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  • basics:building_physics_-_basics (6)
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Are Passive Houses cost-effective? @basics:affordability:investing_in_energy_efficiency
13 Hits, Last modified: 3 years ago
e external wall insulation should be increased to 300 mm and the brickwork should be reduced to 115 mm... \\ A<sub>N</sub> according to EnEV). Each year, 1330 litres of heating oil are\\ used for heating.**//... *. It gets even better: instead of using about 13300 kWh fuel oil or natural gas, the Passive House o... a loan). The consideration period has been set as 30 years; the building components used will function
Heating load in Passive Houses @basics:building_physics_-_basics
7 Hits, Last modified: 6 years ago
a house with an average occupancy of 1 person per 30 m² of living area, the capacity available is arou... The minimum fresh air flow rate for one person is 30 m<sup>3</sup>/h (according to the DIN 1946 – heal... >K). Fresh air can only be heated by a maximum of 30 K (to 51°C) in order to avoid dust carbonisation ... capacity needed per person: \\ P<sub>pers</sub> = 30 m<sup>3</sup>/h/pers * 0.33 Wh/(m<sup>3</sup>K) *
The Passive House in summer
5 Hits, Last modified: 4 years ago
eptember of the reference year, they even rise to 30 °C. **Except for a few days during this hot perio... ncrease from a level of barely **25° up to 28 and 30°C**. The surface temperatures are still somewhat... oportions in the south-facing facade: * about 30% with triple glazing and low-e coating * abo... eviation from the ideal southern orientation of ± 30° at the most**. * Then however, overheating e
Philips Experimental House Research 1974ff: Passive versus Active Measures in Europe & America @basics:the_passive_house_-_historical_review
5 Hits, Last modified: 5 years ago
sulting heating requirement ranged between 20 and 30 kWh/m2a - i. e. more than a factor of 15 below th... Central and Northern Europe, window areas beyond 30 – 50% of the South façade do not lead to addition... nd Bestand”, Bundesbaublatt, H. 1-2, Feb. 2000, p.30 - 34, * Steinmüller, B. (1998) (ed.): Nachhal... chaftliche Strategien für den Klimaschutz, Berlin 30 Nov. 2000, publ. in KfW-Research Nr. 25, Mittelst
Introduction - Passive House buildings in different climates @basics:passive_houses_in_different_climates
4 Hits, Last modified: 6 years ago
Superior thermal protection is affordable @basics:affordability:investing_in_energy_efficiency
4 Hits, Last modified: 6 years ago
Local thermal comfort @basics:building_physics_-_basics:thermal_comfort
4 Hits, Last modified: 6 years ago
:picopen:3warmfenster_thermographie_mit_logo.png?300 }}|{{ :picopen:2isolierglas_thermographie_mit_logo.png?300 }}|{{ :picopen:2waermeschutzglas_thermographie_m
The Passive House - definition
3 Hits, Last modified: 7 years ago
e is a building, for which thermal comfort (ISO 7730) can be achieved solely by post-heating or post-c... e good indoor air quality, one person needs about 30 m³ of fresh air per hour. This supply air can onl... a temperature of approx. 21°C (comfort, see ISO 7730). From this the heat flow can be calculated:\\ \\ |**30 m<sup>3</sup>/hr/pers * 0.33 Wh/(m<sup>3</sup>K)
Heated basement @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
3 Hits, Last modified: 3 years ago
2d} = \dfrac{\dot{q}}{T_i-T_e} = \dfrac{38{,}123}{30} = 1{,}2708 \, \dfrac{\text{W}}{\text{m} \cdot \t... KW} = \dfrac{\dot{q}}{T_i-T_e} = \dfrac{22{,}190}{30} = 0{,}7397 \, \dfrac{\text{W}}{\text{m} \cdot \t... 2d} = \dfrac{\dot{q}}{T_i-T_e} = \dfrac{29{,}588}{30} = 0{,}9863 \, \dfrac{\text{W}}{\text{m} \cdot \t
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
kWh/(m²a) for Classic, 45 kWh/(m²a) for Plus and 30 kWh/(m²a) for Premium. However, in case of specia... l_buildings|recommendations for Passive Houses]]: 30 m³/h per person, requirement for extract zones (b
Economic feasibility of Passive House design @basics:affordability
2 Hits, Last modified: 6 years ago
hole PH building were about 1200 €/m² (cost group 300 building envelope and cost group 400 building se... stant interest rate| | lifetime of components | **30 a** | building service: ventilation with heat recovery, radiators (average value)| | " | **30 a** | windows| | " | **50 a** | termal insulatio
Greenhouse effect and climate protection @basics:energy_and_ecology
2 Hits, Last modified: 5 years ago
y efficiency of the electrical traction is around 30% and can still be increased quite considerably.\\... set by the standards (e.g. comfort standard ISO 7730) multiplied with an extensive variable which desc... gy consumption by a factor of 2 in the next 20 to 30 years through improved efficiency while also impr
Zero-energy and zero heating energy houses @basics:energy_and_ecology
2 Hits, Last modified: 6 years ago
\\ \\ |{{ :picopen:energie_autarkes_solarhaus.jpg?300 }}| |**//Energy-autarchic house of the ISE in Fr
Passive House – On-grid or Off-grid? @basics:passive_house_-_assuring_a_sustainable_energy_supply
2 Hits, Last modified: 5 years ago
% of the total load; and in a Passive House still 30 to 60%. So, shifting the power drawn from the grid for 10 to 30 hrs is an option given by Passive House buildings
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
Exterior wall on floor slab @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
2 Hits, Last modified: 3 years ago
Internal heat capacity
1 Hits, Last modified: 3 years ago
Passive House - Assuring a sustainable energy supply
1 Hits, Last modified: 13 months ago
Passive House and the Sustainable Development Goals (SDGs): Connecting an international building standard with global aims
1 Hits, Last modified: 4 years ago
The Passive House – historical review
1 Hits, Last modified: 3 years ago
What is a Passive House?
1 Hits, Last modified: 3 years ago
Life cycle cost analysis of energy interventions in 18 reference buildings @basics:affordability
1 Hits, Last modified: 6 years ago
Life Cycle energy balances, Embodied energy and the Passive House Standard @basics:energy_and_ecology
1 Hits, Last modified: 4 years ago
Primary energy – quantifying sustainability @basics:energy_and_ecology
1 Hits, Last modified: 5 years ago
Efficiency of household appliances and their impact on the primary energy demand of residential buildings @basics:passive_house_-_assuring_a_sustainable_energy_supply
1 Hits, Last modified: 4 years ago
Passive House – the next decade @basics:passive_house_-_assuring_a_sustainable_energy_supply
1 Hits, Last modified: 13 months ago
Passive Houses in hot, humid climates @basics:passive_houses_in_different_climates
1 Hits, Last modified: 7 years ago
Economy and financing of efficiency: new buildings, renovation and step by step retrofit @basics:affordability:investing_in_energy_efficiency
1 Hits, Last modified: 6 years ago
Thermal Bridges Catalogue @basics:building_physics_-_basics:thermal_bridges
1 Hits, Last modified: 9 months ago
Adaptive versus Heat Balance Comfort Models @basics:building_physics_-_basics:thermal_comfort
1 Hits, Last modified: 6 years ago
Passive House – the next decade | Determining application-specific PER factors @basics:passive_house_-_assuring_a_sustainable_energy_supply:passive_house_the_next_decade
1 Hits, Last modified: 13 months ago

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