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Adewumi, A S, Onyango, V, Moyo, D and AlWaer, H (2019) A review of selected neighbourhood sustainability assessment frameworks using the Bellagio STAMP. International Journal of Building Pathology and Adaptation, 37(01), 108–18.

Agyekum, K, Blay, K and Opoku, A (2019) Mechanisms for preventing rising damp in new building infrastructure. International Journal of Building Pathology and Adaptation, 37(01), 87–107.

Ahmad Shazali, A S and Tahar, K N (2019) Virtual 3D model of Canseleri building via close-range photogrammetry implementation. International Journal of Building Pathology and Adaptation, 38(01), 217–27.

Al-Kheetan, M J, Rahman, M M and Chamberlain, D A (2018) Remediation and protection of masonry structures with crystallising moisture blocking treatment. International Journal of Building Pathology and Adaptation, 36(01), 77–92.

Alao, O O and Jagboro, G O (2017) Assessment of causative factors for project abandonment in Nigerian public tertiary educational institutions. International Journal of Building Pathology and Adaptation, 35(01), 41–62.

Ali, A S, Azmi, N F and Baaki, T K (2018) Cost performance of building refurbishment works: the case of Malaysia. International Journal of Building Pathology and Adaptation, 36(01), 41–62.

Amadi, A and Higham, A P (2019) A cost trajectory to environmentally adaptive building construction in wet humid settings. International Journal of Building Pathology and Adaptation, 38(01), 68–88.

Ashdown, M M, Crawley, J, Biddulph, P, Wingfield, J, Lowe, R and Elwell, C A (2019) Characterising the airtightness of dwellings. International Journal of Building Pathology and Adaptation, 38(01), 89–106.

Blay, K, Agyekum, K and Opoku, A (2019) Actions, attitudes and beliefs of occupants in managing dampness in buildings. International Journal of Building Pathology and Adaptation, 37(01), 42–53.

Crawley, J, Biddulph, P, Wingfield, J, Ashdown, M, Lowe, R and Elwell, C (2019) Inferring the as-built air permeability of new UK dwellings. International Journal of Building Pathology and Adaptation, 38(01), 3–19.

Djebbar, K E, Salem, S and Mokhtari, A (2019) Assessment of energy performance using bottom-up method. International Journal of Building Pathology and Adaptation, 38(01), 192–216.

Enshassi, A, Ayash, A and Mohamed, S (2018) Key barriers to the implementation of energy-management strategies in building construction projects. International Journal of Building Pathology and Adaptation, 36(01), 15–40.

Erkoreka, A, Flores-Abascal, I, Escudero, C, Martin, K, Millan, J A and Sala, J M (2019) Flat roof hygrothermal performance testing and evaluation. International Journal of Building Pathology and Adaptation, 38(01), 148–75.

Flood, C and Scott, L (2019) Thermal analysis and post construction verification. International Journal of Building Pathology and Adaptation, 38(01), 51–67.

Gerges, M, Mayouf, M, Rumley, P and Moore, D (2017) Human behaviour under fire situations in high-rise residential building. International Journal of Building Pathology and Adaptation, 35(01), 90–106.

Gupta, R, Gregg, M and Cherian, R (2019) Developing a new framework to bring consistency and flexibility in evaluating actual building performance. International Journal of Building Pathology and Adaptation, 38(01), 228–55.

Hamidane, H, Ababneh, A, Messabhia, A and Xi, Y (2019) Modeling of chloride penetration in concrete structures under freeze-thaw cycles. International Journal of Building Pathology and Adaptation, 38(01), 127–47.

Hosseini, M R, Roelvink, R, Papadonikolaki, E, Edwards, D J and Pärn, E (2018) Integrating BIM into facility management. International Journal of Building Pathology and Adaptation, 36(01), 2–14.

Ibraheem, Y, Piroozfar, P A, Farr, E R and Ravenscroft, N (2019) Methodological evaluation of Integrated Façade Systems. International Journal of Building Pathology and Adaptation, 38(01), 107–26.

Jandali, D and Sweis, R (2019) Factors affecting maintenance management in hospital buildings. International Journal of Building Pathology and Adaptation, 37(01), 6–21.

Kayan, B A (2017) Green maintenance for heritage buildings: paint repair appraisal. International Journal of Building Pathology and Adaptation, 35(01), 63–89.

Li, M, Allinson, D and Lomas, K (2019) Estimation of building heat transfer coefficients from in-use data. International Journal of Building Pathology and Adaptation, 38(01), 38–50.

Md Ali, Z, Zawawi, R, Myeda, N E and Mohamad, N (2019) Adaptive reuse of historical buildings. International Journal of Building Pathology and Adaptation, 37(01), 54–68.

O’Connell, S, Reynders, G, Seri, F, Sterling, R and Keane, M M (2019) A standardised flexibility assessment methodology for demand response. International Journal of Building Pathology and Adaptation, 38(01), 20–37.

  • Type: Journal Article
  • Keywords: Demand response; Smart grid; Demand side management; Demonstration study; Energy flexible buildings; Smart readiness indicator;
  • ISBN/ISSN: 2398-4708
  • URL: https://doi.org/10.1108/IJBPA-01-2019-0011
  • Abstract:
    The purpose of this paper is to standardised four-step flexibility assessment methodology for evaluating the available electrical load reduction or increase a building can provide in response to a signal from an aggregator or grid operator. Design/methodology/approach The four steps in the methodology consist of Step 1: systems, loads, storage and generation identification; Step 2: flexibility characterisation; Step 3: scenario modelling; and Step 4: key performance indicator (KPI) label. Findings A detailed case study for one building, validated through on-site experiments, verified the feasibility and accuracy of the approach. Research limitations/implications The results were benchmarked against available demonstration studies but could benefit from the future development of standardised benchmarks. Practical implications The ease of implementation enables building operators to quickly and cost effectively evaluate the flexibility of their building. By clearly defining the flexibility range, the KPI label enables contract negotiation between stakeholders for demand side services. It may also be applicable as a smart readiness indicator. Social implications The novel KPI label has the capability to operationalise the concept of building flexibility to a wider spectrum of society, enabling smart grid demand response roll-out to residential and small commercial customers. Originality/value This paper fulfils an identified need for an early stage flexibility assessment which explicitly includes source selection that can be implemented in an offline manner without the need for extensive real-time data acquisition, ICT platforms or additional metre and sensor installations.

Ogbeifun, E, Mbohwa, C and Pretorius, J C (2018) Developing an effective renovation plan: the influence of data collection tools. International Journal of Building Pathology and Adaptation, 36(01), 63–76.

Opawole, A and Jagboro, G O (2018) Compensation mechanisms for minimizing private party risks in concession-based public-private partnership contracts. International Journal of Building Pathology and Adaptation, 36(01), 93–120.

Rogage, K, Clear, A, Alwan, Z, Lawrence, T and Kelly, G (2019) Assessing building performance in residential buildings using BIM and sensor data. International Journal of Building Pathology and Adaptation, 38(01), 176–91.

Spennemann, D H, Pike, M and Watson, M J (2017) Effects of acid pigeon excreta on building conservation. International Journal of Building Pathology and Adaptation, 35(01), 2–15.

Sweis, R, Moarefi, A, Hoseini-Amiri, S and Moarefi, S (2019) Delay factors of the schedule of strategic industrial projects. International Journal of Building Pathology and Adaptation, 37(01), 69–86.

Tade, O, O’Neill, S, Smith, K G, Williams, T, Ali, A, Bayyati, A and See, H (2019) Modified sewer asset management to accommodate London’s future sustainable development. International Journal of Building Pathology and Adaptation, 37(01), 22–41.

Zuhaib, S, Manton, R, Hajdukiewicz, M, Keane, M M and Goggins, J (2017) Attitudes and approaches of Irish retrofit industry professionals towards achieving nearly zero-energy buildings. International Journal of Building Pathology and Adaptation, 35(01), 16–40.