Fulltext results:
- List of articles from the Research Group for Cost-effective Passive Houses @phi_publications
- non-residential buildings|Experiences gained with planning of an administrative building (Passive House Plus... hot summers - Focus on non-residential buildings|Planning and practice from the perspective of municipal op... ewable energy: Conflict of objectives or synergy?|Planning Sector Coupling/Integrated Energy| |2021|56|Energ... icient residential buildings - a question of good planning| |2021|55|Sozialer Geschosswohnbau: Kostengünstig
- List of Passive House Conference contributions since 1996 @phi_publications
- cascade ventilation |183 |Results and Analysis |[[planning:building_services:ventilation:basics:optimization... üchen |233 |Energy-efficient building services |[[planning:non-residential_passive_house_buildings:cafeteria... üchen |239 |Energy-efficient building services |[[planning:non-residential_passive_house_buildings:cafeteria... ntrag |259 |Energy-efficient building services |[[planning:refurbishment_with_passive_house_components:mecha
- Articles in the member area @start:become_a_member
- velope ===== ==== Airtight construction ==== ||[[planning:airtight_construction:airtightness_measurements_in_passive_houses|]]|\\ ||[[planning:airtight_construction:airtightness_of_osb_boards|]]|\\ ==== Thermal protection works ==== |[[planning:thermal_protection:thermal_protection_works:chall... ails_and_their_impact_on_the_heating_demand]]| |[[planning:thermal_protection:windows:types_of_glazing_and_t
- List of all released conference proceedings from 2011 to 2014 @phi_publications
- n II |Rojas-Kopeinig, Gabriel; Pfluger, Rainer |[[planning:building_services:ventilation:cascade_ventilation... 15 | |2014 |18 |Session II |Pfluger, Rainer |[[planning:building_services:ventilation:heatpipes_for_frost... 217 | |2014 |18 |Session V |Krick, Benjamin |[[planning:thermal_protection:windows:window_certification:s... 4 |18 |Session V Poster |Muskatewitz, Adrian |[[planning:thermal_protection:thermal_protection_works:chall
- Passipedia A-Z
- see [[passipedia_a-z#g|Guides and Aids]] * [[planning:airtight_construction|Airtight construction]] * [[planning:building_services:ventilation:basics:types_of_ventilation|Air quality]] * [[planning:building_services:ventilation:basics:air_volumes|... -z#I|iPHA Affiliates]] \\ \\ ===== B ===== * [[planning:building_services:heating_and_dhw:heating:biomass
- International cooperations
- e energy crisis]] **Summer Comfort ** Guide: [[:planning:summer_comfort:summer_comfort_guideline|]]\\ \\ Guide: [[:planning:summer_comfort:summer_comfort_user_manual|Summer ... } Factsheet: [[:phi_publications:2023_vo4_robust_planning|ouPHit: Robust planning for a high level of summer comfort with rising temperatures]]\\ \\ **Quality assura
- Planning and Construction
- ====== Planning and Construction ====== [{{ :picopen:energiebilanz_mit_logo.png?500|**Any Passive House project must be planned based on an** [[:planning:calculating_energy_efficiency:energy_balances_-_background|energy balance.]]\\ \\ The [[:planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package|Passive House Planning Package (PHPP)]] i
- Calculating energy efficiency @planning
- gy consumption of a building at an early stage of planning phase is a fundamental prerequisite for achieving... tirety. Different software programmes for project planning of buildings are available in practice which are ... s article and the subsequent sections; e.g. the [[planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package|Passive House Planning Package (PHPP)]].
- Planning criteria for Passive Houses in New Zealand @basics:passive_houses_in_different_climates
- ====== Planning criteria for Passive Houses in New Zealand ====== //**Commissioned by the School of Architecture and Planning at The University of Auckland. \\ Funded through ... results of a study carried out to determine basic planning criteria for Passive Houses in typical climates o... s were then also projected with the Passive House Planning Package, PHPP, which is described in chapter 5.
- Energy balances - Background @planning:calculating_energy_efficiency
- tant, inside the building being considered (see [[Planning:calculating energy efficiency:Energy balances - B... solved by using **simulation programmes** (see [[Planning:calculating energy efficiency:Dynamic simulation]... we have integrated these in the **"Passive House Planning Package"** (see [[Planning:calculating energy efficiency:PHPP - the Passive House Planning Package]]).\\ \\
- Passive House schools – How to go about it @planning:non-residential_passive_house_buildings:passive_house_schools
- ch the criteria 1 to 9 as stated in the article [[planning:non-residential_passive_house_buildings:passive_h... cisive for achieving the Passive House standard [[planning:non-residential_passive_house_buildings:passive_h... ient it will be.\\ **Excellent insulation** \\ [[planning:thermal_protection|Thermal insulation]] should be... ol in Alsfeld. Architect: Michael Frielinghaus. [[planning:non-residential_passive_house_buildings:passive_h
- Building envelope @planning
- r energy efficient construction is a continuous [[Planning:Thermal protection:Integrated thermal protection|... the insulating envelope there should also be an [[planning:airtight_construction:general_principles:principl... s (circles) is essential** \\ here an individual planning method has to be developed, according to the cons... ocal thermal comfort|Local thermal comfort]] *[[planning:thermal_protection:thermal_protection_works:Therm
- Ventilation @planning:building_services
- air quality. Read more about: * **Basic: ** [[:planning:building_services:ventilation:basics:types_of_ven... refurbished building:** [[https://passipedia.org/planning/refurbishment_with_passive_house_components/prosp... **Window ventilation**: [[https://passipedia.org/planning/building_services/ventilation/passive_house_-_6_r... cles on Passipedia: * [[https://passipedia.org/planning/building_services/ventilation/comparison_of_energ
- PHPP - validated and proven in practice @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- were compared with calculated results using the [[planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package|PHPP]] and [[planning:calculating_energy_efficiency:dynamic_simulation|dynamic simulations]]. \\ O... (relative) user (statistical) spread, the project planning results correlate excellently with the average me
- 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.de/litera... with active cooling: [[.:phpp_-_the_passive_house_planning_package:calculations_in_hot_and_humid_climates:ph... oncept in its entirety |{{:picopen:passive_house_planning_package_en.png?600 | }}| The calculations are i
- The world’s first Passive House, Darmstadt-Kranichstein, Germany @examples:residential_buildings:multi-family_buildings:central_europe
- Baseline study - implementing the Passive House concept in hospitals @planning:non-residential_passive_house_buildings:ph_hospitals
- Airtightness and airtightness measurement @planning:refurbishment_with_passive_house_components:thermal_envelope
- Energy efficiency in cafeterias and commercial kitchens @planning:non-residential_passive_house_buildings:cafeterias_and_commercial_kitchens
- Passive House Schools - Boundary Conditions @planning:non-residential_passive_house_buildings:passive_house_schools
- Aspects of efficient ventilation in hospitals @planning:non-residential_passive_house_buildings:ph_hospitals
- Special features and characteristics of components in contact with the ground @basics:building_physics_-_basics:thermal_bridges:tbcalculation:ground_contact
- Refurbishment with Passive House components - introduction @planning:refurbishment_with_passive_house_components
- Passive House refurbishment - thermal envelope @planning:refurbishment_with_passive_house_components
- Riedberg Passive House School, Frankfurt, Germany @examples:non-residential_buildings:passive_house_schools
- Prospects for the modernisation of existing buildings using highly efficient components @planning:refurbishment_with_passive_house_components
- Energy efficiency of the Passive House Standard: Expectations confirmed by measurements in practice @operation:operation_and_experience:measurement_results
- Variant calculations and economic assessment with PHPP 9 @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- Exterior wall on floor slab @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
- Introduction - Passive House buildings in different climates @basics:passive_houses_in_different_climates
- PHPP calculations in hot and humid climates @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- Improving thermal bridges and airtightness in existing buildings @planning:refurbishment_with_passive_house_components:thermal_envelope
- 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
- 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
- Sound generation, sound dispersion and sound proofing in heat pumps @planning:building_services:heating_and_dhw:heating:heat_pumps
- Ventilation in 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
- Certification of terraced houses and semi-detached/duplex houses according to Passive House Institute criteria @certification
- Life Cycle energy balances, Embodied energy and the Passive House Standard @basics:energy_and_ecology
- Kitchen Exhaust Systems for Residential Kitchens in Passive Houses: Guidelines @planning:guides_and_aids
- Checklist for Design: Ventilation System in a residential Passive House Building @planning:building_services:ventilation
- Internal heat gains in relation to living area @planning:calculating_energy_efficiency:phpp_-_the_passive_house_planning_package
- Insulation works – Evidence no.1 "Measurements at a highly insulated wall" @planning:thermal_protection:thermal_protection_works
- Efficiency of household appliances and their impact on the primary energy demand of residential buildings @basics:passive_house_-_assuring_a_sustainable_energy_supply
- Component Award 2016: Affordable ventilation solutions for retrofits @planning:refurbishment_with_passive_house_components
- Economy and financing of efficiency: new buildings, renovation and step by step retrofit @basics:affordability:investing_in_energy_efficiency
- “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
- Certification of buildings in which the ground floor is used for commercial purposes (for PHPP 9, revised 5-Sep-2016) @certification
- Classic, Plus, Premium: The Passive House classes and how they can be reached @certification:passive_house_categories
- PER-factors for electricity use: Location & application specific decarbonisation @certification:passive_house_categories
- 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
- Economic analysis for the retrofit of a detached single family house to the EnerPHit standard @planning:refurbishment_with_passive_house_components
- Step-by-step deep retrofit and building integrated façade/roof on a 'million program' house @planning:refurbishment_with_passive_house_components