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  • basics:building_physics_-_basics (13)
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Unheated basement @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
8 Hits, Last modified: 3 years ago
pace (see figure above). This is expressed by the following U-value: <WRAP centeralign> $$ \large{\dfrac{1}... urpose which are demonstrated on the basis of the following detail: {{ :picopen:unbeheizter_keller_abb_2.pn... xpress the heat flow or the conductance using the following equation: <WRAP centeralign> $$ \large{\Phi = \... he separate partial areas are ascertained and the following system of equations is solved: <WRAP centeralign
Greenhouse effect and climate protection @basics:energy_and_ecology
6 Hits, Last modified: 5 years ago
arn more about this phenomenon, please\\ read the following Wikipedia article:\\ [[http://en.wikipedia.org/wi... increasing, significantly and measurably (see the following illustration), due to the continued burning of fo... tmosphere's CO<sub>2</sub> contend (see the Graph following) is indeed mainly caused by the burning of fossil... nergy utilisation have not even been touched **. Following a detailed analysis of the facts we come to a cle
Internal heat capacity
3 Hits, Last modified: 3 years ago
during hot spells in summer to be simulated. The following illustration shows the result of a simulation for... sive House?]]). The illustration below shows the following: * The frequency of overheating events (left a... mmer comfort ==== In the illustration below, the following is presented: * The frequency of overheating e
Philips Experimental House Research 1974ff: Passive versus Active Measures in Europe & America @basics:the_passive_house_-_historical_review
3 Hits, Last modified: 5 years ago
derborn, Germany\\ [[info@bsmc.de]] //N.B.: The following article basically corresponds to [Steinmüller 200... ditions in the Western World. The project and the following research were inspired by Scandinavian work on lo... rldwide. \\ ===== Bibliography ===== //N.B.: The following bibliography basically is an extract from [Steinm
Passive House – the next decade | Determining application-specific PER factors @basics:passive_house_-_assuring_a_sustainable_energy_supply:passive_house_the_next_decade
3 Hits, Last modified: 13 months ago
t a consistent electricity credit method, for the following reasons: \\ * Electricity is the backbone of r... on, including electricity credit, is shown in the following table for different cogeneration rates. It is eas... all_power_provision_for_a_passive_house|]] ==== Following section ==== [[basics:passive_house_-_assuring_a
The Passive House in summer
2 Hits, Last modified: 4 years ago
windows areas with low-e triple-glazing: with the following glazing proportions in the south-facing facade: ... ariation of the structural parameters enables the following conclusions to be drawn: * **With regard to th
The Passive House - definition
2 Hits, Last modified: 7 years ago
solar energy and internal heat sources).\\ \\ The following considerations help to shed light on this concept... ng load - the Passive House requirement ==== The following calculation illustrates the **heating load** Pass
Heating load in Passive Houses @basics:building_physics_-_basics
2 Hits, Last modified: 6 years ago
ust particles in the air. \\ This results in the following capacity needed per person: \\ P<sub>pers</sub> =... ethod for determining the heating load. \\ **The following requirements apply for this method:** * The he
What defines thermal bridge free design? @basics:building_physics_-_basics
2 Hits, Last modified: 3 years ago
o achieve a thermal bridge free design ===== The following principle demonstrates this clearly: the insulati... ation layers using a pencil, without a break. The following figure illustrates this principle using a section
Primary energy – quantifying sustainability @basics:energy_and_ecology
2 Hits, Last modified: 5 years ago
in a residential house (shown in “yellow” in the following illustration). //Note 1: the current calculation... ohler 2005] ]]. This has been put together on the following internet page: [[Basics:Energy and ecology:Embodi
Passive House – the next decade @basics:passive_house_-_assuring_a_sustainable_energy_supply
2 Hits, Last modified: 13 months ago
a longer time, this investigation is based on the following: \\ 1. A complete transition to renewable energy... ables and conventional energy systems include the following: \\ * The amount of renewable energy available
Are Passive Houses cost-effective? @basics:affordability:investing_in_energy_efficiency
2 Hits, Last modified: 3 years ago
asy to build it as a Passive House. For that, the following details would have to be improved: * The extern... lts:Energy use – measurement results]]).\\ \\ The following table and **__Fig. 6__** show the average result
Basic principle for calculating thermal bridges @basics:building_physics_-_basics:thermal_bridges:tbcalculation
2 Hits, Last modified: 3 years ago
erature. In the norm DIN 4108-2 (Section 6.3) the following boundary conditions for the temperature are given... temperature The Passive House Institute uses the following boundary conditions for the temperature in the co
Exterior wall on floor slab @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
2 Hits, Last modified: 3 years ago
ermal conductivity according to the approval. The following U-value results for the exterior wall: {{ :picop... with a size of at least $2{,}5 \cdot B'$. In the following illustration all relevant reference dimensions an
Building physics - basics
1 Hits, Last modified: 3 years ago
===== **This section contains information on the following topics:** [[basics:building_physics_-_basics:bui
Efficiency vs. Efficiency Factor
1 Hits, Last modified: 6 years ago
Passive House and Climate Change Adaptation
1 Hits, Last modified: 3 years ago
Passive House and the Sustainable Development Goals (SDGs): Connecting an international building standard with global aims
1 Hits, Last modified: 4 years ago
Renewable primary energy demand in residential buildings with high energy intensity
1 Hits, Last modified: 5 years ago
What is a Passive House?
1 Hits, Last modified: 3 years ago
Economic feasibility of Passive House design @basics:affordability
1 Hits, Last modified: 6 years ago
Investing in energy efficiency @basics:affordability
1 Hits, Last modified: 7 years ago
Life cycle cost analysis of energy interventions in 18 reference buildings @basics:affordability
1 Hits, Last modified: 6 years ago
Thermal comfort @basics:building_physics_-_basics
1 Hits, Last modified: 3 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 Renewable PER @basics:energy_and_ecology
1 Hits, Last modified: 13 months ago
Renewable primary energy demand in residential buildings with high energy intensity @basics:passive_house_-_assuring_a_sustainable_energy_supply
1 Hits, Last modified: 5 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
Definition and effects of thermal bridges @basics:building_physics_-_basics:thermal_bridges
1 Hits, Last modified: 3 years ago
Local thermal comfort @basics:building_physics_-_basics:thermal_comfort
1 Hits, Last modified: 6 years ago
Thermal comfort parameters @basics:building_physics_-_basics:thermal_comfort
1 Hits, Last modified: 5 years ago
Passive House – the next decade | Methodology @basics:passive_house_-_assuring_a_sustainable_energy_supply:passive_house_the_next_decade
1 Hits, Last modified: 13 months ago
Software for calculating thermal bridges @basics:building_physics_-_basics:thermal_bridges:tbcalculation
1 Hits, Last modified: 3 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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