure fluctuation signals located at different positions in the down stream for calculating the time delay between the moving eddies. In order to validate the proposed flow rate estimation method, CFD analyses for the internal turbulence flow in pipe are conducted with a fixed flow condition, where the pressure fluctuation signals on the pipe inner surface are simulated. And then the average flow velocity of the large scale eddy is to be estimated. The estimated flow velocity is turned out to be similar to the fixed (known) flow rate.