Energy system transitions and macroeconomic assessment of the Indian building sector

Vishwanathan, S S; Fragkos, P; Fragkiadakis, K; Paroussos, L and Garg, A (2019) Energy system transitions and macroeconomic assessment of the Indian building sector. Building Research & Information, 47(1), pp. 38-55. ISSN 0961-3218

Abstract

India’s energy sector has grown rapidly in recent years with buildings playing a major role as they constitute about 40% of India’s final energy demand. This paper provides a quantitative model-based assessment of the evolution of India’s building sector in terms of both energy systems transition and its macroeconomic implications. The coupling of a bottom-up technology-rich energy system model with a macroeconomic computable general equilibrium (CGE) model provides an innovative approach for the in-depth robust analysis of the energy transition in India’s building stock and the induced macroeconomic and employment impacts on the Indian economy. Two main scenarios are explored, namely: the business-as-usual (BAU) and the advanced nationally determined contribution (Adv. NDC) scenarios. The investigation shows that efficiency improvements are vital to counteract the upward pressure on energy demand in the building sector. Energy demand in the building sector results in an increase of CO2 emissions by 27% between 2015 and 2030 due to the technology transition from inefficient solid fuels (traditional biomass) to cleaner energy (liquefied petroleum gas (LPG), piped natural gas (PNG)) before shifting to electricity. The Adv. NDC scenario also leads to a shift in employment from agriculture and towards sectors that benefit from the implementation of Adv. NDC, especially in the construction sectors, electricity and manufacturing sectors.

Item Type: Article
Uncontrolled Keywords: building stock; computable general equilibrium model; energy demand; energy system model; India; macroeconomic assessment; nationally determined contribution; technology transitions
Index terms: India, energy sector, implementation, investigation, energy system, coupling, employment, CO2 emissions, energy demand, efficiency, construction sector, evolution, building stock
Subjects: Geography, performance management, management, systems engineering, industry analysis, asset management, air quality, data collection methods, contractual arrangements, environmental science, energy systems
Topics: Research Practice, Geographical Context, Engineering Principles, Business Strategy, Procurement, Sustainability, Quality Management, Human Resources
Descriptive scope: 4 PCTA

N.B. Descriptive scope is a count of how many of the five facets of empirical research are indicated by the words used in title, abstract and keywords. It is not intended as a judgement on the research; merely a count of the kind of word we would expect to indicate Phenomenon, Concepts, Theoretical framing, Empirical techniques, Analytical techniques. If all five are present, then a code of “5 PCTEA” will indicate this. If you feel the coding for this record is questionable, we welcome discussion around the terms we matched or the way we categorized them. The facet you would expect may not be coded, or a facet may be coded inappropriately. This can also bear on a larger question, of which facets should be treated as defining in construction management research. Please get in touch, and we will look at it. More details here