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Energy Efficiency in Domestic Electrical Energy Use @sinfonia
24 Hits, Last modified: 4 years ago
consulting in Innsbruck. Among them was a higher than average share of retired people and only few fami... on projects in Innsbruck. Among them was a higher than average share of retired people and only few fami... average 43 kWh/(m²a), with the lowest value less than half the average and the highest more than twice this value. The area-specific value’s spread is thus m
The Passive House in summer @basics
21 Hits, Last modified: 4 years ago
he surface temperatures are still somewhat warmer than the indoor air; however, this temperature increase is less than about ½ degree for the highly insulated solid bui... ill acceptable if h<sub>θ>25°C</sub> remains less than or equal to 10% of the year [[Basics:summer#Liter... 96] ]]. This value has only been exceeded by less than 1 % in the reference case being considered here.\
Energy efficiency of the Passive House Standard: Expectations confirmed by measurements in practice @operation:operation_and_experience:measurement_results
21 Hits, Last modified: 3 years ago
}}] \\ This average value is considerably lower than the average heat consumption in existing housing ... e low-energy settlement is at least **41.5 % less than today's average consumption**. Incidentally, alth... ction standard of this settlement is still better than the requirements of the currently applicable Germ... tion of the Passive House settlement is 80% lower than that of the low energy settlement in Niedernhause
PB 41: Planning tools for the summer situation in non-residential buildings @phi_publications:pb_41
19 Hits, Last modified: 6 years ago
, these internal loads may be considerably higher than those in residential buildings. Added to this is ... uilding in time steps which are usually much less than one hour. Heat transfer processes in building com... in the solar supply alone is thus already greater than 15 kWh/(m²a). However, all calculation methods h... it becomes apparent that temperatures much higher than 30°C may be reached even on sunny days in Februar
Are Passive Houses cost-effective? @basics:affordability:investing_in_energy_efficiency
19 Hits, Last modified: 3 years ago
e is more stable, more secure and more worthwhile than the alternative. Whoever wants “easy money” shoul... y the external wall will only be slightly thicker than it was before (about 25 mm) (see __**Fig. 2**__).... ll therefor be only 370 mm thick and thus thinner than the original one}// * In the roof, the insula... \ its thermal protection is still somewhat better than that required\\ by energy efficiency regulations
Don’t save on the insulation @planning:thermal_protection
12 Hits, Last modified: 5 years ago
ist. Taking no action will be much more expensive than carrying out insulation measures here and now! Th... | 19.5°C | ^ Corner behind cabinet | less than 5°C\\ {{ :picopen:wassertropfen_m.png }} | less than 12°C\\ {{ :picopen:schimmel_myzel.png }} | ov... in 2006; in 2011 the energy prices have been more than 35% higher, but in 2016-2020 the average level of
Internal heat capacity @basics
10 Hits, Last modified: 3 years ago
the smallest and highest daily value is not more than 4 °C. It is evident that during the hot spell it is significantly cooler in the house than the peak value of the temperature outside. The r... al temperature is almost always considerably less than the indoor temperature and the solar gains are us... rgy will be required for this, which will be more than the amount saved by the increased storage capacit
"Saving energy" in the sense of sufficiency @efficiency_now
10 Hits, Last modified: 3 years ago
ximately 3 degrees Celcius (5.4 Fahrenheit) lower than that with just a long-sleeved shirt. Lowering the... ss, an energy-saving remains, but this is smaller than is often assumed. Even in already well-insulated ... ht setback" still saves energy, even if it's less than in uninsulated buildings, simply because the temp... s are readily available today.)). If it is higher than 55%, the moisture should be reduced by employing
Passive House – the next decade | Determining application-specific PER factors @basics:passive_house_-_assuring_a_sustainable_energy_supply:passive_house_the_next_decade
10 Hits, Last modified: 14 months ago
ts are still quite low for storage cycles of less than 106 hours. Seasonal storage capacity (with a little more than two cycles but low efficiency) accounts for only ... and; the storage capacity required is low at less than 62 Nm³ (cubic meters at normal conditions), and t... ly system, since it is not needed at all for more than half the year (summer!) and then is disproportion
The world’s first Passive House, Darmstadt-Kranichstein, Germany @examples:residential_buildings:multi-family_buildings:central_europe
10 Hits, Last modified: 16 months ago
e rate (n<sub>50</sub>-value) that was still less than 0.3 h<sup>-1</sup>** [[examples:residential_build... he existing gas burner has done its work for more than 30 yrs and would have to be exchanged anyhow.)). ... kWh per square meter of floor space, this is more than twice the Passive House heating demand. This was ... acteristics: * heat recovery efficiency of more than 80%, * electricity consumption of less than 0.
Primary energy – quantifying sustainability @basics:energy_and_ecology
9 Hits, Last modified: 5 years ago
nmental damage from renewable energy is far lower than these from fossil or nuclear sources - but we can... ndard the heating energy demand decreases to less than half of the average value of old buildings**. Now... ctricity is as high as that for the heating (more than 40 % respectively). With the EnEV, the total prim... e to **reduce the electricity consumption by more than 50 %** in the Passive House in Darmstadt-Kranichs
Thermal comfort parameters @basics:building_physics_-_basics:thermal_comfort
9 Hits, Last modified: 5 years ago
he number of dissatisfied due to draughts is less than 6%) * the difference between radiant tempera... erature in various directions remains small (less than 5 °C, known as the "radiation temperature asymmet... the indoor air temperature stratification is less than 2 °C between the head and ankles of a seated pers... ceived temperatures in the room change by no more than 0.8 °C at different locations. Regarding the las
Passive House Schools - Boundary Conditions @planning:non-residential_passive_house_buildings:passive_house_schools
9 Hits, Last modified: 4 years ago
o be used if external temperatures are low (lower than ~14°C). It is important in this case that the hum... theless, for school buildings there is more scope than there is for residential buildings, due to the ma... nual heating demand according to the PHPP is less than or equal to 15 kWh/(m²a) __(based on the total ne... riterion is derived in a completely different way than the criterion which applies to residential buildi
The Passive House – historical review @basics
8 Hits, Last modified: 3 years ago
Southern China. In this climate, cooling rather than heating, is required.**\\ \\ In many climate regi... 9) was calculated as having smaller demand values than a Passive House, but unfortunately the consumptio... energy consumption for heating has remained less than 10 kWh/(m²a) since 1991, the savings in comparison with traditional buildings are higher than 90%. Very good indoor air quality has always been
What is a Passive House? @basics
8 Hits, Last modified: 3 years ago
st of practice.\\ \\ Yet, a Passive House is more than just a low-energy building.\\ \\ * Passive Hous... of heating oil, Passive House buildings use less than 1.5 litres per square meter of living space per year – far less than typical low-energy buildings((Of cousre you norma... s where buildings require more energy for cooling than for heating. * Passive House buildings are al
Greenhouse effect and climate protection @basics:energy_and_ecology
8 Hits, Last modified: 5 years ago
Classic, Plus, Premium: The Passive House classes and how they can be reached @certification:passive_house_categories
8 Hits, Last modified: 14 months ago
Types of glazing and their specific values @planning:thermal_protection:windows
8 Hits, Last modified: 3 years ago
Types of ventilation @planning:building_services:ventilation:basics
8 Hits, Last modified: 2 years ago
Introduction - Passive House buildings in different climates @basics:passive_houses_in_different_climates
7 Hits, Last modified: 6 years ago
Thermal insulation @planning:thermal_protection
7 Hits, Last modified: 4 years ago
Insulation vs. thermal mass @planning:thermal_protection:thermal_protection_works
7 Hits, Last modified: 3 years ago
Efficiency NOW
6 Hits, Last modified: 15 months ago
Efficiency vs. Efficiency Factor @basics
6 Hits, Last modified: 6 years ago
Heat losses caused by drain pipes in the PHPP @sinfonia
6 Hits, Last modified: 3 years ago
Life Cycle energy balances, Embodied energy and the Passive House Standard @basics:energy_and_ecology
6 Hits, Last modified: 4 years ago
Introduction: Retail stores as Passive Houses @planning:non-residential_passive_house_buildings
6 Hits, Last modified: 7 years ago
Baseline study - implementing the Passive House concept in hospitals @planning:non-residential_passive_house_buildings:ph_hospitals
6 Hits, Last modified: 2 years ago
Insulation works – Evidence no.1 "Measurements at a highly insulated wall" @planning:thermal_protection:thermal_protection_works
6 Hits, Last modified: 3 years ago
Heating load in Passive Houses @basics:building_physics_-_basics
5 Hits, Last modified: 6 years ago
Zero-energy and zero heating energy houses @basics:energy_and_ecology
5 Hits, Last modified: 6 years ago
PER-factors for electricity use: Location & application specific decarbonisation @certification:passive_house_categories
5 Hits, Last modified: 14 months ago
Local thermal comfort @basics:building_physics_-_basics:thermal_comfort
5 Hits, Last modified: 6 years ago
Riedberg Passive House School, Frankfurt, Germany @examples:non-residential_buildings:passive_house_schools
5 Hits, Last modified: 6 years ago
Internal heat gains in relation to living area @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
5 Hits, Last modified: 3 years ago
PHPP - validated and proven in practice @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
5 Hits, Last modified: 12 months ago
Aspects of efficient ventilation in hospitals @planning:non-residential_passive_house_buildings:ph_hospitals
5 Hits, Last modified: 3 years ago
Energy efficiency – the key to future energy supply @basics
4 Hits, Last modified: 3 years ago
If you do it, do it right! @efficiency_now
4 Hits, Last modified: 3 years ago
List of all released conference proceedings from 2015 to 2018 @phi_publications
4 Hits, Last modified: 7 years ago
Renewable sources of energy @basics:energy_and_ecology
4 Hits, Last modified: 6 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
4 Hits, Last modified: 5 years ago
Planning criteria for Passive Houses in New Zealand @basics:passive_houses_in_different_climates
4 Hits, Last modified: 6 years ago
Economic analysis for the retrofit of a detached single family house to the EnerPHit standard @planning:refurbishment_with_passive_house_components
4 Hits, Last modified: 6 years ago
Economy and financing of efficiency: new buildings, renovation and step by step retrofit @basics:affordability:investing_in_energy_efficiency
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
Why build an airtight house? – Leakage problems @planning:airtight_construction:general_principles
4 Hits, Last modified: 6 years ago
Passive House schools – How to go about it @planning:non-residential_passive_house_buildings:passive_house_schools
4 Hits, Last modified: 8 years ago
Airtightness and airtightness measurement @planning:refurbishment_with_passive_house_components:thermal_envelope
4 Hits, Last modified: 10 months ago
Passive House Institute publications
3 Hits, Last modified: 10 months ago
Cloud Plugin
3 Hits, Last modified: 3 years ago
webinars
3 Hits, Last modified: 10 months ago
The Passive House - definition @basics
3 Hits, Last modified: 7 years ago
List of all released conference proceedings from 2019 to 2023 @phi_publications
3 Hits, Last modified: 2 years ago
What defines thermal bridge free design? @basics:building_physics_-_basics
3 Hits, Last modified: 3 years ago
Ventilation @planning:building_services
3 Hits, Last modified: 18 months ago
Dynamic simulation of a building's thermal performance @planning:calculating_energy_efficiency
3 Hits, Last modified: 5 years ago
PHPP – Passive House Planning Package @planning:calculating_energy_efficiency
3 Hits, Last modified: 12 months ago
Step-by-step deep retrofit and building integrated façade/roof on a 'million program' house @planning:refurbishment_with_passive_house_components
3 Hits, Last modified: 5 years ago
Cost-effectiveness analysis @basics:affordability:investing_in_energy_efficiency
3 Hits, Last modified: 6 years ago
Definition and effects of thermal bridges @basics:building_physics_-_basics:thermal_bridges
3 Hits, Last modified: 3 years ago
Outdoor thermography @planning:thermal_protection:thermal_protection_works
3 Hits, Last modified: 3 years ago
Comparison of in-situ measurements and hygrothermal simulations of four different interior insulation systems @planning:thermal_protection:thermal_protection_works:comparison_of_in_situ_measurements_and_hygrothermal_simulations_of_four_different_interior_insulation_systems
3 Hits, Last modified: 6 years ago
Affordability @basics
2 Hits, Last modified: 18 months ago
Building Criteria: Overview of Changes @certification
2 Hits, Last modified: 3 years ago
Certification of terraced houses and semi-detached/duplex houses according to Passive House Institute criteria @certification
2 Hits, Last modified: 3 years ago
Immediate measures @efficiency_now
2 Hits, Last modified: 3 years ago
List of articles from the Research Group for Cost-effective Passive Houses @phi_publications
2 Hits, Last modified: 3 years ago
Airtight construction @planning
2 Hits, Last modified: 10 months ago
Calculation of heat losses of drain pipes @planning
2 Hits, Last modified: 11 months ago
SINFONIA Condensation Tool @sinfonia
2 Hits, Last modified: 5 years ago
Life cycle cost analysis of energy interventions in 18 reference buildings @basics:affordability
2 Hits, Last modified: 6 years ago
Passive House – On-grid or Off-grid? @basics:passive_house_-_assuring_a_sustainable_energy_supply
2 Hits, Last modified: 5 years ago
Passive House – the next decade @basics:passive_house_-_assuring_a_sustainable_energy_supply
2 Hits, Last modified: 14 months ago
Philips Experimental House Research 1974ff: Passive versus Active Measures in Europe & America @basics:the_passive_house_-_historical_review
2 Hits, Last modified: 5 years ago
Quality Assurance: Nuremberg case study @construction:quality_assurance
2 Hits, Last modified: 5 years ago
Airtightness measurements in Passive Houses @planning:airtight_construction
2 Hits, Last modified: 2 years ago
Energy balances - Background @planning:calculating_energy_efficiency
2 Hits, Last modified: 5 years ago
Windows in a step-by-step retrofit @planning:refurbishment_with_passive_house_components
2 Hits, Last modified: 9 years ago
Adaptive versus Heat Balance Comfort Models @basics:building_physics_-_basics:thermal_comfort
2 Hits, Last modified: 6 years ago
Checklist: Test reports of airtightness measurements @planning:airtight_construction:general_principles
2 Hits, Last modified: 23 months ago
Comparison of energy performance of ventilation systems using passive vs. active heat recovery @planning:building_services:ventilation
2 Hits, Last modified: 2 years ago
Energy use for heating in a well insulated new building @planning:thermal_protection:thermal_protection_works
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: 6 years ago
Air volumes @planning:building_services:ventilation:basics
2 Hits, Last modified: 6 years ago
PHI window certification: previous success and new climate zones @planning:thermal_protection:windows:window_certification
2 Hits, Last modified: 3 years ago
Certification
1 Hits, Last modified: 4 years ago
International cooperations
1 Hits, Last modified: 10 months ago
Passive House for municipalities
1 Hits, Last modified: 10 months ago
Passive House buildings in use
1 Hits, Last modified: 22 months ago
Passive House and the Sustainable Development Goals (SDGs): Connecting an international building standard with global aims @basics
1 Hits, Last modified: 4 years ago
Passive House buildings in different climates @basics
1 Hits, Last modified: 3 years ago
Addendum concerning the use of vacuum insulation @certification
1 Hits, Last modified: 3 years ago
Evaluation of server and server room efficiency for non-residential buildings that exceed the primary energy criterion @certification
1 Hits, Last modified: 16 months ago
The Passive House Classes: Classic, Plus and Premium @certification
1 Hits, Last modified: 14 months ago
For trade disciplines @efficiency_now
1 Hits, Last modified: 3 years ago
List of Passive House Conference contributions since 1996 @phi_publications
1 Hits, Last modified: 6 years ago
List of all released conference proceedings from 2011 to 2014 @phi_publications
1 Hits, Last modified: 13 months ago
Building Services @planning
1 Hits, Last modified: 24 months ago
Summer Comfort @planning
1 Hits, Last modified: 22 months ago
Electric Energy Efficiency for Households – Doing the whole step towards energy efficiency @sinfonia
1 Hits, Last modified: 4 years ago
Experience Passive House - Passive House Open Days @sinfonia
1 Hits, Last modified: 7 years ago
Welcome to your new DokuWiki @wiki
1 Hits, Last modified: 5 years ago
Heat transfer @basics:building_physics_-_basics
1 Hits, Last modified: 3 years ago
Primary Energy Renewable PER @basics:energy_and_ecology
1 Hits, Last modified: 13 months ago
Certification of Passive House office buildings @certification:certified_passive_houses
1 Hits, Last modified: 6 years ago
The promotion of low energy construction and the Passive House Standard: Successful strategies for forming a Passive House Association @experiences:connecting_the_passive_house_community
1 Hits, Last modified: 6 years ago
Heating and DHW @planning:building_services
1 Hits, Last modified: 7 years ago
Building Integrated Photovoltaics (BIPV) in Step by Step Retrofitting Projects @planning:refurbishment_with_passive_house_components
1 Hits, Last modified: 6 years ago
Overall retrofit plan for step-by-step retrofits to EnerPHit Standard @planning:refurbishment_with_passive_house_components
1 Hits, Last modified: 6 years ago
Prospects for the modernisation of existing buildings using highly efficient components @planning:refurbishment_with_passive_house_components
1 Hits, Last modified: 7 years ago
Passive House refurbishment - thermal envelope @planning:refurbishment_with_passive_house_components
1 Hits, Last modified: 7 years ago
Thermal protection works @planning:thermal_protection
1 Hits, Last modified: 6 years ago
Windows @planning:thermal_protection
1 Hits, Last modified: 5 years ago
Monitoring heat consumption: Calculation and Demand @sinfonia:monitoring_heat_consumption
1 Hits, Last modified: 5 years ago
Articles in the member area @start:become_a_member
1 Hits, Last modified: 4 years ago
Secondary School in Baesweiler, Germany @examples:non-residential_buildings:passive_house_schools
1 Hits, Last modified: 8 years ago
Airtightness test @planning:airtight_construction:general_principles
1 Hits, Last modified: 7 years ago
Differentiation between Vv and Vn50 values @planning:building_services:ventilation
1 Hits, Last modified: 2 years ago
Passive House - 6 reasons why you still need opening windows @planning:building_services:ventilation
1 Hits, Last modified: 6 years ago
Calculation guide for temperature reduction factors to temperature zone "X" in the PHPP "Areas" worksheet @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
1 Hits, Last modified: 4 years ago
PHPP calculations in hot and humid climates @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
1 Hits, Last modified: 6 years ago
Ventilation in commercial kitchens @planning:non-residential_passive_house_buildings:cafeterias_and_commercial_kitchens
1 Hits, Last modified: 16 months ago
Multi-family Passive House buildings in Germany @examples:residential_buildings:multi-family_buildings:central_europe
1 Hits, Last modified: 6 years ago
Experience with drain water heat recovery @planning:building_services:heating_and_dhw:experience_with_drain_water_heat_recovery
1 Hits, Last modified: 6 years ago
Heated basement @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
1 Hits, Last modified: 3 years ago
Special features and characteristics of components in contact with the ground @basics:building_physics_-_basics:thermal_bridges:tbcalculation:ground_contact
1 Hits, Last modified: 3 years ago
Recommended procedure for calculating thermal bridges of components in contact with the ground @basics:building_physics_-_basics:thermal_bridges:tbcalculation:ground_contact
1 Hits, Last modified: 6 years ago

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