Fulltext results:
- Passive House schools – How to go about it @planning:non-residential_passive_house_buildings:passive_house_schools
- ====== Passive House schools – How to go about it ====== In the following, you will find recommendations... in the article [[planning:non-residential_passive_house_buildings:passive_house_schools:Passive House schools – requirements]] can be met with justifiable effort. These recommendation
- Passive House Schools - Boundary Conditions @planning:non-residential_passive_house_buildings:passive_house_schools
- ======Passive House Schools - Boundary Conditions ====== Research for building Passive House schools has been conducted in the [[https://passi... cations/research_group_for_cost-effective_passive_houses_proceedings|Research Group for Cost-effective Passive Houses]] Vol. 33 \\ **1. Each modern school should hav
- Non-residential Passive House buildings
- ====== Non-residential Passive House buildings ====== The Passive House Standard allows for extremely high levels of comfort as well as enor... - not only for residential buildings. The Passive House Standard has been successfully realised in many d... s and kindergartens. Browse the [[https://passivehouse-database.org/index.php?lang=en|project database]]
- Thermal insulation @planning:thermal_protection
- This principle is taken very seriously in Passive Houses – because quality insulation is a very affordabl... hermal protection#Detailed information on Passive House insulation|further information about thermal insu... ysis]]. ===== The level of insulation in Passive Houses ===== U-values (thermal transmittance) of external walls, floor slabs and roof areas of Passive Houses range from 0.10 to 0.15 W/(m²K) (for Central Eur
- PHPP – Passive House Planning Package @planning:calculating_energy_efficiency
- ====== PHPP – Passive House Planning Package ====== ===== PHPP – More than just an energy balance ===== The **Passive House Planning Package (PHPP)** (order [[http://passiv.... sary for designing a properly functioning Passive House. The PHPP prepares an energy balance and calculat... mfort with active cooling: [[.:phpp_-_the_passive_house_planning_package:calculations_in_hot_and_humid_cl
- Refurbishment with Passive House components - introduction @planning:refurbishment_with_passive_house_components
- ====== Refurbishment with Passive House components - introduction ====== The possibilities for the application of Passive House components in the modernisation of existing build... of the Research Group for Cost-effective Passive Houses [[planning:refurbishment_with_passive_house_components:passive_house_refurbishment_-_introduction#Lite
- Baseline study - implementing the Passive House concept in hospitals @planning:non-residential_passive_house_buildings:ph_hospitals
- ====== Baseline study - implementing the Passive House concept in hospitals ====== Below you find a sum... f the **Baseline study - implementing the Passive House concept in hospitals**. It was conducted under be... study can be downloaded [[https://database.passivehouse.com/de/download/product_page/PH_Krankenhaus|here.... f 503,422 beds [[planning:non-residential_passive_house_buildings:ph_hospitals:baseline_study_-_implement
- Energy balances - Background @planning:calculating_energy_efficiency
- es**. Because of the conservation of energy, the house itself remains warm - as long as it doesn't lose... e solar energy**) and the energy which enters the house through the electricity supply and is converted t... clude the body heat of the persons present in the house. This energy is also transferred through the envelope into the house – when people enter the building or when food is
- Building envelope
- ted from air leakages. [[http://database.passivehouse.com/en/components/ | Passive House Component Database]] <WRAP left 70%> [{{{{:picopen:airtightness_with_logo.png?nolink350|}}] **The Passive House envelope** \\ The most important principle for en... == Thermal insulation ===== * [[basics:passive_houses_in_different_climates:passive_houses_in_cold_cli
- PHPP - validated and proven in practice @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- :calculating_energy_efficiency:phpp_-_the_passive_house_planning_package|PHPP]] and [[planning:calculatin... ments and larger building projects in the Passive House Standard were built and monitored scientifically ... istics of buildings - even in the case of Passive Houses - could be reproduced with a high degree of accu... ajan investigated a large sample of built passive houses build in the UK [Mitchell 2020]. They also compa
- Refurbishment with Passive House components
- ====== Refurbishment with Passive House components ====== Existing buildings account for the greatest sh... thods. Using components developed for new Passive Houses also allows for significant energy savings in ex... refurbishment, and a refurbishment using Passive House components.**}}] * [[.:refurbishment_with_passive_house_components:passive_house_refurbishment_-_introduc
- Types of ventilation @planning:building_services:ventilation:basics
- indispensable in every [[basics:what_is_a_passive_house|Passive House]]. A regular, guaranteed and adequate exchange of air in winter is only possible by means ... rences fluctuate too much in Central Europe. In a house which is not leaky enough for sufficient air exch... oor air pollution. It is correct, and the Passive House Institute shares this opinion, that first of all,
- Prospects for the modernisation of existing buildings using highly efficient components @planning:refurbishment_with_passive_house_components
- cations:research_group_for_cost-effective_passive_houses_proceedings|Research Group for Cost-effective Passive Houses]] [[planning:refurbishment_with_passive_house_components:prospects_for_the_modernisation_of_existing_bu... ventilation are essential. Achieving the Passive House limit (heating load smaller than 10W/m²) in new c
- Internal heat gains in relation to living area @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- gs in the PHPP 9// \\ \\ \\ At the 18th Passive House Conference in Aachen (Germany), Nick Grant and Al... === 2 Actual electricity consumption depending on household size ==== The energy agency in the German S... consumers depending on the number of persons per household. These are shown in the following chart broken down according to households with and without hot water generation. A str
- Passive House swimming pools @planning:non-residential_passive_house_buildings:swimming_pools
- ====== Passive House swimming pools ====== Swimming pools are typically very energy intensive, which in ... peration once the building is in use. The Passive House appraoch provides an opportunity and pathway for ... energy saving potentials of applying the Passive House concept to this building typology. Two pilot proj... data is limited and often misleading. The Passive House approach for swimming pools is a holistic approac
- Aspects of efficient ventilation in hospitals @planning:non-residential_passive_house_buildings:ph_hospitals
- Energy efficiency in cafeterias and commercial kitchens @planning:non-residential_passive_house_buildings:cafeterias_and_commercial_kitchens
- Energy use for heating in a well insulated new building @planning:thermal_protection:thermal_protection_works
- Economic analysis for the retrofit of a detached single family house to the EnerPHit standard @planning:refurbishment_with_passive_house_components
- Improving thermal bridges and airtightness in existing buildings @planning:refurbishment_with_passive_house_components:thermal_envelope
- Variant calculations and economic assessment with PHPP 9 @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- PHPP calculations in hot and humid climates @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- Step-by-step deep retrofit and building integrated façade/roof on a 'million program' house @planning:refurbishment_with_passive_house_components
- Overall retrofit plan for step-by-step retrofits to EnerPHit Standard @planning:refurbishment_with_passive_house_components
- Component Award 2016: Affordable ventilation solutions for retrofits @planning:refurbishment_with_passive_house_components
- Step-by-step Retrofits towards EnerPHit Standard in social housing in Spain @planning:refurbishment_with_passive_house_components
- Passive House refurbishment - thermal envelope @planning:refurbishment_with_passive_house_components
- Ventilation in commercial kitchens @planning:non-residential_passive_house_buildings:cafeterias_and_commercial_kitchens
- PHI window certification: previous success and new climate zones @planning:thermal_protection:windows:window_certification
- Insulation measures for the external envelope @planning:refurbishment_with_passive_house_components:thermal_envelope
- Airtightness and airtightness measurement @planning:refurbishment_with_passive_house_components:thermal_envelope
- Comparison of energy performance of ventilation systems using passive vs. active heat recovery @planning:building_services:ventilation
- Passive House - 6 reasons why you still need opening windows @planning:building_services:ventilation
- “designPH” plugin for Trimble Sketchup @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- Experience with drain water heat recovery @planning:building_services:heating_and_dhw:experience_with_drain_water_heat_recovery
- Checklist for Design: Ventilation System in a residential Passive House Building @planning:building_services:ventilation
- Kitchen Exhaust Systems for Residential Kitchens in Passive Houses: Guidelines @planning:guides_and_aids
- 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
- Building Integrated Photovoltaics (BIPV) in Step by Step Retrofitting Projects @planning:refurbishment_with_passive_house_components
- Insulation works – Evidence no.1 "Measurements at a highly insulated wall" @planning:thermal_protection:thermal_protection_works
- Checklist: Test reports of airtightness measurements @planning:airtight_construction:general_principles
- 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