Performance of advanced control sequences in handling uncertainty in energy use and indoor environmental quality using uncertainty and sensitivity analysis for control components

2020 ◽  
Vol 225 ◽  
pp. 110308 ◽  
Author(s):  
Shadi M. Abdel Haleem ◽  
Gregory S. Pavlak ◽  
William P. Bahnfleth
Author(s):  
P. Rajayogan

Sustainable construction is the process of constructing structures while being environmentally conscious of the material, design process, and sustainability of the structure and the effect it has on the environment. In simple terms, it is the process of creating structures in an environmentally friendly way. Sustainability factors are considered in the design, material, longevity, and future deconstruction as the main aspects. Also, to determine what is “allowed” and what may deem “disallowed”. The basic six sustainable practices / principles are optimizing site potential, sustainable energy use, protect and conserve water, optimizing material usage and building space, effective operational and maintenance practices and enhancing indoor environmental quality.


2021 ◽  
Vol 13 (10) ◽  
pp. 5446
Author(s):  
Akram Abdul Hamid ◽  
Jenny von Platten ◽  
Kristina Mjörnell ◽  
Dennis Johansson ◽  
Hans Bagge

Recently, there has been an increase in apartments with a large number of inhabitants, i.e., high residential density. This is partly due to a housing shortage in general but also increased migration, particularly in suburbs of major cities. This paper specifies issues that might be caused by high residential density by investigating the technical parameters influenced in Swedish apartments that are likely to have high residential density. Interviews with 11 employees at housing companies were conducted to identify issues that might be caused by high residential density. Furthermore, simulations were conducted based on extreme conditions described in the interviews to determine the impact on the energy use, indoor environmental quality, and moisture loads. In addition, the impact of measures to mitigate the identified issues was determined. Measures such as demand-controlled ventilation, increase of a constant ventilation rate, and moisture buffering are shown to reduce the risk for thermal discomfort, mold growth, and diminished indoor air quality; while still achieving a lower energy use than in a normally occupied apartment. The results of this study can be used by authorities to formulate incentives and/or recommendations for housing owners to implement measures to ensure good indoor environmental quality for all, irrespective of residential density conditions.


2018 ◽  
Vol 28 (1) ◽  
pp. 100-117 ◽  
Author(s):  
C. Shrubsole ◽  
I. G. Hamilton ◽  
N. Zimmermann ◽  
G. Papachristos ◽  
T. Broyd ◽  
...  

Innovations in materials, construction techniques and technologies in building construction and refurbishment aim to reduce carbon emissions and produce low-energy buildings. However, in-use performance consistently misses design specifications, particularly those of operational energy use and indoor environmental quality. This performance gap risks reducing design, technology, sustainability, economic, health and well-being benefits. In this paper, we compare settings of the Chinese and the UK buildings sectors and relate their historical context, design, construction and operation issues impacting energy performance, indoor environmental quality, occupant health and well-being. We identify a series of key, common factors of ‘total’ building performance across these two settings: the application of building regulations, the balance between building cost and performance, skills, construction and operation. The dynamic and complex interactions of these factors are currently poorly understood and lead to building performance gaps. We contend that a systems approach in the development of suitable building assessment methods, technologies and tools could enable the formulation and implementation of more effective policies, regulations and practices. The paper illustrates the application of the approach to the UK and Chinese settings. A full application of a systems approach may help to provide a more dynamic understanding of how factor interactions impact the ‘total’ building performance gaps and help address its multiple causes.


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