Fulltext results:
- Economic analysis for the retrofit of a detached single family house to the EnerPHit standard @planning:refurbishment_with_passive_house_components
- 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
- measurements and hygrothermal simulations of four different interior insulation systems ====== ===== Intro... measurements_and_hygrothermal_simulations_of_four_different_interior_insulation systems:start#references|[Zam... cept of interior insulation was followed and four different insulation systems were applied in different rooms. In order to investigate the influence of the interior in
- Dynamic simulation of a building's thermal performance @planning:calculating_energy_efficiency
- en the zones as well as components connecting the different zones.| Dynbil has been validated with the detai... generally result in coupled, non-linear, partial differential equations of 2nd order in space and time, taki... ith simple sub-models (such as the connections of different components, e.g. on the eaves), the mathematical ... s. Example: In the numerical solution of simple differential equations (dy/dt = - ω²y) the realization that
- Component Award 2016: Affordable ventilation solutions for retrofits @planning:refurbishment_with_passive_house_components
- Building Integrated Photovoltaics (BIPV) in Step by Step Retrofitting Projects @planning:refurbishment_with_passive_house_components
- PHI window certification: previous success and new climate zones @planning:thermal_protection:windows:window_certification
- Step-by-step deep retrofit and building integrated façade/roof on a 'million program' house @planning:refurbishment_with_passive_house_components
- Passive House schools – How to go about it @planning:non-residential_passive_house_buildings:passive_house_schools
- tut, 1. Auflage, Darmstadt 2004.\\ (**Temperature differentiation in the home**, Protocol Volume No. 25 of th
- Checklist for Design: Ventilation System in a residential Passive House Building @planning:building_services:ventilation
- 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
- Floor Replacement: Svartbäcksvägen @planning:refurbishment_with_passive_house_components:thermal_envelope
- Cooling tools
- elated articles: * [[:basics:passive_houses_in_different_climates:passive_house_in_tropical_climates:mecha... y.png?nolink&20}} * [[:basics:passive_houses_in_different_climates:passive_houses_in_subtropical_climate:so... -warm_climates|]] * [[:basics:passive_houses_in_different_climates:passive_houses_in_subtropical_climate:so... y.png?nolink&20}} * [[:basics:passive_houses_in_different_climates:passive_houses_in_subtropical_climate:so
- Airtightness test @planning:airtight_construction:general_principles
- n h<sup>-1</sup>) describes the air changes at a differential pressure of 50 Pa. A differential pressure of 50 Pa (equivalent to 5 mm water column) is created between... re measurements determining the leakage rate at a differential pressure of 50 Pa in relation to the air volum... esting procedure with devices for\\ measuring the differential pressure.//**| \\ ===== Background: German l
- Comparison of energy performance of ventilation systems using passive vs. active heat recovery @planning:building_services:ventilation
- Overall retrofit plan for step-by-step retrofits to EnerPHit Standard @planning:refurbishment_with_passive_house_components
- PHPP - validated and proven in practice @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- Variant calculations and economic assessment with PHPP 9 @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- Airtightness and airtightness measurement @planning:refurbishment_with_passive_house_components:thermal_envelope
- Internal heat gains in relation to living area @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- Passive House Schools - Boundary Conditions @planning:non-residential_passive_house_buildings:passive_house_schools
- Step-by-step Retrofits towards EnerPHit Standard in social housing in Spain @planning:refurbishment_with_passive_house_components
- Aspects of efficient ventilation in hospitals @planning:non-residential_passive_house_buildings:ph_hospitals
- Baseline study - implementing the Passive House concept in hospitals @planning:non-residential_passive_house_buildings:ph_hospitals
- Refurbishment with Passive House components - introduction @planning:refurbishment_with_passive_house_components
- Checklist: Test reports of airtightness measurements @planning:airtight_construction:general_principles
- Passive House - 6 reasons why you still need opening windows @planning:building_services:ventilation
- PHPP calculations in hot and humid climates @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- Ventilation in commercial kitchens @planning:non-residential_passive_house_buildings:cafeterias_and_commercial_kitchens
- Influence of retrofitting on daylighting @planning:refurbishment_with_passive_house_components:mechanical_systems
- Insulation measures for the external envelope @planning:refurbishment_with_passive_house_components:thermal_envelope