جستجوی مقالات مرتبط با کلیدواژه "residential sector" در نشریات گروه "هنر و معماری"
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International Journal of Architecture and Urban Development, Volume:6 Issue: 2, Spring 2016, PP 15 -22
In this research multiple-regression analysis with stepwise selection method was employed for investigating the effectof vertical building envelopes solar radiation (Evr) on cooling energy consumption (E cooling) in residential sector.The high capacity of solar energy in semi-arid climate (Shiraz) can provide a part of buildings required energy. Dependson house orientations in two directions of SE and SW and by using statistical data, E cooling in urban residences wasanalyzed. The autocorrelation in the residuals, checked by Durbin- Watson test, was not existed. By investigatingthe relations between average Evr and E Cooling in each group, it can be proved that climatic orientated houses canachieve lower E Cooling, owing to SE desirable orientation. The percentage of Evr in SW houses is 28.89 % and in SEit is 15.72 %, so choosing the building orientation is important to reduce energy consumption. Finally, the concludingremarks were indicated.
Keywords: Energy consumption, Solar Radiation, Residential sector, Building orientation, Cooling need, Regression -
در این تحقیق از آنالیز رگرسیون چند منظوره و روش انتخابی گام به گام جهت بررسی تاثیر انرژی خورشیدی بر میزان مصرف انرژی اولیه، سرمایش و گرمایش در بخش مسکونی استفاده شده است. در شهر شیراز (با قابلیت بالای بهره گیری از انرژی خورشیدی در تامین بخشی از انرژی)، ساختمان های مسکونی بر اساس جهت گیری ساختمان به دو گروه شمال شرقی- جنوب غربی و شمال غربی- جنوب شرقی تقسیم گردیدند و با استفاده از تست دوربین- واتسون فرضیه وجود همبستگی میان خطاها رد گردید. همچنین، جهت حذف تاثیر عوامل نامطلوب ساختمانی از مصرف انرژی اولیه، با بهره گیری از نرم افزار EC9.5 فرایند تحلیل سلسله مراتبی وزن هر یک از عوامل تعیین گردید. با توجه به ارتباط بین میانگین تابش دریافتی بدنه های عمودی با مصرف انرژی اولیه، سرمایش و گرمایش در هر دو گروه، فرضیه اولیه تحقیق محقق گردید. این فرضیه بیان می نماید که خانه های دارای جهت گیری اقلیمی دارای مصرف کمتری می باشند. به عنوان یک نتیجه مشخص گردیدکه 74.99% تابش دریافتی خانه ها مربوط به سطوح افقی می باشد. در پایان راه حل هایی جهت بهره گیری از انرژی خورشیدی در کاهش مصرف انرژی خانه ها در شهر شیراز و پیشنهاداتی به منظور گسترش و ادامه تحقیق ارائه گردیده است.
کلید واژگان: مصرف انرژی, بخش خانگی, انرژی خورشیدی, جهت گیری ساختمان, رگرسیون, تحلیل سلسله مراتبیEnergy has been considered as one of the most important factors for formation and development of industrialized countries. Furthermore، countries accessibility for different types of energy can be indicated as a sound development index، as well as political and economical power. Restrictions on resources of non-renewable energy، on one hand، and high cost of production and also low efficiency of distribution and transfer process، on the other hand، have encouraged the politicians and stakeholders of the field of energy to adopt optimal policies for optimal use of the produced energy because different types of energy production depends on high capital investment and is possible in long term. In this study، multiple-regression analysis with stepwise selection method was employed to investigate the effect of solar radiation (Er) on energy consumption (E Primary، E cooling، E heating) in residential sector in one of semi arid cities of Iran. In Shiraz city (with high capacity of solar energy utilization to provide some parts of the required energy and with different types of house)، residential buildings were divided based on orientation into two group (i. e. NW-SE، and NE-SW). The houses were selected randomly in different parts of city with different characteristics and type. The presence of autocorrelation in the residuals، checked by Durbin- Watson test، was rejected. To remove the influence of adverse factors (as step no.، window to wall ratio، length to width) from E Primary، AHP was used to define the adverse factors’ weights using software (i. e. EC 9. 5). The received solar radiation in samples has divided into three main parts; horizontal envelope (roof)، main vertical envelope (south elevation) and other envelopes. Each of mentioned envelopes has an effective role in annually and monthly energy consumption behavior. In investigation of each house about the effect of solar radiation of building envelope on E Cooling، E Heating، and E Primary، it was indicated that two types of house have closer correlations: the houses with low energy consumption and climatic Er، and those with high energy consumption and high non-climatic Er. According to the relation between average radiation on vertical envelope (Evr)، and E Cooling، E Heating، and E Primary in each group، the primitive hypothesis (climatic orientated houses can achieve lower E Cooling، E Heating، E Primary) was proved. The annually vertical surface radiation from whole radiation on buildings has 28. 89 % in group 1، and 15. 72 % in group 2. The results indicated houses with climatic orientation have low energy consumption. On the other hand، one of the results indicated that about 74. 99% of received radiation in houses is related to the horizontal envelope. The annually horizontal surface radiation from whole radiation on buildings is 68. 50 % in group 1 and 81. 48 % in group 2. Therefore، in both group the role of roof in absorbing radiation is more significant. Finally، some solutions for deploying the solar radiation in order to decrease the residential energy consumption in Shiraz city were proposed and suggestions for future researches were presented.Keywords: Energy Consumption, Residential Sector, Solar Radiation, Building Orientation, Regression, Analytic Hierarchy Process (AHP) -
International Journal of Architectural Engineering & Urban Planning, Volume:22 Issue: 2, Dec 2012, P 108Nowadays, with the development of the economy, the demand for energy is increasing rapidly while the energy supply is growing shorter and shorter. Researches indicate that energy consumption in the residential sector counts for the main parts of the total energy consumption. This paper evaluates the effect of building orientation on exposure to the solar radiation in a NESW orientated case of urban residence in semi-arid climate. SW envelope, with an annual exposure of 13.52 percent, only improves the thermal comfort of the house because of its annual climatic radiation trend. For vertical NE surface with insufficient winter radiation exposure of (0 %) and cool summer radiation exposure of (3.38 %), it could be concluded that the NE elevation is suitable and in demand in the summer but not in the winter. Total annual horizontal solar radiation exposure percentage of (83.04%) indicates that huge non- climatic roof radiation is inappropriate and should be omitted. Finally, the effects of solar radiation envelopes on electricity and natural gas consumption were thoroughly discussed.Keywords: Building orientation, Energy consumption, Residential sector, Solar radiation
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International Journal of Architecture and Urban Development, Volume:2 Issue: 1, Winter 2011, PP 51 -56The purpose of this research is to found the impact of built area and occupant number on winter gas consumption in the residential building sector of Iran, Shiraz.Sothe annually and monthly gas consumption data through 19 houses were analyzed to achieve the heating energy consumption and operation month.The average operation months of gas heating consumption were from first of November up to end of April and the average maximum monthly gas consumption of sample houses was in February. On the other hand, the case study houses have different built area from 80 t0 200 m2andoccupant number from 3 to 7 persons.It was concluded that the biggest and busiest houses did not consume the maximum annual gas consumption and so the smallest and low occupant ones about minimum consumption. Therefore, the samples heating consumption was not so related to the built area and occupant number. The occupant culture and behavior was more supposed to be related with energy consumption in residential sector of the city.Keywords: Energy consumption, heating gas consumption, Residential sector, built area, occupant number
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