International Conference on Smart Energy Systems and 4th Generation District Heating Copenhagen, 25-26 August 2015 A methodology for designing flexible.

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Presentation transcript:

International Conference on Smart Energy Systems and 4th Generation District Heating Copenhagen, August 2015 A methodology for designing flexible multi-generation systems C. Lythcke-Jørgensen* a, F. Haglind a, A. V. Ensinas b, M. Münster c a DTU Mechanical Engineering, Thermal Energy b EPFL, Industrial Process and Energy Systems Engineering lab. c DTU Management Engineering, System Analysis

Agenda and purpose International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August Introduction 2.Design methodology 3.Summary Main point: Synergies from process integration ought to be considered in energy system models!

1. Introduction International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 What are flexible multi-generation plants? Definition: ‘A flexible multi-generation plant (FMG) is an integrated, flexibly operated facility that provides multiple links between layers of the energy system’

1. Introduction International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015

1. Introduction International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 Why should we be interested in FMGs? Hypothesis: If carefully designed, FMGs may o achieve high aggregated energy conversion efficiencies through process integration and connection to district energy systems (synergies) o balance production from intermittent renewable energy resources in a cost-efficient way (energy system valves)

2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 What must be considered when designing FMGs? o Synthesis of processes from many technological alternatives o Design with respect to process dimensioning and integration o Operation optimization with respect to hourly demand and price fluctuations and long-term energy system development o Local resource availability o Investment planning o…o…

Methodology overview 2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015

Case study – input data 2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015

Case study – input data Scatter plot from [Lythcke-Jørgensen et al. 2015] 2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015

2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 Case study – structuring phase Figures from [Lythcke-Jørgensen et al. 2015]

2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 Case study – optimization phase

2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 Case study – evaluation phase

2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 Case study – evaluation phase N.B. Indicated uncertainty ranges are illustrative

2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 So, why should we care on the energy system level?

3. Summary and perspective International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 Main point: Synergies from process integration ought to be considered in energy system models! o FMGs may provide efficient links between the layers of the energy systems (energy system valves) o Future work: Various FMG case studies using long term energy system data to assess energy system impact

Thank you for your attention International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 Questions & comments? References [Lythcke-Jørgensen 2015]: C. Lythcke-Jørgensen, M. Münster, A. V. Ensinas, F. Haglind, “A method for aggregating external operating conditions in multi-generation plant optimization models”, Applied Energy (under review). Christoffer Lythcke-Jørgensen M.Sc., Ph.D. stud. DTU Mechanical Engineering Thermal Energy (+45)

Case study – input data 2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015

Case study – input data 2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015

2. Design methodology International Conference on Smart Energy Systems and 4th Generation District Heating, Copenhagen, August 2015 Case study – optimization phase