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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Energi- och klimatsimulering för nybyggnation av äldreboende med jämförelse mot BBR-krav och Miljöcertifiering

Leppänen, Linnéa January 2018 (has links)
A nursing home for old people is going to be built in Edsbyn, a community in Hälsingland, Sweden. The building needs calculation of energy use to receive a building permit. Seven different indicators in Miljöbyggnad were also examined. Miljöbyggnad is a Swedish environmental certification a building can acquire. In the project some changes in selected parameters of the buildings constructions and installations are examined to see how it affects the need of power to heat and the indoor climate. To obtain answers some simulations in IDA-ICE simulation program have been done together with a literature study. The results show that the building fulfills the requirements of specific energy use and mean value of the U-values that are set in BBR24. The building also fulfills the requirements of the number of primary energy and mean value of the U-values that is set in BBR25. Of the seven indicators in Miljöbyggnad that were examined two received the grade GOLD, three received SILVER and two received BRONZE. When building parameters are varied the results show that the largest difference in heating power is when changing the thickness of insulation and the largest difference in PPD, Predicted Percentage Dissatisfied, is when changing the indoor temperature.
2

Energibesparingslösningar & kostnadsanalys för NNE-hus inför 2021 : En studie om hur en specifik byggnad klarar av de nya BBR25-kraven beroende av uppvärmningskälla och geografiskt läge i Sverige / Energy saving solutions and cost analysis for NNE houses before 2021 : A study on how a specific building meets the new BBR25 requirements depending on the source of heat and geographic location in Sweden

Flygar, David, Jonsson, David January 2018 (has links)
Examensarbetet är gjort med avseendet på att kraven för nyproduktion av småhus skärps i Sverige under sommaren 2018, men även i samtliga EU-länder skall kraven vara genomförda innan år 2021. Kraven är riktade mot den totala energiförbrukningen av nybyggda bostäder i brukstillstånd och att specifik energianvändning som tidigare används ersätts med primärenergi för att räkna ut förbrukningen. Därför står hela byggbranschen inför stora förändringar men framförallt småhustillverkarna där deras tidigare krav med beräkningar utifrån specifik energianvändning inte längre gäller. Primärenergiberäkningen är baserad på specifika energibärare som nu blir betydligt viktigare för beräkningarna samt att formeln ser annorlunda ut vilket leder till nya värden som inte går att jämföra med tidigare kravnivåer. Undersökningen gjordes med hjälp av ett typhus från Vårgårda hus, målet var att huset skulle klara kraven oberoende av vart i landet det är placerat och vald uppvärmningskälla. Men även en viktig aspekt var hur prisskillnaderna på de olika konstruktions- och uppvärmningslösningar faller ut, detta gjordes med programvaran Bidcon för att tydligt se de ingående kostnader för varje fall. För att uppnå detta gjordes en parameterstudie med olika uppvärmningskällor och andra smarta konstruktionslösningar, för att se om huset klarade kraven på fyra olika geografiska lägen i Sverige med hjälp av VIP-Energy. Resultatet visar tydligt att typhuset enbart klarar kraven när det är placerat i Malmö i orginalutförande och inte i Lanna, Örebro län där det är placerat i verkligheten. Det gör att olika besparingslösningar krävs och det mest energieffektiva sättet är att utrusta huset med en Bergvärmepump och ett FTX-system för alla testade zoner. Dock blir det kostnadseffektivast med avseende på slutpriset att använda fjärrvärme med ett FTX-system för att klara kraven i alla de testade geografiska zonerna. / The thesis is done with consideration to the new stricter requirements for production of houses in Sweden during the summer of 2018, but the requirements must also be met in all EU countries before the year 2021. The requirements are directed against the total energy consumption of newly built dwellings at operation stage and that specific energy use previously used is replaced with primary energy to calculate consumption. Therefore, the whole construction industry is facing major changes, but above all house manufacturers where their previous requirements with calculations based on specific energy use are no longer valid. The primary energy calculation is based on specific energy carriers, which is much more important for the calculations, and the formula looks different, which leads to new values that cannot be compared with previous requirements levels. The survey was conducted using a specific house from Vårgårda hus, the goal was that the house would meet the requirements regardless of where in the country it is placed and selected heating source. But another important aspect was how the price differences on the different design and heating solutions panned out, this was done with the software Bidcon to clearly see the input costs for each case. To achieve this, a parameter study with different heating sources and other smart design solutions was made to see if the house passed the requirements of four different geographical locations in Sweden using VIP-Energy. The result shows clearly that our specific house only meets the requirements when it is placed in Malmö in the original design and not in Lanna, Örebro County where it is placed in reality. This means that different savings solutions are required and the most energy efficient way is to equip the house with a geothermal heat pump and an FTX system for all tested zones. However, it will be most cost-effective in terms of the final price to use district heating with an FTX system to meet the requirements of all the tested geographical zones.
3

Green Building : Ett företags energieffektiviseringsarbete i ett byggprojekt samt de krav som ställs för att få byggnaden Green Building klassad.

Andersson, Alexandra January 2009 (has links)
<p>The examination has been performed at Bjerking AB, which is an architectural and engineering company. Bjerking AB has the ambition to be a member of Green Building.</p><p>The Green Building program developed in year 2005 by The European Commission, the program is an environmental system with the aim to improving energy efficiency within the sectors of non-residential buildings. The minimum requirements to participate the program are following: in new-built buildings the calculated energy consumption must be 25 % lower than the requirements in the BBR (Building regulations) and in refurbishment the reduction must be 25 % lower than before the optimization.</p><p>The aim of this study has been to examine and review the company Bjerking AB's energy efficiency work in the project of building the school/kindergarten S:ta Maria Alsike, where the goal is to get this building Green Building classed. A description of requirements to become a member of the Green Building has also accomplished in the thesis.</p><p>The methods performed in this study are literature review, searches on the Internet, studies on the project database for facts/values, calculation of energy consumption and interviews of members of the Green Building. </p><p>The following issues have been dealt with in the report;</p><p>-          Did the building in the project manage the requirement to achieve an   energy consumption that is 25% lower than the requirements in BBR?</p><p>-          What technical measures/system was selected in the building?</p><p>-          What kind of cooperation was the project based on?</p><p>-          What is required for consultancy companies and real estate owners to become members of the Green Building?</p><p>The study of the project and calculation of estimated energy consumption in the building, give the result 47 kWh/m<sup>2</sup>, year. This is 60 % lower than the requirements of BBR. The Green Building requirement is that the building's energy consumption should be at least 25% less than the requirements in BBR. The building fulfills this requirement by a significant margin. It can therefore be concluded that the technical solutions carried out in the building are energy efficient. The project consisted of the cooperation shape “partnering ", which can be assumed to be a good form of cooperation in order to achieve an energy efficient building. The consultancy company Bjerking AB and the landlord Knivsta Pastorat has the potential to become members of Green Building, as Green Building Endorser respective Green Building Partner.</p><p><strong>Keywords:</strong> energy efficiency, requirements of BBR, technical systems, cooperation, consultancy companies, real estate owners, estimated energy consumption, partnering, Green Building Partner, Green Building Endorser.</p> / Utbildningsprogram: Civilingenjör i samhällsteknik, 180 p (270 hp).
4

Green Building : Ett företags energieffektiviseringsarbete i ett byggprojekt samt de krav som ställs för att få byggnaden Green Building klassad.

Andersson, Alexandra January 2009 (has links)
The examination has been performed at Bjerking AB, which is an architectural and engineering company. Bjerking AB has the ambition to be a member of Green Building. The Green Building program developed in year 2005 by The European Commission, the program is an environmental system with the aim to improving energy efficiency within the sectors of non-residential buildings. The minimum requirements to participate the program are following: in new-built buildings the calculated energy consumption must be 25 % lower than the requirements in the BBR (Building regulations) and in refurbishment the reduction must be 25 % lower than before the optimization. The aim of this study has been to examine and review the company Bjerking AB's energy efficiency work in the project of building the school/kindergarten S:ta Maria Alsike, where the goal is to get this building Green Building classed. A description of requirements to become a member of the Green Building has also accomplished in the thesis. The methods performed in this study are literature review, searches on the Internet, studies on the project database for facts/values, calculation of energy consumption and interviews of members of the Green Building.  The following issues have been dealt with in the report; -          Did the building in the project manage the requirement to achieve an   energy consumption that is 25% lower than the requirements in BBR? -          What technical measures/system was selected in the building? -          What kind of cooperation was the project based on? -          What is required for consultancy companies and real estate owners to become members of the Green Building? The study of the project and calculation of estimated energy consumption in the building, give the result 47 kWh/m2, year. This is 60 % lower than the requirements of BBR. The Green Building requirement is that the building's energy consumption should be at least 25% less than the requirements in BBR. The building fulfills this requirement by a significant margin. It can therefore be concluded that the technical solutions carried out in the building are energy efficient. The project consisted of the cooperation shape “partnering ", which can be assumed to be a good form of cooperation in order to achieve an energy efficient building. The consultancy company Bjerking AB and the landlord Knivsta Pastorat has the potential to become members of Green Building, as Green Building Endorser respective Green Building Partner. Keywords: energy efficiency, requirements of BBR, technical systems, cooperation, consultancy companies, real estate owners, estimated energy consumption, partnering, Green Building Partner, Green Building Endorser. / Utbildningsprogram: Civilingenjör i samhällsteknik, 180 p (270 hp).

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