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  • basics:building_physics_-_basics (16)
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The Passive House in summer
25 Hits, Last modified: 4 years ago
frequently raised in the public debate.((First of all, some general remarks concerning the laws of phys... In addition, the internal heat sources are very small due to the electricity-saving concept. These are ... built, using data from the simplified model, but all zones summed up) during summer period (mid-terrac... ly temperatures of 25 °C or more are prevalent in all rooms, during very hot periods between 30th Augus
Passive House – the next decade | Determining application-specific PER factors @basics:passive_house_-_assuring_a_sustainable_energy_supply:passive_house_the_next_decade
24 Hits, Last modified: 15 months ago
S</sub> and η<sub>SS</sub> are the respective overall seasonal efficiency rates. The PER factor can the... === In this paper, domestic electricity includes all electricity used in a dwelling except for power u... tioning; in other words, electricity for: \\ * all domestic appliances (refrigerators, washing machi... ded by renewable primary power generators; almost all buffering results from an improvement of grid sim
Energy efficiency – the key to future energy supply
21 Hits, Last modified: 3 years ago
fficiency does not mean that one has to feel cold all the time. Improved efficiency means that **it is... e consuming less energy at the same time**. It is all about intelligent technology and not about having... aphy|subsequent good insulation]] of an external wall saves almost 90% of the losses of that wall * and an efficient heat recovery system reduces the ven
Heated basement @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
21 Hits, Last modified: 3 years ago
ement ceiling and the connection of the basement wall to the basement floor slab. In the Ground workshe... ues for the basement floor slab and the basement wall are determined using the approximation function i... ne the Ψ-value, the conductances of the exterior wall, the basement wall and the basement floor slab must also be calculated. The conductance of the exterio
Economy and financing of efficiency: new buildings, renovation and step by step retrofit @basics:affordability:investing_in_energy_efficiency
20 Hits, Last modified: 6 years ago
meworks that fit more or less in this scheme: not all methods though fulfil the requirement of reflecti... ic Assessment of Energy Efficiency ===== The overall longevity of buildings implies that short payback... e present values refer to the same point in time, all receipts and expenditures become comparable, but ... on. \\ The net present value (NPV) is the sum of all present values: costs (or payments, e.g. the inve
Internal heat capacity
19 Hits, Last modified: 4 years ago
ction vs. thermal storage]], explains how the overall (effective) internal heat capacity of a building ... simulation programmes. This is only possible if all other boundary conditions and influencing paramet... al heat capacity cannot be clearly separated from all other effects. In order to obtain the results gi... \ a maximum of 175 m² in the end (KS-solid block wall with\\ blocks of 24 cm thickness). An increase in
Passive House and the Sustainable Development Goals (SDGs): Connecting an international building standard with global aims
19 Hits, Last modified: 4 years ago
chieve a better and a more sustainable future for all’’ [UN 2020] they cover a wide array of fields and... rd and its association with the SDGs===== Out of all the SDGs set by the UN, only certain topics can b... on and accountability** ^ | 1 |End poverty in all its forms| X | X | X | | | | | | | 3 |Ensure healthy lives and promote wellbeing for all| X | | | | | | | | | 4 |Ensure inclusive and
Greenhouse effect and climate protection @basics:energy_and_ecology
19 Hits, Last modified: 5 years ago
the Earth's atmosphere in large quantities. Rainfall and vegetation has washed out and bound this CO<s... PCC (Website)]], which has scientists from almost all countries of the world as members.\\ \\ |{{:picop... , which do not hurt - but open an opportunity for all people on the planet.\\ \\ ===== What are the re... st and foremost a sign of inefficiency **. Above all, obsolete and inefficient buildings, vehicles, ma
Economic feasibility of Passive House design @basics:affordability
17 Hits, Last modified: 6 years ago
ic feasibility of Passive House Design in general all relevant cost data have to be accounted for. The ... of PH buildings**}}] The Passive House buildings all have a mechanical ventilation system with heat re... sufficient (hygienic) continuous air change. For all other configuration features see in table in figure 2. \\ The costs of all components relevant for energy savings are accoun
Thermal comfort parameters @basics:building_physics_-_basics:thermal_comfort
16 Hits, Last modified: 5 years ago
ment near to a Passive House window: Due to the small temperature difference between window surface and... air, the speed of air sinking at the window is small. At the floor, approximately 10 cm horizontally f... radiant temperature and air temperature remains small, * the difference in the radiant temperature in various directions remains small (less than 5 °C, known as the "radiation temperat
Are Passive Houses cost-effective? @basics:affordability:investing_in_energy_efficiency
15 Hits, Last modified: 3 years ago
ails would have to be improved: * The external wall insulation should be increased to 300 mm and the ... to 115 mm lime sandstone; this way the external wall will only be slightly thicker than it was before ... 00 mm of insulation (0.032 W/(mK)); the external wall will therefor be only 370 mm thick and thus thinn... f the upper floor of the Passive House.**//|\\ \\ All external walls are evenly plastered, the roof str
Interior walls on floor slabs @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
15 Hits, Last modified: 4 years ago
matter of fact the thermal bridge of an interior wall on a floor slab depends on the distance from the ... mproves with increasing distance of the interior wall to the floor slab edge. [{{ :picopen:innenwand_a... a specific building the position of the interior wall is known. The Ψ-value can then be calculated base... bcalculation:examples:ewfs|section on "Exterior wall on floor slab"]]. For this, first a conductance w
The Passive House – historical review
14 Hits, Last modified: 3 years ago
yer of felt, next air-tight linoleum, and last of all an inner panelling. The ceiling of the saloon and... htness]]. Information about this was gained above all in Sweden. [[http://j.mp/Arne_Elmroth|Prof. Arne ... frames.") Due to this the windows were often small or they had to be elaborately covered with tempor... \\ These aren't Passive Houses, but it's only a small step further to the Passive House. Hans Eek was
What is a Passive House?
14 Hits, Last modified: 3 years ago
ormally don't heat a passive hosue using oil. A small heat pump is a much better and cheaper solution, ... 31 Januar 2008]] calls for its implementation by all member states by 2021. [[http://europa.eu/rapid/p... nt and the Council fixed 2020 as a deadline]] for all new buildings to be nearly zero energy buildings.... |:::| \\ \\ ===== The Passive House has got it all ===== ==== Comfort ==== The Passive House Stand
Introduction - Passive House buildings in different climates @basics:passive_houses_in_different_climates
14 Hits, Last modified: 6 years ago
overning the design of Passive House buildings in all climates around the globe.| \\ \\ \\ ===== Passiv... ld Passive House buildings. But it would be a pitfall just to apply the Central European Passive House ... n. On the other hand: The goals are the same in all climates and for all countries. Also, physics is the same all around the world. So the problem to buil
Exterior wall on floor slab @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
14 Hits, Last modified: 3 years ago
What defines thermal bridge free design? @basics:building_physics_-_basics
13 Hits, Last modified: 3 years ago
Efficiency vs. Efficiency Factor
12 Hits, Last modified: 7 years ago
Heating load in Passive Houses @basics:building_physics_-_basics
12 Hits, Last modified: 6 years ago
Passive House – the next decade @basics:passive_house_-_assuring_a_sustainable_energy_supply
11 Hits, Last modified: 15 months ago
Local thermal comfort @basics:building_physics_-_basics:thermal_comfort
11 Hits, Last modified: 6 years ago
Primary Energy Renewable PER @basics:energy_and_ecology
10 Hits, Last modified: 15 months ago
Planning criteria for Passive Houses in New Zealand @basics:passive_houses_in_different_climates
10 Hits, Last modified: 6 years ago
Unheated basement @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
10 Hits, Last modified: 3 years ago
Primary energy – quantifying sustainability @basics:energy_and_ecology
9 Hits, Last modified: 5 years ago
Philips Experimental House Research 1974ff: Passive versus Active Measures in Europe & America @basics:the_passive_house_-_historical_review
8 Hits, Last modified: 5 years ago
Life cycle cost analysis of energy interventions in 18 reference buildings @basics:affordability
7 Hits, Last modified: 6 years ago
Zero-energy and zero heating energy houses @basics:energy_and_ecology
6 Hits, Last modified: 6 years ago
Passive House – the next decade | Methodology @basics:passive_house_-_assuring_a_sustainable_energy_supply:passive_house_the_next_decade
6 Hits, Last modified: 15 months ago
Efficiency of household appliances and their impact on the primary energy demand of residential buildings @basics:passive_house_-_assuring_a_sustainable_energy_supply
5 Hits, Last modified: 5 years ago
Recommended procedure for calculating thermal bridges of components in contact with the ground @basics:building_physics_-_basics:thermal_bridges:tbcalculation:ground_contact
5 Hits, Last modified: 6 years ago
The Passive House - definition
4 Hits, Last modified: 7 years ago
Passive House – On-grid or Off-grid? @basics:passive_house_-_assuring_a_sustainable_energy_supply
4 Hits, Last modified: 5 years ago
Cost-effectiveness analysis @basics:affordability:investing_in_energy_efficiency
4 Hits, Last modified: 6 years ago
Special features and characteristics of components in contact with the ground @basics:building_physics_-_basics:thermal_bridges:tbcalculation:ground_contact
4 Hits, Last modified: 4 years ago
Thermal comfort @basics:building_physics_-_basics
3 Hits, Last modified: 3 years ago
Life Cycle energy balances, Embodied energy and the Passive House Standard @basics:energy_and_ecology
3 Hits, Last modified: 4 years ago
Renewable sources of energy @basics:energy_and_ecology
3 Hits, Last modified: 6 years ago
Energy and ecology
2 Hits, Last modified: 11 months ago
Passive House buildings in different climates
2 Hits, Last modified: 3 years ago
Renewable primary energy demand in residential buildings with high energy intensity
2 Hits, Last modified: 5 years ago
Renewable primary energy demand in residential buildings with high energy intensity @basics:passive_house_-_assuring_a_sustainable_energy_supply
2 Hits, Last modified: 5 years ago
Superior thermal protection is affordable @basics:affordability:investing_in_energy_efficiency
2 Hits, Last modified: 6 years ago
Thermal bridge calculation @basics:building_physics_-_basics:thermal_bridges
2 Hits, Last modified: 12 months ago
Adaptive versus Heat Balance Comfort Models @basics:building_physics_-_basics:thermal_comfort
2 Hits, Last modified: 6 years ago
Factors that influence the energy balance and affordability of non-residential EnerPHit projects @basics:affordability:investing_in_energy_efficiency:economic_feasibility_of_passive_house_retrofits
2 Hits, Last modified: 7 years ago
Basic principle for calculating thermal bridges @basics:building_physics_-_basics:thermal_bridges:tbcalculation
2 Hits, Last modified: 3 years ago
Heat transfer @basics:building_physics_-_basics
1 Hits, Last modified: 3 years ago
Definition and effects of thermal bridges @basics:building_physics_-_basics:thermal_bridges
1 Hits, Last modified: 3 years ago

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