Resources · Rules · Feedback

Complex systems keep moving by negotiating constraints.

Friction & Flow connects sustainable food systems, international legal orders, and adaptive vehicle control to explore how complex systems coordinate resources, rules, feedback, and competing goals.

Independent educational resource

System braid / Three flows

RESOURCE
RULE
CONTROL
SOIL / ENERGY / FOODSTATE / INVESTORVEHICLE / ENERGY RESOURCE LIMITLEGAL CONSTRAINTOPERATING CONDITION COORDINATION NODE FOOD SYSTEMGOVERNED EXCHANGEADAPTIVE MOTION

Flow A · Resource

Land, nutrients, and production

How can agriculture coordinate land, nutrients, energy, production, and consumption while reducing environmental pressure?

agroecology · circularity · food systems · sustainability

Flow B · Rule

Rights, obligations, and exchange

How do international rules structure rights, obligations, investment protection, human rights, and dispute settlement?

international law · investment · arbitration · human rights

Flow C · Control

Models, sensors, and motion

How can an electrified vehicle use models, sensors, prediction, and control to respond efficiently to changing driving conditions?

electric vehicles · control · prediction · energy management

Flow · Constraint · Feedback · Adaptation

These comparisons are methodological and do not imply equivalent mechanisms across agriculture, law, and engineering.

Friction is information

Constraints reveal what a system must coordinate.

Resources create trade-offs.

Rules create obligations.

Feedback creates adjustment.

Evidence defines limits.

Four system fields

A flow becomes meaningful when we know what is moving and what constrains it.

01

Agroecological Flow

Explore how nutrients, biomass, energy, land, farming decisions, and food move through interconnected agricultural and food systems.

Agroecology · Food systems · Nutrient cycles · Sustainability

02

Legal Flow

Examine how rights, obligations, standards, claims, institutions, and legal interpretations organize international economic and investment relationships.

International law · Investment law · Human rights · Arbitration

03

Energy Flow

Study how energy is stored, converted, consumed, recovered, and managed across electrified vehicle powertrains.

Electric vehicles · Energy management · Batteries · Efficiency

Where flow meets resistance

Constraints do not simply stop a system; they shape the choices available to it.

Friction 01

Resource ↔ Food system

How can agricultural systems produce food while managing nutrients, energy, emissions, land, and ecological limits?

agroecology · circularity · food security · life cycle

ResourcesEnvironmental limitsSystem redesign
Friction 02

Right ↔ Regulation

How can international law balance investment protection, state authority, human rights, and legitimate regulation?

investment law · human rights · arbitration · state responsibility

Legal claimPublic authorityInterpretation
Friction 03

Energy ↔ Mobility

How can vehicle control balance performance, efficiency, battery health, comfort, and changing driving conditions?

electric vehicles · MPC · battery · optimization

EnergyOperating conditionControl action

The coordination method

Trace the flow before judging the system.

01

Name the flow

Identify what actually moves through the system: energy, nutrients, rights, information, commands, money, or another quantity.

02

Draw the boundary

Specify where the system begins and ends and which external conditions remain outside the analysis.

03

Locate friction

Identify resource limits, regulatory constraints, uncertainty, physical limits, or competing objectives.

04

Observe feedback

Determine which measurements, institutions, decisions, or signals change future behavior.

05

Test adaptation

Ask how the system responds when conditions, assumptions, inputs, or constraints change.

06

Reassess

Check whether the model, rule, or design still supports the intended outcome under different conditions.

Educational reference points

Six researchers across food systems, international law, and adaptive mobility.

These profiles are presented as educational reference points for exploring public academic work. They are not presented as members, employees, partners, collaborators, representatives, endorsers, or affiliates of Friction & Flow.

Platform contact note. The first three email addresses are platform contact addresses supplied for this site and are not presented as verified university or institutional email accounts.

JHResource

Juha Pekka Helenius

Professor / Professor Emeritus · Finland

University of Helsinki · Helsinki Institute of Sustainability Science (HELSUS) · Ruralia Institute

Research on agroecology and sustainable food systems, including agricultural production, food-system transformation, agroecological symbiosis, renewable resources, nutrient and energy flows, regional food systems, sustainability, and systemic approaches to food production.

Agroecology · Food systems · Sustainability · Agricultural systems

ORCID 0000-0001-6933-404X

Platform contactjuhapekkahelenius@clipitboating.org
UKRule

Ursula Kriebaum

Professor of International Law · Austria

University of Vienna · Faculty of Law · Department of European, International and Comparative Law

Research on public international law, international investment law, investment protection, expropriation, fair and equitable treatment, human rights, investment arbitration, implementation of international obligations, and relationships between foreign investment and public authority.

International law · Investment law · Human rights · Arbitration

ORCID 0009-0009-8463-8952

Platform contactursulakriebaum@clipitboating.org
JDControl

Joško Deur

Full Professor with tenure · Croatia

University of Zagreb · Faculty of Mechanical Engineering and Naval Architecture · Department of Robotics and Automation of Manufacturing Systems

Research on modelling and control of automotive systems, including electric, hybrid, and autonomous vehicles, vehicle dynamics, adaptive and predictive control, energy-management strategies, powertrain control, driving-cycle modelling, optimization, and energy-efficient transportation systems.

Automotive control · Electric vehicles · Hybrid vehicles · Predictive control

ORCID 0009-0000-2025-7979

Platform contactjoskodeur@clipitboating.org
HTResource

Hanna Tuomisto

Professor, Sustainable Food Systems · Finland

University of Helsinki · Department of Agricultural Sciences · Helsinki Institute of Sustainability Science (HELSUS)

Research on sustainable food systems, life-cycle assessment, environmental impacts of food production, sustainable farming, carbon footprints, cellular agriculture, novel foods, resource use, and methods for comparing environmental performance across food production systems.

Sustainable food systems · Life-cycle assessment · Environmental impacts · Food production

ORCID 0000-0002-5971-8354

Educational reference point

ARRule

August Reinisch

Professor of International and European Law · Austria

University of Vienna · Faculty of Law · Department of European, International and Comparative Law

Research on international economic law, investment law, international organizations, state responsibility, state immunity, investment arbitration, international dispute settlement, extraterritoriality, economic sanctions, and relationships between international and domestic legal orders.

International economic law · Investment law · International organizations · Arbitration

ORCID 0000-0002-0119-2054

Educational reference point

SOControl

Simona Onori

Associate Professor · United States

Stanford University · Department of Energy Science and Engineering · Director, Stanford Energy Control Lab

Research on electrified transportation, energy-storage systems, lithium-ion batteries, battery aging, optimal control, estimation, model-based diagnostics, prognostics, energy management, electrified vehicles, emissions mitigation, and advanced control methods for energy and transportation systems.

Electrified vehicles · Energy storage · Optimal control · Battery systems

ORCID 0000-0002-6556-2608

Educational reference point

Field notes

Follow one flow and examine where friction appears.

10 notes

Agroecology

What does agroecology study?

Explore agriculture as an ecological and social system rather than only a collection of individual production techniques.

Discuss ecological interactions, crop production, soil processes, nutrient cycling, biodiversity, farm management, social context, energy use, local knowledge, environmental impacts, resilience, and why agroecology often considers relationships between components rather than isolated inputs.

agroecology · agriculture · ecology · food systems

Food Systems

Where does a food system begin and end?

Explore why defining a system boundary changes what researchers can measure.

Discuss agricultural production, processing, distribution, consumption, waste, nutrient flows, energy, land use, environmental impacts, logistics, policy, social context, circularity, and why different research questions require different food-system boundaries.

food systems · system boundaries · sustainability · resources

Life-Cycle Assessment

How can environmental impacts follow a product through its life cycle?

Explore the basic logic of life-cycle assessment.

Discuss functional units, system boundaries, inventories, energy and material inputs, emissions, impact categories, allocation, data quality, assumptions, uncertainty, comparison, and why a life-cycle assessment result depends strongly on methodological choices.

life cycle assessment · environment · food · sustainability

Investment Law

Why can regulation become an international investment dispute?

Explore the relationship between public regulation and investment protection.

Discuss investment treaties, protected investments, expropriation, fair and equitable treatment, non-discrimination, state authority, public-interest regulation, investor claims, arbitration, legal interpretation, and why treaty protection does not automatically eliminate regulatory autonomy.

investment law · regulation · arbitration · international law

Human Rights

How can investment governance interact with human-rights obligations?

Explore why international legal regimes may intersect rather than operate in complete isolation.

Discuss state obligations, foreign investment, corporate activity, public policy, procedural rights, property interests, international adjudication, treaty interpretation, legal fragmentation, competing obligations, and the importance of context when reconciling different legal frameworks.

human rights · investment · international law · legal systems

International Organizations

How do international institutions constrain and coordinate states?

Explore the legal role of international organizations.

Discuss constituent instruments, legal personality, powers, responsibility, immunity, international obligations, decision making, member states, institutional authority, dispute settlement, and why institutional design influences international governance.

international organizations · law · governance · institutions

Electric Mobility

Where does energy go in an electric vehicle?

Explore the basic energy flows inside an electrified powertrain.

Discuss battery energy, electric motors, power electronics, drivetrain losses, regenerative braking, auxiliary loads, vehicle mass, driving conditions, efficiency, battery state of charge, and why energy consumption changes across trips and operating conditions.

electric vehicles · energy · powertrain · efficiency

Vehicle Control

What does feedback control do inside a vehicle?

Explore how measurements and control actions help a vehicle respond to changing conditions.

Discuss sensors, reference values, control variables, actuators, models, disturbances, feedback loops, stability, constraints, vehicle dynamics, prediction, and why control systems continuously compare desired and observed behavior.

control · feedback · vehicles · automation

Predictive Control

Why would a vehicle controller predict the future?

Explore the basic idea behind model predictive control.

Discuss mathematical models, prediction horizons, optimization, future constraints, control inputs, objectives, state estimates, energy management, computational limitations, disturbances, and why predictive control repeatedly updates its decision as new information becomes available.

model predictive control · optimization · vehicles · prediction

Systems Thinking

Is every constraint a form of friction?

Compare resource, legal, and engineering constraints without treating them as equivalent.

Environmental resource limits arise from ecological and physical conditions, legal constraints arise from institutions and norms, and vehicle constraints can arise from physical systems, safety requirements, energy availability, and control objectives. System boundaries, feedback, adaptation, uncertainty, trade-offs, and evidence matter; similar diagrams should not be mistaken for identical mechanisms.

systems thinking · constraints · feedback · adaptation

About Friction & Flow

A system becomes easier to understand when its flows and constraints are made explicit.

Friction & Flow is an independent educational prototype connecting sustainable food systems, international law, and adaptive mobility.

It does not suggest that agroecosystems, legal institutions, and vehicle-control systems operate through equivalent mechanisms.

Instead, it explores a shared analytical challenge: identifying what moves through a system, what constrains that movement, which feedback is available, and how the system adapts when conditions change.

It is not a university, agricultural organization, law firm, international institution, vehicle manufacturer, engineering company, laboratory, consultancy, or commercial service.

01

Flows require boundaries

Researchers must define what belongs inside the system before they can meaningfully measure movement.

02

Constraints shape outcomes

Resource limits, legal obligations, and physical operating limits change which outcomes remain possible.

03

Adaptation needs feedback

A system can adjust only when relevant information influences future decisions or behavior.

Follow the next flow

Choose a system and trace what happens when movement meets constraint.

Browse field notes, compare friction points, and examine how resources, rules, and feedback shape different forms of adaptation.