planning:non-residential_passive_house_buildings
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planning:non-residential_passive_house_buildings [2021/06/24 16:43] – nsukhija | planning:non-residential_passive_house_buildings [2025/02/12 19:59] (current) – [Passive House fire stations] jgrovesmith | ||
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- | ====== Non-residential Passive House buildings ====== | + | ====== Non-residential Passive House buildings ====== |
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- | The Passive House Standard allows for extremely high levels of comfort as well as enormous energy savings - not only for residential buildings. The Passive House Standard has been successfully realised in many different types of buildings including offices, hostels, factories, administrative buildings, sports halls, schools and kindergartens. \\ | + | |
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+ | The Passive House Standard allows for extremely high levels of comfort as well as enormous energy savings - not only for residential buildings. The Passive House Standard has been successfully realised in many different types of buildings including offices, hostels, factories, administrative buildings, sports halls, schools and kindergartens. | ||
+ | Browse the [[https:// | ||
+ | \\ | ||
===== Passive House schools ===== | ===== Passive House schools ===== | ||
- | + | Passive House school buildings are particularly interesting. Several school buildings have been realised using this standard and experiences gained from their use are now available: The Passive House Standards allows for energy savings of around 75% in comparison with average new school buildings - and of course there is no need for an additional heating or cooling system. The additional investment costs are within reasonable limits.\\ | |
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- | The Passive House Standard is a sensible alternative, | + | |
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- | Passive House school buildings are particularly interesting. Several school buildings have been realised using this standard and experiences gained from their use are now available: The Passive House Standards allows for energy savings of around 75% in comparison with average new school buildings - and of course there is no need for an additional heating or cooling system. The additional investment costs are within reasonable limits. \\ | + | |
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+ | The Passive House primary school and day nursery in Riedberg Frankfurt a.M. was opened in November 2004 after a construction period of only 14 months. The extra costs for achieving the Passive House Standard were a moderate 5.3 % in comparison with the currently valid EnEV (German energy saving regulations) standard. [[: | ||
+ | Besides great environmental benefits like saving 90 % in heating costs and saving 530 tons of CO< | ||
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===== Passive House office buildings ===== | ===== Passive House office buildings ===== | ||
- | **Certification of Passive House office buildings** - Passive House office | + | Office buildings are a popular typology to be built as Passive House or retrofitted as EnerPHit. |
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+ | Passive House office | ||
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+ | [[: | ||
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+ | Lippe-Bad was built as a pilot projet to demonstrate the Passive House concept for indoor swimming pools.}}] | ||
===== Passive House swimming pools ===== | ===== Passive House swimming pools ===== | ||
- | [{{ : | + | Swimming pools are a very energy intensive building typology. The energy demand can be reduced significantly by consistently applying |
+ | Go to the [[.: | ||
- | **Energy | + | The general concept and pracitcal design guidelines for energy |
- | The Passive house concept can be applied as a guiding principle for swimming pool buildings as well; the objective is to achieve optimal thermal comfort with significantly reduced energy consumption. The following article is a combination of different publications that deal with the basic principles of applying the Passive House concept for public indoor swimming pools. \\ | ||
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+ | ===== Passive House hospitals ===== | ||
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+ | Conventional hospitals are among the buildings with very high energy consumption values and incur special demands for the comfort of patients which must be met in a reliable way. The application of the Passive House concept appears extremely interesting in this context. A common misunderstanding is the assumption that energy efficiency efforts are only concerned with the minimisation of the heating demand. The basic idea however is to achieve a significant reduction in the demand for all energy-relevant applications in a building while maintaining the same level of comfort. | ||
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+ | [[.: | ||
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+ | ===== Energy efficiency in cafeterias and commercial kitchens ===== | ||
+ | Commercial kitchens are one of the most energy-intensive areas of buildings. In addition to cooking, dishes are washed and food is kept cool, all of which require a lot of energy; in addition, each of these processes creates a lot of internal heat and moisture, which has to be drawn out of the kitchen with sufficiently dimensioned ventilation systems due to which a large part of the energy used in commercial kitchens is devoted to ventilation. | ||
- | ===== Passive House concept in hospitals ===== | + | [[.: |
- | [{{ : | + | |
- | **Baseline study - implementing the Passive House concept in hospitals** \\ | + | |
- | //This article is published in the [[http:// | + | ---- |
- | Evaluations of consumption statistics show that hospitals are among the buildings that consume the most energy. To evaluate and tap the conservation potential of retrofits and energy-efficient new builds, the State of Hesse studied basic issues for the implementation of the Passive House Standard in hospitals while constructing a new build for the Frankfurt Höchst Clinic. | + | [{{ :picopen:fig_6_rewe_in_hannover.png? |
- | [[http:// | + | ===== Passive House retail |
- | \\ | + | |
- | **Aspects | + | There are several examples |
- | //This article is published in the [[http:// | + | Watch the [[:webinars: |
- | Certain areas of hospitals require great air flows, with especially high air exchange rates found in operation rooms, labs, and areas where utensils are sterilized. Ventilation systems therefore make up a significant share of total energy demand. In addition, a large number of individual components are needed to filter and purify | + | Additional relevant background information on selected topic relevant for retail buildings can also be found in the 40th edition |
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+ | * [[.: | ||
+ | * [[: | ||
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+ | ===== Passive House laboratories ===== | ||
- | ===== Energy efficiency in cafeterias | + | Passive House laboratories are a very specific form of non-residential building. Moreover, the term describes a very heterogeneous mixture of usages, ranging from light-duty, slightly extended office use to heavily ventilated buildings with very strong internal heat sources |
+ | Read more about [[.: | ||
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- | {{ : | + | ===== Passive House fire stations ===== |
- | [[Commercial kitchens and cafeterias]] | + | Examples of Passive House fire stations: |
+ | * Heidelberg, Germany: [[https:// | ||
+ | * Vancouver, Canada: Fire Hall No.17 [[https:// | ||
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- | ===== Passive House retail | + | ===== Building automation |
- | [{{ : | + | The achievable level of energy efficiency of buildings is mainly determined by the building design and selection of the quality of building components during the planning and execution phases. Consumption later on is also influenced by actual building use. In non-residential buildings, control parameters have an influence to a relevant degree (e.g. operating times, supply temperatures, |
- | //These and more articles can be found in [[http:// | + | |
- | [[planning: | + | Identifying malfunctions |
+ | Last but not least, the perspective of the users should always be considered right from the planning stage, which explicitly includes the technical operations personnel. | ||
- | === Nr.40 Passive House retail establishments | + | [[.:non-residential_passive_house_buildings:building_automation|Read more here]] |
- | * [[phi_publications:PB 40: High-traffic entrance areas| High-traffic entrance areas]] | + | |
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===== Retrofitting non-residential buildings to the Passive House / EnerPHit-standard ===== | ===== Retrofitting non-residential buildings to the Passive House / EnerPHit-standard ===== | ||
- | **Factors that influence the energy balance and affordability of non-residential EnerPHit-projects** | + | **Factors that influence the energy balance and affordability of non-residential EnerPHit-projects** |
- | Does it make sense to retrofit non-residential buildings with Passive House components if the buildings have a lot of internal heat sources? \\ | + | Does it make sense to retrofit non-residential buildings with Passive House components if the buildings have a lot of internal heat sources? \\ [[:basics: |
- | [[basics: | + | |
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=== Nr.48 Using Passive House technology for retrofitting non-residential buildings === | === Nr.48 Using Passive House technology for retrofitting non-residential buildings === | ||
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- | * [[phi_publications: | + | |
- | \\ \\ | + | * [[:phi_publications: |
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====== See also ====== | ====== See also ====== | ||
- | [[http://passiv.de/ | + | [[:phi_publications: |
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- | [[certification:certified_passive_houses:certification_criteria_in_other_languages|Certification criteria for non-residential Passive Houses buildings - Other languages]] \\ | + | |
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- | [[http://passiv.de/ | + | |
- | [[phi_publications: | + | [[:phi_publications: |
- | [[phi_publications: | + | [[:phi_publications: |
- | [[phi_publications: | ||
planning/non-residential_passive_house_buildings.1624545796.txt.gz · Last modified: 2021/06/24 16:43 by nsukhija