In the presented study, a pipe penalization approach for the economic topology optimization of District Heating Networks is proposed, drawing inspiration from density-based topology optimization. For District Heating Networks, the upfront investment is a crucial factor for the rollout of this technology. Today, the pipe routing is usually designed relying on a linearization of the underlying heat transport problem. This study proposes to solve the optimal pipe routing problem as a non-linear topology optimization problem, drawing inspiration from density-based topology optimization. The optimization problem is formulated around a non-linear heat transport model and minimizes a detailed net present value representation of the heating network cost. By relaxing the combinatorial problem of pipe placement, this approach remains scalable for large-scale applications. A discrete network topology and near-discrete pipe design is achieved by using an intermediate pipe penalization strategy. For a realistic test case, the proposed algorithm achieves a discrete network topology and near-discrete pipe design that outperforms simple post-processing steps.
翻译:在介绍的研究报告中,提出了对地区供热网络经济地形优化的管子处罚办法,从基于密度的地形优化中得到启发。对于地区供热网络,前期投资是推广这一技术的一个关键因素。今天,管子路由的设计通常依赖于潜在的热传输问题的线性化。本研究报告建议解决作为非线性地形优化问题的最佳管子路由问题,从基于密度的地形优化中得到启发。优化问题围绕非线性热传输模式提出,并最大限度地减少暖气网络费用的详细净现值。通过缓解管子布置的组合问题,这一办法仍然可以大规模应用。使用中间管子惩罚战略实现离散网络地形和近分解管管设计。对于现实的测试案例,拟议的算法可以实现离散网络地形和近分解管管设计,从而超越了简单的后处理步骤。