• 제목/요약/키워드: Plus energy rate

검색결과 66건 처리시간 0.024초

급식회수(給食回數)가 면양(緬羊)의 열량대사(熱量代謝) 및 조직(組織)의 화학적성분(化學的成分)에 미치는 영향 (Effects of Frequency of Meals on Energy Utilization and Body Composition of Sheep Ingesting Diets of Equal Amount)

  • 한인규
    • Applied Biological Chemistry
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    • 제8권
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    • pp.21-28
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    • 1967
  • 등량(等量)의 사료(飼料)로서 급식회수(給食回數)를 달리 했을때 면양(緬羊)의 증체(增體), 영양소(營養素)의 소화율(消化率), 열량이용성(熱量利用性), 체조직(體組織)의 화학성분(化學成分)에 미치는 영향(影響)을 연구(硏究)하기 위하여 32두(頭)의 면양(緬羊)으로 두개(個)의 실험(實驗)을 하였든바 그 성적(成績)은 다음과 같다. (1) 영양소(營養素)의 소화율(消化率) 및 ME가(價)에 있어서 1 일(日) 1회(回) 8급식구(給食區), 1 일(日) 8회급식구(回給食區), 1 일(日) 1회급식(回給食)+7회첨수구(回添水區)사이에 하등(何等)의 차이(差異)가 발견(發見)되지 않았다. (2) 매대사체중당(每代射體重當) 열발생량(熱發生量)은 1 일(日) 8회구(回區)가 1회구(回區)보다 훨씬 적었다. (3) 1 일(日) 8회구(回區)보다 증체량(增體量)이 더 많았다. (4) 1 일(日) 8회구(回區)의 경우 체단백질(體蛋白質), 지방(脂肪), 에너지의 증가(增加)가 1회구(回區)보다 훨씬 왕성하였다. (5) 증체(增體)된 부분(部分)의 체조성(體組成) 변화(變化)를 보면 1회구(回區)의 경우에 훨씬 많은 량(量)의 지방(脂肪), 단백질(蛋白質), 광물질(鑛物質)이 비축되었다. (6) 급식회수(給食回數)가 위에서 본바와 같은 영향을 일으키는 생리적기전(生理的機轉)의 일부(一部)가 설명(說明)되었다.

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겨울철 건물 열환경 개선을 위한 태양굴뚝 시스템의 응용 (Application of the Solar Chimney System for Improving the Thermal Environment in Winter)

  • 오주홍;김의종;이현수;서승직
    • 한국태양에너지학회 논문집
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    • 제35권5호
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    • pp.39-48
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    • 2015
  • In this study, the solar chimney, one of the passive solar systems, is proposed as a method to improve the thermal environment of northern zones in buildings. As this well-known system has rarely been used in building projects, an adequate application of the system is proposed in this paper: the solar chimney system is designed to meet the required ventilation rate and consequently to reduce the ventilation load in the northern part of a building. To investigate such a possibility, a numerical model for the system is developed, and results of numerical tests are used for energy simulations. The results were taken into account for test simulations in EnergyPlus. As a result, approximately 75% of the volumetric ventilation rate required in the north zone could be supplied with the air volume acquired through the system and the monthly mean load was reduced by 29.5%, from 1.584 kWh to 1.117 kWh. The analyses of hourly mean heating and ventilation load over the heating period indicated that the system was very effective at around 13:00. Results show that 33% reduction in the ventilation load and 17% in the heating load for the north zone could be acquired through this system.

Energy constraint control in numerical simulation of constrained dynamic system

  • 윤석준
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1991년도 한국자동제어학술회의논문집(국내학술편); KOEX, Seoul; 22-24 Oct. 1991
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    • pp.376-382
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    • 1991
  • In the analysis of constrained holonomic systems, the Lagange multiplier method yields a system of second-order ordinary differential equations of motion and algebraic constraint equations. Conventional holonomic or nonholonomic constraints are defined as geometric constraints in this paper. Previous works concentrate on the geometric constraints. However, if the total energy of a dynamic system can be computed from the initial energy plus the time integral of the energy input rate due to external or internal forces, then the total energy can be artificially treated as a constraint. The violation of the total energy constraint due to numerical errors can be used as information to control these errors. It is a necessary condition for accurate simulation that both geometric and energy constraints be satisfied. When geometric constraint control is combined with energy constraint control, numerical simulation of a constrained dynamic system becomes more accurate. A new convenient and effective method to implement energy constraint control in numerical simulation is developed based on the geometric interpretation of the relation between constraints in the phase space. Several combinations of energy constraint control with either Baumgarte's Constraint Violation Stabilization Method (CVSM) are also addressed.

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Energy Modeling of a Supertall Building Using Simulated 600 m Weather File Data

  • Irani, Ali;Leung, Luke;Sedino, Marzia
    • 국제초고층학회논문집
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    • 제8권2호
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    • pp.101-106
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    • 2019
  • Assessing the energy performance of supertall buildings often does not consider variations in energy consumption due to the change of environmental conditions such as temperature, pressure, and wind speed associated with differing elevations. Some modelers account for these changing conditions by using a conventional temperature lapse rate, but not many studies confirm to the appropriateness of applying it to tall buildings. This paper presents and discusses simulated annual energy consumption results from a 600 m tall skyscraper floor plate located in Dubai, UAE, assessed using ground level weather data, a conventional temperature lapse rate of $6.5^{\circ}C/km$, and more accurate simulated 600 m weather data. A typical office floorplate, with ASHRAE 90.1-2010 standards and systems applied, was evaluated using the EnergyPlus engine through the OpenStudio graphical user interface. The results presented in this paper indicate that by using ground level weather data, energy consumption at the top of the building can be overestimated by upwards of 4%. Furthermore, by only using a lapse rate, heating energy is overestimated by up to 96% due to local weather phenomenon such as temperature inversion, which can only be conveyed using simulated weather data. In addition, sizing and energy consumption of fans, which are dependent both on wind and atmospheric pressure, are not accurately captured using a temperature lapse rate. These results show that that it is important, with the ever increasing construction of supertall buildings, to be able to account for variations in climatic conditions along the height of the building. Adequately modeling these conditions using simulated weather data will help designers and engineers correctly size mechanical systems, potentially decreasing overall building energy consumption, and ensuring that these systems are able to provide the necessary indoor conditions to maintain occupant comfort levels.

Field Tests of DC 1500 V Stationary Energy Storage System

  • Lee, Hanmin;Kim, Gildong;Lee, Changmu;Joung, Euijin
    • International Journal of Railway
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    • 제5권3호
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    • pp.124-128
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    • 2012
  • The ESS(energy storage system, here after) for a DC 1500V was developed in 2009. A ESS was installed on the track of Daejeon HRT in 2010. The advantage of the ESS is that it can save the energy and plus stable the catenary voltage. This paper presents the energy saved by the ESS in Daedong substation. When the ESS is on/off, the field tests are performed.

건물에너지성능 및 불쾌현휘를 고려한 고정형 블라인드의 최적 슬랫각도 도출 방법에 관한 연구 (A Elicitation Method of Optimum Slat Angle of Fixed Venetian Blind Considering Energy Performance and Discomfort Glare in Buildings)

  • 박장우;윤종호;오명환;이광호
    • KIEAE Journal
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    • 제12권6호
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    • pp.107-112
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    • 2012
  • The purpose of this study is to determine the optimum slat angle of the venetian blind which was applied at an outer skin of a curtain-wall system. The evaluation of the blind slat angle was performed in terms of the comfortable visual environment and decreased energy consumption. The office building prototype was considered for the analysis and simulation variables include application of blind, blind slat angle and dimming control of lighting. The annual energy consumption and incidence rate of discomfort glare were analyzed using EnergyPlus which is developed by the U. S. Department of Energy for the detailed building energy simulation. As a result, it turns out that when the blind (reflectance: 0.5) was installed, the annual energy consumption was greater than that of the base model. However, when the dimming control was applied, the maximum energy saving of 16.3% could be achieved at a slat angle of $0^{\circ}$. In addition, in case of the base model, the incidence rate of discomfort glare was 84%, while the case of the blind with the slat angle of $0^{\circ}$ showed that the incidence rate of discomfort glare was 42.4%. Consequently, the results showed that the slat angle of $55^{\circ}$ with dimming control was the optimum strategy for the comfortable visual environment and decreased energy consumption.

보리와 완두의 혼파재배에서 혼파비율과 예취시기에 따른 사료가치의 변화 (Changes in Feed Value of Barley and Pea by Different Seeding Rates and Cutting Dates in Mixed Sowing Cultivation)

  • 오태석;김창호;이효원
    • 한국작물학회지
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    • 제54권3호
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    • pp.279-286
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    • 2009
  • 본 연구는 우리나라 중서부지역인 충청지역에서 사료작물의 새로운 작부체계로 보리와 완두를 혼파재배할 때 기초자료로 이용하고자 혼파비율과 예취시기에 따른 사료가치변화를 구명하기 위하여 수행하였고 결과를 요약하면 다음과 같다. 건물수량은 보리의 파종비율이 높을수록 증가하였으며, 보리와 완두 혼파비율이 85 : 15% 파종구에서 5월 16일에 예취할 때 가장 많았다. 조단백질, 가급태단백질 및 가소화 단백질은 4월 25일 예취시에는 혼파비율간 유의차가 없으나, 5월 2일 예취 이후부터는 완두의 혼파비율이 높을수록 증가하는 경향이었다. 보리의 혼파비율이 높을수록, 예취시기가 늦을수록 ADF와 NDF는 증가하는 경향이었으며, RFV는 오히려 감소하는 경향이었다. TDN함량은 완두의 혼파비율이 높을수록 증가하였으나, 예취시기별로는 5월 9일 예취시까지는 예취시기가 늦을수록 감소하였고 그 이후는 예취시기가 늦을수록 증가하는 경향이었다. P와 Mg함량은 혼파비율간 유의차가 없었으며, 완두의 혼파비율이 높을수록, Ca은 증가하였고, K은 감소하였다. 예취시기별로는 P, Ca 및 K은 예취시기가 늦을수록 감소하였으나. Mg은 5월 9일 예취시기까지는 별 변동이 없었고, 그 이후 예취시 부터는 예취시기가 늦을수록 증가하였다. 에너지함량에서 ENE, NEM 및 NEG는 혼파비율과 예취시기 간에 유의성이 있어 완두의 혼파비율이 높을수록, 예취시기가 빠를수록 증가하였다. 건물중에 각 성분의 함량을 적한 수량에서 보면 단백질, P, Ca, K 및 Mg 등의 무기물 수량은 보리와 완두의 혼파비율이 75 : 25% 파종구에서, ENE, NEL, NEM 및 NEG 등의 에너지 수량과 TDN수량은 보리와 완두의 혼파비율이 85 : 15% 파종구에서 가장 높았다. 예취시기별로는 TDN 수량, 모든 무기물 및 에너지수량은 5월 16일에 예취하는 것이 가장 높았다.

성능진단 데이터로 보정된 모델을 이용한 기존건축물의 에너지시뮬레이션 기법 (Existing Building Energy Simulation Method Using Calibrated Model by Energy Audit Data)

  • 공동석;김두환;장용성;허정호
    • 설비공학논문집
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    • 제26권5호
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    • pp.231-239
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    • 2014
  • This paper represents a method of existing building energy simulation using energy audit data. Energy audit must be carried out for reasonable analysis, because characteristics of existing buildings such as efficiency of fan, pump, flow rate, pressure, COP and operating schedule could be changed during the building operation. These building characteristics should be measured to estimate actual energy consumption of the existing building. In this study, we conducted energy audit and calculated energy savings for a 7-stories building as a case-study. The energy audit data were used to calibrate the building model of EnergyPlus simulation. Baseline model validated according to M&V guideline index. As a result, building characteristics are significant parameters making a big impact on energy savings in existing buildings.

사무소 건물의 태양열 시스템 운영조건 변화에 따른 에너지 효율 향상에 관한 (A Study on the Energy Efficiency Improvement according to Operation Condition of Solar Thermal System in Office Buildings)

  • 정영주;김석현;이용호;황정하;조영흠
    • 한국태양에너지학회 논문집
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    • 제34권5호
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    • pp.109-115
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    • 2014
  • The supply rate of renewable energy has been increasing under the influence of an energy scarcity. Government has supported the use of renewable energy by government subsidies. The operation of renewable may not been operating appropriately, although increasing the use of renewable energy. We found out some problems of the operation of renewable energy and offered some improvements. This research proposes the efficient operation method for the solar thermal system, and proposed operation method was compared and evaluated with existing operation strategy after selecting one building installed solar thermal system. Recently, the interest to renewable energy has increased because of the environmental issues and energy crisis. However the utilization of the renewable energy system is low because of the use of renewable energy system and existing renewable energy system independently, although supply rate of renewable system is increasing. Especially, in the case of solar thermal system heating load is not responsible for the load of hot water supply in many cases. Therefore, suggesting efficient operation plans and evaluations of the energy consumption and efficiency of a solar thermal system is needed.

집광채광시스템을 적용한 실내체육관의 신재생에너지 공급의무 분담률에 관한 연구 (A Study on the Supply obligations allotment rate of New Renewable Energy in Indoor Gymnasiums with the Application of a Daylighting System)

  • 박윤하;이용호;조영흠;황정하
    • 한국태양에너지학회 논문집
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    • 제35권3호
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    • pp.27-39
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    • 2015
  • Under the goal of analyzing the compulsory supply share of new renewable energy according to the application of a daylighting system to indoor gymnasiums, this study conducted analysis of energy consumption and operation schedule at three indoor gymnasiums in the nation through a survey. The investigator did an Energy Plus simulation on Building A based on the analysis results and analyzed the supply share of new renewable energy in the saving effects of lighting energy according to the application of a daylighting system. As a result, When 92 prism daylighting system were installed in the upper ceiling of a stadium, they were able to meet the criteria for the minimum illumination for official games(Min : 600㏓) and optimum illumination for general games and recreations, thus saving lighting energy during the daytime(09:00~17:00). The resulting saving effects of lighting energy amounted to 44.4% for official games, 57.6% for general games, and 66.7% for recreations. In addition, the daylighting systems had a compulsory supply share of new renewable energy at 2.04% for official games, 2.75% for general games, and 2.62% for recreations, recording an average compulsory supply share of 2.5%.